cmd.read_pdbstr("""\ HEADER TRANSLATION 08-AUG-17 6AM0 \ TITLE CRYSTAL STRUCTURE OF K. LACTIS EDC1-DCP1-DCP2-EDC3 DECAPPING COMPLEX \ TITLE 2 WITH SYNTHETIC CAP SUBSTRATE ANALOG \ CAVEAT 6AM0 THE DISTANCE BETWEEN RESIDUE F PHE 128 AND RESIDUE F ASN 131 \ CAVEAT 2 6AM0 IS 14.50 ANGSTROM. BUT THERE ARE ONLY 2 RESIDUES (NOT \ CAVEAT 3 6AM0 ENOUGH SEQUENCE) TO COVER THE GAP REGION. \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: KLLA0F23980P; \ COMPND 3 CHAIN: A, E; \ COMPND 4 FRAGMENT: UNP RESIDUES 1-275; \ COMPND 5 ENGINEERED: YES; \ COMPND 6 MUTATION: YES; \ COMPND 7 MOL_ID: 2; \ COMPND 8 MOLECULE: KLLA0E01827P; \ COMPND 9 CHAIN: B, F; \ COMPND 10 FRAGMENT: UNP RESIDUES 1-188; \ COMPND 11 ENGINEERED: YES; \ COMPND 12 MOL_ID: 3; \ COMPND 13 MOLECULE: KLLA0A01474P; \ COMPND 14 CHAIN: C, G; \ COMPND 15 ENGINEERED: YES; \ COMPND 16 MOL_ID: 4; \ COMPND 17 MOLECULE: KLLA0A11308P; \ COMPND 18 CHAIN: D, H; \ COMPND 19 FRAGMENT: UNP RESIDUES 1-66; \ COMPND 20 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: KLUYVEROMYCES LACTIS (STRAIN ATCC 8585 / CBS \ SOURCE 3 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37); \ SOURCE 4 ORGANISM_COMMON: YEAST; \ SOURCE 5 ORGANISM_TAXID: 284590; \ SOURCE 6 STRAIN: ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / \ SOURCE 7 WM37; \ SOURCE 8 GENE: KLLA0_F23980G; \ SOURCE 9 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 10 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 11 EXPRESSION_SYSTEM_STRAIN: BL21*DE3; \ SOURCE 12 MOL_ID: 2; \ SOURCE 13 ORGANISM_SCIENTIFIC: KLUYVEROMYCES LACTIS (STRAIN ATCC 8585 / CBS \ SOURCE 14 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37); \ SOURCE 15 ORGANISM_COMMON: YEAST; \ SOURCE 16 ORGANISM_TAXID: 284590; \ SOURCE 17 STRAIN: ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / \ SOURCE 18 WM37; \ SOURCE 19 GENE: KLLA0_E01827G; \ SOURCE 20 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 21 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 22 MOL_ID: 3; \ SOURCE 23 SYNTHETIC: YES; \ SOURCE 24 ORGANISM_SCIENTIFIC: KLUYVEROMYCES LACTIS (STRAIN ATCC 8585 / CBS \ SOURCE 25 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37); \ SOURCE 26 ORGANISM_COMMON: YEAST; \ SOURCE 27 ORGANISM_TAXID: 284590; \ SOURCE 28 MOL_ID: 4; \ SOURCE 29 ORGANISM_SCIENTIFIC: KLUYVEROMYCES LACTIS (STRAIN ATCC 8585 / CBS \ SOURCE 30 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37); \ SOURCE 31 ORGANISM_COMMON: YEAST; \ SOURCE 32 ORGANISM_TAXID: 284590; \ SOURCE 33 STRAIN: ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / \ SOURCE 34 WM37; \ SOURCE 35 GENE: KLLA0_A11308G; \ SOURCE 36 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 37 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 38 EXPRESSION_SYSTEM_STRAIN: BL21*DE3 \ KEYWDS MRNA DECAY, DECAPPING, NUDIX, NUCLEOTIDE ANALOG, TRANSLATION \ EXPDTA X-RAY DIFFRACTION \ AUTHOR J.S.MUGRIDGE,J.D.GROSS \ REVDAT 4 04-OCT-23 6AM0 1 REMARK \ REVDAT 3 01-JAN-20 6AM0 1 REMARK \ REVDAT 2 04-APR-18 6AM0 1 JRNL \ REVDAT 1 21-MAR-18 6AM0 0 \ JRNL AUTH J.S.MUGRIDGE,R.W.TIBBLE,M.ZIEMNIAK,J.JEMIELITY,J.D.GROSS \ JRNL TITL STRUCTURE OF THE ACTIVATED EDC1-DCP1-DCP2-EDC3 MRNA \ JRNL TITL 2 DECAPPING COMPLEX WITH SUBSTRATE ANALOG POISED FOR \ JRNL TITL 3 CATALYSIS. \ JRNL REF NAT COMMUN V. 9 1152 2018 \ JRNL REFN ESSN 2041-1723 \ JRNL PMID 29559651 \ JRNL DOI 10.1038/S41467-018-03536-X \ REMARK 2 \ REMARK 2 RESOLUTION. 2.84 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : PHENIX (1.10.1_2155: ???) \ REMARK 3 AUTHORS : PAUL ADAMS,PAVEL AFONINE,VINCENT CHEN,IAN \ REMARK 3 : DAVIS,KRESHNA GOPAL,RALF GROSSE-KUNSTLEVE, \ REMARK 3 : LI-WEI HUNG,ROBERT IMMORMINO,TOM IOERGER, \ REMARK 3 : AIRLIE MCCOY,ERIK MCKEE,NIGEL MORIARTY, \ REMARK 3 : REETAL PAI,RANDY READ,JANE RICHARDSON, \ REMARK 3 : DAVID RICHARDSON,TOD ROMO,JIM SACCHETTINI, \ REMARK 3 : NICHOLAS SAUTER,JACOB SMITH,LAURENT \ REMARK 3 : STORONI,TOM TERWILLIGER,PETER ZWART \ REMARK 3 \ REMARK 3 REFINEMENT TARGET : ML \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 2.84 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 45.96 \ REMARK 3 MIN(FOBS/SIGMA_FOBS) : 1.360 \ REMARK 3 COMPLETENESS FOR RANGE (%) : 99.7 \ REMARK 3 NUMBER OF REFLECTIONS : 35286 \ REMARK 3 \ REMARK 3 FIT TO DATA USED IN REFINEMENT. \ REMARK 3 R VALUE (WORKING + TEST SET) : 0.227 \ REMARK 3 R VALUE (WORKING SET) : 0.225 \ REMARK 3 FREE R VALUE : 0.248 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 5.660 \ REMARK 3 FREE R VALUE TEST SET COUNT : 1998 \ REMARK 3 \ REMARK 3 FIT TO DATA USED IN REFINEMENT (IN BINS). \ REMARK 3 BIN RESOLUTION RANGE COMPL. NWORK NFREE RWORK RFREE \ REMARK 3 1 45.9615 - 6.8378 0.99 2448 146 0.1878 0.1837 \ REMARK 3 2 6.8378 - 5.4302 0.99 2386 145 0.2338 0.2285 \ REMARK 3 3 5.4302 - 4.7446 1.00 2388 143 0.1967 0.2380 \ REMARK 3 4 4.7446 - 4.3111 0.99 2356 145 0.1965 0.2056 \ REMARK 3 5 4.3111 - 4.0023 1.00 2389 143 0.2087 0.2697 \ REMARK 3 6 4.0023 - 3.7664 1.00 2396 145 0.2373 0.2563 \ REMARK 3 7 3.7664 - 3.5779 1.00 2338 143 0.2520 0.2921 \ REMARK 3 8 3.5779 - 3.4222 1.00 2401 138 0.2669 0.3473 \ REMARK 3 9 3.4222 - 3.2905 1.00 2382 145 0.2755 0.2955 \ REMARK 3 10 3.2905 - 3.1770 1.00 2336 140 0.2950 0.3672 \ REMARK 3 11 3.1770 - 3.0777 1.00 2368 140 0.3068 0.3274 \ REMARK 3 12 3.0777 - 2.9897 1.00 2388 137 0.3111 0.3476 \ REMARK 3 13 2.9897 - 2.9110 1.00 2373 151 0.3313 0.3608 \ REMARK 3 14 2.9110 - 2.8400 1.00 2339 137 0.3683 0.4269 \ REMARK 3 \ REMARK 3 BULK SOLVENT MODELLING. \ REMARK 3 METHOD USED : FLAT BULK SOLVENT MODEL \ REMARK 3 SOLVENT RADIUS : 1.11 \ REMARK 3 SHRINKAGE RADIUS : 0.90 \ REMARK 3 K_SOL : NULL \ REMARK 3 B_SOL : NULL \ REMARK 3 \ REMARK 3 ERROR ESTIMATES. \ REMARK 3 COORDINATE ERROR (MAXIMUM-LIKELIHOOD BASED) : 0.480 \ REMARK 3 PHASE ERROR (DEGREES, MAXIMUM-LIKELIHOOD BASED) : 31.000 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : NULL \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : NULL \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : NULL \ REMARK 3 B22 (A**2) : NULL \ REMARK 3 B33 (A**2) : NULL \ REMARK 3 B12 (A**2) : NULL \ REMARK 3 B13 (A**2) : NULL \ REMARK 3 B23 (A**2) : NULL \ REMARK 3 \ REMARK 3 TWINNING INFORMATION. \ REMARK 3 FRACTION: NULL \ REMARK 3 OPERATOR: NULL \ REMARK 3 \ REMARK 3 DEVIATIONS FROM IDEAL VALUES. \ REMARK 3 RMSD COUNT \ REMARK 3 BOND : 0.003 8796 \ REMARK 3 ANGLE : 0.721 11927 \ REMARK 3 CHIRALITY : 0.044 1338 \ REMARK 3 PLANARITY : 0.005 1484 \ REMARK 3 DIHEDRAL : 17.839 5297 \ REMARK 3 \ REMARK 3 TLS DETAILS \ REMARK 3 NUMBER OF TLS GROUPS : 7 \ REMARK 3 TLS GROUP : 1 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 2 THROUGH 7 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -27.8895 34.8669 33.3957 \ REMARK 3 T TENSOR \ REMARK 3 T11: 4.4964 T22: 1.8802 \ REMARK 3 T33: 1.4752 T12: 0.4789 \ REMARK 3 T13: -0.7859 T23: 0.3223 \ REMARK 3 L TENSOR \ REMARK 3 L11: 1.1137 L22: 0.7305 \ REMARK 3 L33: 2.6311 L12: -0.2258 \ REMARK 3 L13: 0.1491 L23: -0.7840 \ REMARK 3 S TENSOR \ REMARK 3 S11: -0.3755 S12: -1.2619 S13: -0.4139 \ REMARK 3 S21: 1.7563 S22: 0.9689 S23: -0.0359 \ REMARK 3 S31: -0.4281 S32: -0.6536 S33: 1.2245 \ REMARK 3 TLS GROUP : 2 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 8 THROUGH 18 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -16.2248 29.3403 44.8682 \ REMARK 3 T TENSOR \ REMARK 3 T11: 2.7049 T22: 0.8745 \ REMARK 3 T33: 1.1398 T12: 0.0227 \ REMARK 3 T13: -0.1241 T23: 0.2197 \ REMARK 3 L TENSOR \ REMARK 3 L11: 5.2937 L22: 3.4900 \ REMARK 3 L33: 7.8882 L12: 1.9978 \ REMARK 3 L13: 0.5775 L23: 4.5762 \ REMARK 3 S TENSOR \ REMARK 3 S11: -1.2378 S12: -0.4172 S13: -0.9922 \ REMARK 3 S21: -1.3780 S22: -0.1098 S23: 0.0657 \ REMARK 3 S31: -3.6479 S32: -1.9144 S33: -0.4508 \ REMARK 3 TLS GROUP : 3 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 19 THROUGH 26 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -20.1881 37.2142 38.5442 \ REMARK 3 T TENSOR \ REMARK 3 T11: 4.2141 T22: 0.9119 \ REMARK 3 T33: 1.6611 T12: -0.5285 \ REMARK 3 T13: -0.7962 T23: 0.4626 \ REMARK 3 L TENSOR \ REMARK 3 L11: 1.3776 L22: 1.1482 \ REMARK 3 L33: 1.2106 L12: 1.1930 \ REMARK 3 L13: 1.0197 L23: 1.1321 \ REMARK 3 S TENSOR \ REMARK 3 S11: -1.1732 S12: 0.5490 S13: -0.5355 \ REMARK 3 S21: 2.0619 S22: 1.3048 S23: -0.5194 \ REMARK 3 S31: -1.0229 S32: 2.1326 S33: -0.0437 \ REMARK 3 TLS GROUP : 4 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 27 THROUGH 45 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -15.7031 37.9413 41.2083 \ REMARK 3 T TENSOR \ REMARK 3 T11: 3.3368 T22: 1.1382 \ REMARK 3 T33: 1.7626 T12: 0.1705 \ REMARK 3 T13: 0.2334 T23: 0.1198 \ REMARK 3 L TENSOR \ REMARK 3 L11: 2.0317 L22: 0.0203 \ REMARK 3 L33: 0.2812 L12: -0.0822 \ REMARK 3 L13: -0.7241 L23: -0.0435 \ REMARK 3 S TENSOR \ REMARK 3 S11: -0.4059 S12: 0.7770 S13: 0.6459 \ REMARK 3 S21: 0.0178 S22: 0.4094 S23: -1.1455 \ REMARK 3 S31: -1.8041 S32: -0.1810 S33: -0.0009 \ REMARK 3 TLS GROUP : 5 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 46 THROUGH 53 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -10.7619 35.6254 36.8067 \ REMARK 3 T TENSOR \ REMARK 3 T11: 1.8251 T22: 1.0003 \ REMARK 3 T33: 3.0916 T12: 0.3662 \ REMARK 3 T13: 0.9138 T23: -0.3141 \ REMARK 3 L TENSOR \ REMARK 3 L11: 2.6215 L22: 0.0440 \ REMARK 3 L33: 1.7810 L12: -0.3427 \ REMARK 3 L13: 2.1587 L23: -0.2974 \ REMARK 3 S TENSOR \ REMARK 3 S11: -1.9821 S12: 1.0318 S13: 1.7053 \ REMARK 3 S21: 2.8786 S22: 1.3510 S23: 3.0776 \ REMARK 3 S31: -2.4909 S32: 2.3944 S33: -0.1078 \ REMARK 3 TLS GROUP : 6 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 54 THROUGH 59 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -17.4687 25.2820 39.9337 \ REMARK 3 T TENSOR \ REMARK 3 T11: 3.1476 T22: 0.4037 \ REMARK 3 T33: 1.0806 T12: -0.0449 \ REMARK 3 T13: 0.7450 T23: 0.8008 \ REMARK 3 L TENSOR \ REMARK 3 L11: 3.7417 L22: 6.5836 \ REMARK 3 L33: 9.2755 L12: 0.7407 \ REMARK 3 L13: 2.2357 L23: 7.5713 \ REMARK 3 S TENSOR \ REMARK 3 S11: -1.9420 S12: 0.1440 S13: -0.4126 \ REMARK 3 S21: 0.4455 S22: -0.0687 S23: -1.2521 \ REMARK 3 S31: -0.6448 S32: -1.8913 S33: -2.5762 \ REMARK 3 TLS GROUP : 7 \ REMARK 3 SELECTION: CHAIN 'H' AND (RESID 60 THROUGH 64 ) \ REMARK 3 ORIGIN FOR THE GROUP (A): -31.4707 33.4797 42.5326 \ REMARK 3 T TENSOR \ REMARK 3 T11: 2.9257 T22: 2.2925 \ REMARK 3 T33: 0.2939 T12: 1.2885 \ REMARK 3 T13: 0.1223 T23: 1.0108 \ REMARK 3 L TENSOR \ REMARK 3 L11: 5.7785 L22: 0.8779 \ REMARK 3 L33: 1.7914 L12: -1.8649 \ REMARK 3 L13: 3.0851 L23: -0.8062 \ REMARK 3 S TENSOR \ REMARK 3 S11: -0.2412 S12: 0.7856 S13: 0.3250 \ REMARK 3 S21: 0.5059 S22: -0.4024 S23: -0.2202 \ REMARK 3 S31: -0.0884 S32: -0.7410 S33: -4.1758 \ REMARK 3 \ REMARK 3 NCS DETAILS \ REMARK 3 NUMBER OF NCS GROUPS : NULL \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: NULL \ REMARK 4 \ REMARK 4 6AM0 COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 09-AUG-17. \ REMARK 100 THE DEPOSITION ID IS D_1000229221. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 18-MAY-17 \ REMARK 200 TEMPERATURE (KELVIN) : 100 \ REMARK 200 PH : NULL \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : ALS \ REMARK 200 BEAMLINE : 8.3.1 \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 1.11583 \ REMARK 200 MONOCHROMATOR : WATER-COOLED FLAT DOUBLE SI(111) \ REMARK 200 KHOZU MONOCHROMATOR \ REMARK 200 OPTICS : NULL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : PIXEL \ REMARK 200 DETECTOR MANUFACTURER : DECTRIS PILATUS3 S 6M \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : XDS NOV 1, 2016 \ REMARK 200 DATA SCALING SOFTWARE : XSCALE NOV 1, 2016 \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 68126 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 2.840 \ REMARK 200 RESOLUTION RANGE LOW (A) : 50.000 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : NULL \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 98.7 \ REMARK 200 DATA REDUNDANCY : 2.900 \ REMARK 200 R MERGE (I) : 0.05800 \ REMARK 200 R SYM (I) : NULL \ REMARK 200 FOR THE DATA SET : 9.8200 \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : 2.84 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 3.00 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 99.1 \ REMARK 200 DATA REDUNDANCY IN SHELL : 2.80 \ REMARK 200 R MERGE FOR SHELL (I) : 0.78000 \ REMARK 200 R SYM FOR SHELL (I) : NULL \ REMARK 200 FOR SHELL : 1.300 \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: SINGLE WAVELENGTH \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: MOLECULAR REPLACEMENT \ REMARK 200 SOFTWARE USED: PHASER 2.5.7 \ REMARK 200 STARTING MODEL: 5LOP \ REMARK 200 \ REMARK 200 REMARK: RHOMBOHEDRAL BLOCKS, ~40-80 MICRONS. \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 58.00 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 2.96 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: PROTEIN SOLUTION: 4MG/ML KL \ REMARK 280 DCP1/DCP2/EDC3, 1MM EDC1 PEPTIDE, 6MM SUBSTRATE ANALOG, 10MM \ REMARK 280 MAGNSIUM CHLORIDE. WELL SOLUTION: 0.22M MAGNESIUM CHLORIDE, \ REMARK 280 0.03M EDTA, 8% PEG 8000. PROCEDURE: 250NL PROTEIN SOLUTION + \ REMARK 280 250NL WELL SOLUTION + 50NL 1:10000 SEED STOCK. SET UP AT RT, \ REMARK 280 GROW CRYSTALS AT 4C., VAPOR DIFFUSION, HANGING DROP, TEMPERATURE \ REMARK 280 277K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: C 1 2 1 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -X,Y,-Z \ REMARK 290 3555 X+1/2,Y+1/2,Z \ REMARK 290 4555 -X+1/2,Y+1/2,-Z \ REMARK 290 \ REMARK 290 WHERE NNN -> OPERATOR NUMBER \ REMARK 290 MMM -> TRANSLATION VECTOR \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY TRANSFORMATIONS \ REMARK 290 THE FOLLOWING TRANSFORMATIONS OPERATE ON THE ATOM/HETATM \ REMARK 290 RECORDS IN THIS ENTRY TO PRODUCE CRYSTALLOGRAPHICALLY \ REMARK 290 RELATED MOLECULES. \ REMARK 290 SMTRY1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 2 -1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 2 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 2 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 SMTRY1 3 1.000000 0.000000 0.000000 87.13000 \ REMARK 290 SMTRY2 3 0.000000 1.000000 0.000000 41.62500 \ REMARK 290 SMTRY3 3 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 4 -1.000000 0.000000 0.000000 87.13000 \ REMARK 290 SMTRY2 4 0.000000 1.000000 0.000000 41.62500 \ REMARK 290 SMTRY3 4 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 \ REMARK 290 REMARK: NULL \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1 \ REMARK 300 SEE REMARK 350 FOR THE AUTHOR PROVIDED AND/OR PROGRAM \ REMARK 300 GENERATED ASSEMBLY INFORMATION FOR THE STRUCTURE IN \ REMARK 300 THIS ENTRY. THE REMARK MAY ALSO PROVIDE INFORMATION ON \ REMARK 300 BURIED SURFACE AREA. \ REMARK 350 \ REMARK 350 COORDINATES FOR A COMPLETE MULTIMER REPRESENTING THE KNOWN \ REMARK 350 BIOLOGICALLY SIGNIFICANT OLIGOMERIZATION STATE OF THE \ REMARK 350 MOLECULE CAN BE GENERATED BY APPLYING BIOMT TRANSFORMATIONS \ REMARK 350 GIVEN BELOW. BOTH NON-CRYSTALLOGRAPHIC AND \ REMARK 350 CRYSTALLOGRAPHIC OPERATIONS ARE GIVEN. \ REMARK 350 \ REMARK 350 BIOMOLECULE: 1 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: OCTAMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: OCTAMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 17640 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 53130 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -109.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, C, D, E, F, G, H \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 465 \ REMARK 465 MISSING RESIDUES \ REMARK 465 THE FOLLOWING RESIDUES WERE NOT LOCATED IN THE \ REMARK 465 EXPERIMENT. (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN \ REMARK 465 IDENTIFIER; SSSEQ=SEQUENCE NUMBER; I=INSERTION CODE.) \ REMARK 465 \ REMARK 465 M RES C SSSEQI \ REMARK 465 MET A 1 \ REMARK 465 GLY A 218 \ REMARK 465 SER A 219 \ REMARK 465 LYS A 264 \ REMARK 465 LYS A 265 \ REMARK 465 GLU A 266 \ REMARK 465 ASN A 267 \ REMARK 465 LYS A 268 \ REMARK 465 ILE A 269 \ REMARK 465 VAL A 270 \ REMARK 465 LEU A 271 \ REMARK 465 ASP A 272 \ REMARK 465 ALA A 273 \ REMARK 465 GLY A 274 \ REMARK 465 ARG A 275 \ REMARK 465 GLY B -1 \ REMARK 465 SER B 0 \ REMARK 465 TYR B 74 \ REMARK 465 ASP B 75 \ REMARK 465 ASP B 76 \ REMARK 465 THR B 77 \ REMARK 465 ILE B 78 \ REMARK 465 THR B 79 \ REMARK 465 GLY B 80 \ REMARK 465 GLN B 81 \ REMARK 465 GLN B 82 \ REMARK 465 SER B 83 \ REMARK 465 SER B 186 \ REMARK 465 PHE B 187 \ REMARK 465 THR B 188 \ REMARK 465 HIS C 355 \ REMARK 465 SER C 356 \ REMARK 465 VAL C 380 \ REMARK 465 ALA D 66 \ REMARK 465 MET E 1 \ REMARK 465 GLU E 217 \ REMARK 465 GLY E 218 \ REMARK 465 SER E 219 \ REMARK 465 ALA E 220 \ REMARK 465 LYS E 221 \ REMARK 465 LYS E 264 \ REMARK 465 LYS E 265 \ REMARK 465 GLU E 266 \ REMARK 465 ASN E 267 \ REMARK 465 LYS E 268 \ REMARK 465 ILE E 269 \ REMARK 465 VAL E 270 \ REMARK 465 LEU E 271 \ REMARK 465 ASP E 272 \ REMARK 465 ALA E 273 \ REMARK 465 GLY E 274 \ REMARK 465 ARG E 275 \ REMARK 465 GLY F -1 \ REMARK 465 SER F 0 \ REMARK 465 THR F 77 \ REMARK 465 ILE F 78 \ REMARK 465 THR F 79 \ REMARK 465 GLY F 80 \ REMARK 465 GLN F 81 \ REMARK 465 GLN F 82 \ REMARK 465 SER F 83 \ REMARK 465 PHE F 128 \ REMARK 465 ALA F 129 \ REMARK 465 PRO F 130 \ REMARK 465 MET H 1 \ REMARK 465 LYS H 14 \ REMARK 465 ASP H 15 \ REMARK 465 GLY H 16 \ REMARK 465 ASP H 40 \ REMARK 465 GLY H 41 \ REMARK 465 ASN H 65 \ REMARK 465 ALA H 66 \ REMARK 470 \ REMARK 470 MISSING ATOM \ REMARK 470 THE FOLLOWING RESIDUES HAVE MISSING ATOMS (M=MODEL NUMBER; \ REMARK 470 RES=RESIDUE NAME; C=CHAIN IDENTIFIER; SSEQ=SEQUENCE NUMBER; \ REMARK 470 I=INSERTION CODE): \ REMARK 470 M RES CSSEQI ATOMS \ REMARK 470 GLU B 70 O \ REMARK 470 GLU F 70 O \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: CLOSE CONTACTS IN SAME ASYMMETRIC UNIT \ REMARK 500 \ REMARK 500 THE FOLLOWING ATOMS ARE IN CLOSE CONTACT. \ REMARK 500 \ REMARK 500 ATM1 RES C SSEQI ATM2 RES C SSEQI DISTANCE \ REMARK 500 OG1 THR D 22 OG1 THR D 34 2.17 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: CLOSE CONTACTS \ REMARK 500 \ REMARK 500 THE FOLLOWING ATOMS THAT ARE RELATED BY CRYSTALLOGRAPHIC \ REMARK 500 SYMMETRY ARE IN CLOSE CONTACT. AN ATOM LOCATED WITHIN 0.15 \ REMARK 500 ANGSTROMS OF A SYMMETRY RELATED ATOM IS ASSUMED TO BE ON A \ REMARK 500 SPECIAL POSITION AND IS, THEREFORE, LISTED IN REMARK 375 \ REMARK 500 INSTEAD OF REMARK 500. ATOMS WITH NON-BLANK ALTERNATE \ REMARK 500 LOCATION INDICATORS ARE NOT INCLUDED IN THE CALCULATIONS. \ REMARK 500 \ REMARK 500 DISTANCE CUTOFF: \ REMARK 500 2.2 ANGSTROMS FOR CONTACTS NOT INVOLVING HYDROGEN ATOMS \ REMARK 500 1.6 ANGSTROMS FOR CONTACTS INVOLVING HYDROGEN ATOMS \ REMARK 500 \ REMARK 500 ATM1 RES C SSEQI ATM2 RES C SSEQI SSYMOP DISTANCE \ REMARK 500 OG SER D 44 OG SER D 44 2556 2.08 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: TORSION ANGLES \ REMARK 500 \ REMARK 500 TORSION ANGLES OUTSIDE THE EXPECTED RAMACHANDRAN REGIONS: \ REMARK 500 (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN IDENTIFIER; \ REMARK 500 SSEQ=SEQUENCE NUMBER; I=INSERTION CODE). \ REMARK 500 \ REMARK 500 STANDARD TABLE: \ REMARK 500 FORMAT:(10X,I3,1X,A3,1X,A1,I4,A1,4X,F7.2,3X,F7.2) \ REMARK 500 \ REMARK 500 EXPECTED VALUES: GJ KLEYWEGT AND TA JONES (1996). PHI/PSI- \ REMARK 500 CHOLOGY: RAMACHANDRAN REVISITED. STRUCTURE 4, 1395 - 1400 \ REMARK 500 \ REMARK 500 M RES CSSEQI PSI PHI \ REMARK 500 ASP A 85 55.75 -108.25 \ REMARK 500 LEU A 114 55.37 -68.14 \ REMARK 500 ASN A 124 94.54 -69.78 \ REMARK 500 LYS A 126 -114.88 54.01 \ REMARK 500 THR A 214 35.54 -77.41 \ REMARK 500 LEU A 224 -50.64 67.25 \ REMARK 500 GLU B 49 45.35 -103.15 \ REMARK 500 PRO B 69 -165.42 -70.43 \ REMARK 500 LYS B 155 -15.60 77.29 \ REMARK 500 THR B 184 143.05 -170.51 \ REMARK 500 LEU D 13 -162.34 -107.32 \ REMARK 500 ILE E 26 -39.84 -130.41 \ REMARK 500 PHE E 54 -59.77 -123.30 \ REMARK 500 LEU E 114 33.55 -74.99 \ REMARK 500 LYS E 126 -3.45 76.75 \ REMARK 500 ALA E 163 0.88 -65.08 \ REMARK 500 MET E 171 -76.75 -85.55 \ REMARK 500 LYS E 177 112.48 -168.74 \ REMARK 500 THR E 214 20.54 -74.23 \ REMARK 500 LEU E 224 -40.88 68.60 \ REMARK 500 TYR F 74 -10.97 69.52 \ REMARK 500 ASP F 185 71.49 56.13 \ REMARK 500 SER F 186 -7.43 -151.05 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 800 \ REMARK 800 SITE \ REMARK 800 SITE_IDENTIFIER: AC1 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: binding site for residue MG A 301 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC2 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: binding site for residue 6VQ A 302 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC3 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: binding site for residue 6VQ E 301 \ DBREF 6AM0 A 1 275 UNP Q6CIU1 Q6CIU1_KLULA 1 275 \ DBREF 6AM0 B 1 188 UNP Q6CPV9 Q6CPV9_KLULA 1 188 \ DBREF 6AM0 C 355 380 UNP Q6CYC5 Q6CYC5_KLULA 355 380 \ DBREF 6AM0 D 1 66 UNP Q6CX48 Q6CX48_KLULA 1 66 \ DBREF 6AM0 E 1 275 UNP Q6CIU1 Q6CIU1_KLULA 1 275 \ DBREF 6AM0 F 1 188 UNP Q6CPV9 Q6CPV9_KLULA 1 188 \ DBREF 6AM0 G 355 380 UNP Q6CYC5 Q6CYC5_KLULA 355 380 \ DBREF 6AM0 H 1 66 UNP Q6CX48 Q6CX48_KLULA 1 66 \ SEQADV 6AM0 GLN A 152 UNP Q6CIU1 GLU 152 ENGINEERED MUTATION \ SEQADV 6AM0 GLY B -1 UNP Q6CPV9 EXPRESSION TAG \ SEQADV 6AM0 SER B 0 UNP Q6CPV9 EXPRESSION TAG \ SEQADV 6AM0 GLN E 152 UNP Q6CIU1 GLU 152 ENGINEERED MUTATION \ SEQADV 6AM0 GLY F -1 UNP Q6CPV9 EXPRESSION TAG \ SEQADV 6AM0 SER F 0 UNP Q6CPV9 EXPRESSION TAG \ SEQRES 1 A 275 MET SER LEU PRO LEU LEU ARG PRO PHE GLU THR VAL SER \ SEQRES 2 A 275 LEU GLU ASN ALA VAL GLU ASP LEU VAL VAL ARG PHE ILE \ SEQRES 3 A 275 LEU ASN VAL PRO PRO GLU ASP LEU SER THR VAL GLU ARG \ SEQRES 4 A 275 VAL LEU PHE HIS PHE GLU GLU ALA SER TRP PHE TYR THR \ SEQRES 5 A 275 ASP PHE VAL LYS LEU MET ASN PRO TYR LEU PRO ASN LEU \ SEQRES 6 A 275 SER ILE LYS SER PHE SER LYS ILE VAL ILE ASP ILE CYS \ SEQRES 7 A 275 PRO LEU ILE TRP ASN TRP ASP ILE THR PRO GLU ASN ALA \ SEQRES 8 A 275 LEU VAL LYS PHE SER ASN TYR LYS LYS THR ILE PRO VAL \ SEQRES 9 A 275 ARG GLY ALA ALA ILE PHE ASN ASP SER LEU SER LYS ILE \ SEQRES 10 A 275 LEU LEU LEU ARG GLY ILE ASN SER LYS HIS TRP SER PHE \ SEQRES 11 A 275 PRO ARG GLY LYS ILE GLY LYS ASP GLU ASP ASP VAL ALA \ SEQRES 12 A 275 CYS CYS ILE ARG GLU VAL LYS GLU GLN THR GLY PHE ASP \ SEQRES 13 A 275 LEU THR GLY PHE ILE ASP ALA ASP GLN TYR VAL GLU ARG \ SEQRES 14 A 275 ASN MET ASN GLY LYS ASN PHE LYS ILE PHE LEU VAL LYS \ SEQRES 15 A 275 GLY VAL PRO GLU ASP PHE GLU PHE LYS PRO GLU HIS LYS \ SEQRES 16 A 275 ASN GLU ILE GLN ALA ILE GLU TRP LYS ASP PHE LYS LYS \ SEQRES 17 A 275 LEU SER LYS ALA ILE THR LYS ASN GLU GLY SER ALA LYS \ SEQRES 18 A 275 VAL PHE LEU VAL ASN SER MET ILE ARG PRO LEU SER LEU \ SEQRES 19 A 275 TYR VAL LYS ASN GLU LYS ARG ALA LYS ASP GLU ASN LYS \ SEQRES 20 A 275 LEU LYS LEU TYR ALA GLU GLU HIS LEU LYS SER ILE LEU \ SEQRES 21 A 275 GLY LEU ASN LYS LYS GLU ASN LYS ILE VAL LEU ASP ALA \ SEQRES 22 A 275 GLY ARG \ SEQRES 1 B 190 GLY SER MET SER THR GLU THR LEU GLU ILE TYR ARG LYS \ SEQRES 2 B 190 ALA LEU ASN PHE ASN VAL ILE ALA ARG TYR ASP PRO LYS \ SEQRES 3 B 190 ILE LYS GLN LEU LEU PHE HIS THR PRO HIS ALA THR VAL \ SEQRES 4 B 190 TYR LYS TRP GLY ASP ASP ASN TRP ASN LYS LEU GLU TYR \ SEQRES 5 B 190 GLN GLY VAL LEU ALA ILE TYR LEU ARG ASP VAL GLY ASP \ SEQRES 6 B 190 LYS GLU ALA ILE LEU PRO GLU VAL SER SER TYR ASP ASP \ SEQRES 7 B 190 THR ILE THR GLY GLN GLN SER GLU ALA ASN THR PRO HIS \ SEQRES 8 B 190 VAL LEU THR GLY HIS ASP ILE TYR ASN TYR GLY LEU ILE \ SEQRES 9 B 190 ILE MET ASN ARG ILE ASN PRO ASP ASN PHE SER LEU ALA \ SEQRES 10 B 190 ILE ALA PRO ASN SER VAL LEU ASN LYS ARG LYS LEU PHE \ SEQRES 11 B 190 ALA PRO ASN ARG GLU GLU GLU LEU GLU PRO MET LYS VAL \ SEQRES 12 B 190 GLU VAL ARG ASP ASP LEU VAL MET ILE LYS THR LEU LYS \ SEQRES 13 B 190 LYS GLU VAL TYR GLY ILE TRP VAL HIS THR PRO GLU ASP \ SEQRES 14 B 190 ARG GLN ASN ILE TYR GLU LEU ILE LYS TYR LEU LEU GLU \ SEQRES 15 B 190 ASN GLU PRO THR ASP SER PHE THR \ SEQRES 1 C 26 HIS SER LYS CYS TYR ALA GLY ALA THR PHE ALA THR GLU \ SEQRES 2 C 26 ALA PRO GLN VAL THR THR LEU PRO LYS PRO SER PHE VAL \ SEQRES 1 D 66 MET LEU ASN PHE LYS GLY TYR GLN ILE GLU ILE GLU LEU \ SEQRES 2 D 66 LYS ASP GLY LYS ARG ILE THR GLY THR LEU LYS GLN VAL \ SEQRES 3 D 66 SER PRO LYS SER LEU THR LEU THR ASP ALA VAL PHE GLN \ SEQRES 4 D 66 ASP GLY GLY VAL SER PRO VAL PHE LYS ILE LYS ALA ASP \ SEQRES 5 D 66 LYS LEU TYR ASP LEU LYS VAL LEU LYS LEU PRO PRO ASN \ SEQRES 6 D 66 ALA \ SEQRES 1 E 275 MET SER LEU PRO LEU LEU ARG PRO PHE GLU THR VAL SER \ SEQRES 2 E 275 LEU GLU ASN ALA VAL GLU ASP LEU VAL VAL ARG PHE ILE \ SEQRES 3 E 275 LEU ASN VAL PRO PRO GLU ASP LEU SER THR VAL GLU ARG \ SEQRES 4 E 275 VAL LEU PHE HIS PHE GLU GLU ALA SER TRP PHE TYR THR \ SEQRES 5 E 275 ASP PHE VAL LYS LEU MET ASN PRO TYR LEU PRO ASN LEU \ SEQRES 6 E 275 SER ILE LYS SER PHE SER LYS ILE VAL ILE ASP ILE CYS \ SEQRES 7 E 275 PRO LEU ILE TRP ASN TRP ASP ILE THR PRO GLU ASN ALA \ SEQRES 8 E 275 LEU VAL LYS PHE SER ASN TYR LYS LYS THR ILE PRO VAL \ SEQRES 9 E 275 ARG GLY ALA ALA ILE PHE ASN ASP SER LEU SER LYS ILE \ SEQRES 10 E 275 LEU LEU LEU ARG GLY ILE ASN SER LYS HIS TRP SER PHE \ SEQRES 11 E 275 PRO ARG GLY LYS ILE GLY LYS ASP GLU ASP ASP VAL ALA \ SEQRES 12 E 275 CYS CYS ILE ARG GLU VAL LYS GLU GLN THR GLY PHE ASP \ SEQRES 13 E 275 LEU THR GLY PHE ILE ASP ALA ASP GLN TYR VAL GLU ARG \ SEQRES 14 E 275 ASN MET ASN GLY LYS ASN PHE LYS ILE PHE LEU VAL LYS \ SEQRES 15 E 275 GLY VAL PRO GLU ASP PHE GLU PHE LYS PRO GLU HIS LYS \ SEQRES 16 E 275 ASN GLU ILE GLN ALA ILE GLU TRP LYS ASP PHE LYS LYS \ SEQRES 17 E 275 LEU SER LYS ALA ILE THR LYS ASN GLU GLY SER ALA LYS \ SEQRES 18 E 275 VAL PHE LEU VAL ASN SER MET ILE ARG PRO LEU SER LEU \ SEQRES 19 E 275 TYR VAL LYS ASN GLU LYS ARG ALA LYS ASP GLU ASN LYS \ SEQRES 20 E 275 LEU LYS LEU TYR ALA GLU GLU HIS LEU LYS SER ILE LEU \ SEQRES 21 E 275 GLY LEU ASN LYS LYS GLU ASN LYS ILE VAL LEU ASP ALA \ SEQRES 22 E 275 GLY ARG \ SEQRES 1 F 190 GLY SER MET SER THR GLU THR LEU GLU ILE TYR ARG LYS \ SEQRES 2 F 190 ALA LEU ASN PHE ASN VAL ILE ALA ARG TYR ASP PRO LYS \ SEQRES 3 F 190 ILE LYS GLN LEU LEU PHE HIS THR PRO HIS ALA THR VAL \ SEQRES 4 F 190 TYR LYS TRP GLY ASP ASP ASN TRP ASN LYS LEU GLU TYR \ SEQRES 5 F 190 GLN GLY VAL LEU ALA ILE TYR LEU ARG ASP VAL GLY ASP \ SEQRES 6 F 190 LYS GLU ALA ILE LEU PRO GLU VAL SER SER TYR ASP ASP \ SEQRES 7 F 190 THR ILE THR GLY GLN GLN SER GLU ALA ASN THR PRO HIS \ SEQRES 8 F 190 VAL LEU THR GLY HIS ASP ILE TYR ASN TYR GLY LEU ILE \ SEQRES 9 F 190 ILE MET ASN ARG ILE ASN PRO ASP ASN PHE SER LEU ALA \ SEQRES 10 F 190 ILE ALA PRO ASN SER VAL LEU ASN LYS ARG LYS LEU PHE \ SEQRES 11 F 190 ALA PRO ASN ARG GLU GLU GLU LEU GLU PRO MET LYS VAL \ SEQRES 12 F 190 GLU VAL ARG ASP ASP LEU VAL MET ILE LYS THR LEU LYS \ SEQRES 13 F 190 LYS GLU VAL TYR GLY ILE TRP VAL HIS THR PRO GLU ASP \ SEQRES 14 F 190 ARG GLN ASN ILE TYR GLU LEU ILE LYS TYR LEU LEU GLU \ SEQRES 15 F 190 ASN GLU PRO THR ASP SER PHE THR \ SEQRES 1 G 26 HIS SER LYS CYS TYR ALA GLY ALA THR PHE ALA THR GLU \ SEQRES 2 G 26 ALA PRO GLN VAL THR THR LEU PRO LYS PRO SER PHE VAL \ SEQRES 1 H 66 MET LEU ASN PHE LYS GLY TYR GLN ILE GLU ILE GLU LEU \ SEQRES 2 H 66 LYS ASP GLY LYS ARG ILE THR GLY THR LEU LYS GLN VAL \ SEQRES 3 H 66 SER PRO LYS SER LEU THR LEU THR ASP ALA VAL PHE GLN \ SEQRES 4 H 66 ASP GLY GLY VAL SER PRO VAL PHE LYS ILE LYS ALA ASP \ SEQRES 5 H 66 LYS LEU TYR ASP LEU LYS VAL LEU LYS LEU PRO PRO ASN \ SEQRES 6 H 66 ALA \ HET MG A 301 1 \ HET 6VQ A 302 57 \ HET 6VQ E 301 57 \ HETNAM MG MAGNESIUM ION \ HETNAM 6VQ [[(2~{R},3~{S},4~{R},5~{R})-5-(2-AZANYL-7-METHYL-6- \ HETNAM 2 6VQ OXIDANYLIDENE-3~{H}-PURIN-7-IUM-9-YL)-3,4- \ HETNAM 3 6VQ BIS(OXIDANYL)OXOLAN-2-YL]METHOXY-SULFANYL-PHOSPHORYL] \ HETNAM 4 6VQ [[[(2~{R},3~{S},4~{R},5~{R})-5-(2-AZANYL-7-METHYL-6- \ HETNAM 5 6VQ OXIDANYLIDENE-3~{H}-PURIN-7-IUM-9-YL)-3,4- \ HETNAM 6 6VQ BIS(OXIDANYL)OXOLAN-2-YL]METHOXY-SULFANYL- \ HETNAM 7 6VQ PHOSPHORYL]OXY-OXIDANYL-PHOSPHORYL] HYDROGEN PHOSPHATE \ FORMUL 9 MG MG 2+ \ FORMUL 10 6VQ 2(C22 H34 N10 O19 P4 S2 2+) \ HELIX 1 AA1 ARG A 7 THR A 11 5 5 \ HELIX 2 AA2 SER A 13 ILE A 26 1 14 \ HELIX 3 AA3 PRO A 30 SER A 35 5 6 \ HELIX 4 AA4 THR A 36 PHE A 54 1 19 \ HELIX 5 AA5 SER A 66 CYS A 78 1 13 \ HELIX 6 AA6 PRO A 79 TRP A 82 5 4 \ HELIX 7 AA7 THR A 87 LYS A 100 1 14 \ HELIX 8 AA8 ASP A 140 GLY A 154 1 15 \ HELIX 9 AA9 PHE A 206 THR A 214 1 9 \ HELIX 10 AB1 MET A 228 LEU A 260 1 33 \ HELIX 11 AB2 SER B 2 ARG B 20 1 19 \ HELIX 12 AB3 PRO B 118 LEU B 127 1 10 \ HELIX 13 AB4 THR B 164 ASN B 181 1 18 \ HELIX 14 AB5 GLN C 370 LEU C 374 5 5 \ HELIX 15 AB6 ASP D 52 LEU D 54 5 3 \ HELIX 16 AB7 ARG E 7 THR E 11 5 5 \ HELIX 17 AB8 SER E 13 ILE E 26 1 14 \ HELIX 18 AB9 PRO E 30 SER E 35 5 6 \ HELIX 19 AC1 THR E 36 PHE E 54 1 19 \ HELIX 20 AC2 PHE E 54 ASN E 59 1 6 \ HELIX 21 AC3 SER E 66 CYS E 78 1 13 \ HELIX 22 AC4 PRO E 79 TRP E 82 5 4 \ HELIX 23 AC5 THR E 87 LYS E 100 1 14 \ HELIX 24 AC6 ASP E 140 GLY E 154 1 15 \ HELIX 25 AC7 ALA E 212 ASN E 216 5 5 \ HELIX 26 AC8 VAL E 225 SER E 227 5 3 \ HELIX 27 AC9 MET E 228 ILE E 259 1 32 \ HELIX 28 AD1 SER F 2 ASP F 22 1 21 \ HELIX 29 AD2 PRO F 118 ASN F 123 1 6 \ HELIX 30 AD3 THR F 164 ASN F 181 1 18 \ HELIX 31 AD4 GLN G 370 LEU G 374 5 5 \ HELIX 32 AD5 ASP H 52 LEU H 54 5 3 \ SHEET 1 AA1 4 ARG A 132 LYS A 134 0 \ SHEET 2 AA1 4 VAL A 104 ASN A 111 -1 N ARG A 105 O GLY A 133 \ SHEET 3 AA1 4 ASN A 175 VAL A 184 1 O PHE A 179 N ALA A 108 \ SHEET 4 AA1 4 TYR A 166 ASN A 170 -1 N ARG A 169 O PHE A 176 \ SHEET 1 AA2 4 ARG A 132 LYS A 134 0 \ SHEET 2 AA2 4 VAL A 104 ASN A 111 -1 N ARG A 105 O GLY A 133 \ SHEET 3 AA2 4 LYS A 116 GLY A 122 -1 O LEU A 118 N ILE A 109 \ SHEET 4 AA2 4 ILE A 198 ASP A 205 -1 O GLU A 202 N LEU A 119 \ SHEET 1 AA3 7 PHE B 112 ILE B 116 0 \ SHEET 2 AA3 7 TYR B 99 ASN B 105 -1 N TYR B 99 O ILE B 116 \ SHEET 3 AA3 7 ASN B 44 ARG B 59 -1 N ALA B 55 O ILE B 102 \ SHEET 4 AA3 7 ILE B 25 GLY B 41 -1 N GLN B 27 O LEU B 58 \ SHEET 5 AA3 7 VAL B 157 VAL B 162 -1 O TRP B 161 N THR B 36 \ SHEET 6 AA3 7 LEU B 147 LYS B 151 -1 N ILE B 150 O TYR B 158 \ SHEET 7 AA3 7 LYS B 140 ARG B 144 -1 N LYS B 140 O LYS B 151 \ SHEET 1 AA4 5 VAL D 43 LYS D 50 0 \ SHEET 2 AA4 5 SER D 30 PHE D 38 -1 N LEU D 31 O ILE D 49 \ SHEET 3 AA4 5 ARG D 18 VAL D 26 -1 N LYS D 24 O THR D 32 \ SHEET 4 AA4 5 GLN D 8 GLU D 12 -1 N ILE D 9 O GLY D 21 \ SHEET 5 AA4 5 ASP D 56 VAL D 59 -1 O LYS D 58 N GLU D 10 \ SHEET 1 AA5 4 ARG E 132 LYS E 134 0 \ SHEET 2 AA5 4 VAL E 104 PHE E 110 -1 N ARG E 105 O GLY E 133 \ SHEET 3 AA5 4 PHE E 176 VAL E 181 1 O VAL E 181 N ALA E 108 \ SHEET 4 AA5 4 TYR E 166 VAL E 167 -1 N VAL E 167 O ILE E 178 \ SHEET 1 AA6 4 ARG E 132 LYS E 134 0 \ SHEET 2 AA6 4 VAL E 104 PHE E 110 -1 N ARG E 105 O GLY E 133 \ SHEET 3 AA6 4 LYS E 116 GLY E 122 -1 O LEU E 118 N ILE E 109 \ SHEET 4 AA6 4 ILE E 198 ASP E 205 -1 O GLU E 202 N LEU E 119 \ SHEET 1 AA7 7 PHE F 112 ILE F 116 0 \ SHEET 2 AA7 7 TYR F 99 ILE F 103 -1 N TYR F 99 O ILE F 116 \ SHEET 3 AA7 7 ASN F 44 ARG F 59 -1 N TYR F 57 O GLY F 100 \ SHEET 4 AA7 7 ILE F 25 GLY F 41 -1 N GLN F 27 O LEU F 58 \ SHEET 5 AA7 7 VAL F 157 VAL F 162 -1 O VAL F 157 N TRP F 40 \ SHEET 6 AA7 7 LEU F 147 LYS F 151 -1 N VAL F 148 O ILE F 160 \ SHEET 7 AA7 7 LYS F 140 ARG F 144 -1 N GLU F 142 O MET F 149 \ SHEET 1 AA8 5 VAL H 43 LYS H 50 0 \ SHEET 2 AA8 5 SER H 30 PHE H 38 -1 N LEU H 31 O ILE H 49 \ SHEET 3 AA8 5 ILE H 19 VAL H 26 -1 N LYS H 24 O THR H 32 \ SHEET 4 AA8 5 GLN H 8 ILE H 11 -1 N ILE H 9 O GLY H 21 \ SHEET 5 AA8 5 LEU H 57 VAL H 59 -1 O LYS H 58 N GLU H 10 \ LINK OE1 GLU A 148 MG MG A 301 1555 1555 2.94 \ SITE 1 AC1 3 LYS A 134 GLU A 148 6VQ A 302 \ SITE 1 AC2 12 TRP A 49 THR A 52 ASP A 53 LYS A 126 \ SITE 2 AC2 12 HIS A 127 ARG A 132 LYS A 134 HIS A 194 \ SITE 3 AC2 12 LYS A 195 ASN A 196 PHE A 223 MG A 301 \ SITE 1 AC3 11 TRP E 49 ASP E 53 LYS E 100 HIS E 127 \ SITE 2 AC3 11 ARG E 132 LYS E 134 GLU E 151 LYS E 174 \ SITE 3 AC3 11 ASN E 196 GLU E 197 PHE E 223 \ CRYST1 174.260 83.250 104.300 90.00 93.62 90.00 C 1 2 1 8 \ ORIGX1 1.000000 0.000000 0.000000 0.00000 \ ORIGX2 0.000000 1.000000 0.000000 0.00000 \ ORIGX3 0.000000 0.000000 1.000000 0.00000 \ SCALE1 0.005739 0.000000 0.000363 0.00000 \ SCALE2 0.000000 0.012012 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.009607 0.00000 \ TER 2130 ASN A 263 \ TER 3574 ASP B 185 \ TER 3745 PHE C 379 \ TER 4256 ASN D 65 \ TER 6363 ASN E 263 \ TER 7836 THR F 188 \ TER 8030 VAL G 380 \ ATOM 8031 N LEU H 2 -31.263 33.415 27.648 1.00208.44 N \ ANISOU 8031 N LEU H 2 42692 19302 17204 3328 -6655 3772 N \ ATOM 8032 CA LEU H 2 -29.867 33.072 27.404 1.00199.19 C \ ANISOU 8032 CA LEU H 2 41593 17843 16246 3172 -7085 3450 C \ ATOM 8033 C LEU H 2 -28.934 33.724 28.417 1.00199.88 C \ ANISOU 8033 C LEU H 2 42052 17864 16028 3424 -7302 3126 C \ ATOM 8034 O LEU H 2 -27.847 33.214 28.686 1.00194.05 O \ ANISOU 8034 O LEU H 2 41393 16970 15369 3366 -7627 2950 O \ ATOM 8035 CB LEU H 2 -29.457 33.478 25.986 1.00192.57 C \ ANISOU 8035 CB LEU H 2 40619 16798 15750 2917 -7245 3209 C \ ATOM 8036 CG LEU H 2 -28.201 32.793 25.447 1.00186.03 C \ ANISOU 8036 CG LEU H 2 39729 15702 15252 2675 -7651 2980 C \ ATOM 8037 CD1 LEU H 2 -28.377 31.283 25.449 1.00186.53 C \ ANISOU 8037 CD1 LEU H 2 39569 15774 15528 2498 -7641 3286 C \ ATOM 8038 CD2 LEU H 2 -27.861 33.302 24.053 1.00182.26 C \ ANISOU 8038 CD2 LEU H 2 39113 15046 15090 2441 -7785 2747 C \ ATOM 8039 N ASN H 3 -29.363 34.847 28.986 1.00203.71 N \ ANISOU 8039 N ASN H 3 42765 18473 16164 3706 -7120 3050 N \ ATOM 8040 CA ASN H 3 -28.551 35.575 29.950 1.00206.99 C \ ANISOU 8040 CA ASN H 3 43552 18828 16267 3945 -7308 2734 C \ ATOM 8041 C ASN H 3 -28.771 34.997 31.343 1.00211.08 C \ ANISOU 8041 C ASN H 3 44184 19529 16486 4171 -7206 2952 C \ ATOM 8042 O ASN H 3 -29.912 34.734 31.738 1.00210.45 O \ ANISOU 8042 O ASN H 3 43999 19699 16263 4288 -6857 3319 O \ ATOM 8043 CB ASN H 3 -28.909 37.063 29.926 1.00206.10 C \ ANISOU 8043 CB ASN H 3 43656 18742 15910 4151 -7158 2539 C \ ATOM 8044 CG ASN H 3 -27.712 37.961 30.173 1.00207.19 C \ ANISOU 8044 CG ASN H 3 44120 18671 15933 4215 -7491 2064 C \ ATOM 8045 OD1 ASN H 3 -26.565 37.546 30.007 1.00204.81 O \ ANISOU 8045 OD1 ASN H 3 43814 18184 15819 4041 -7859 1851 O \ ATOM 8046 ND2 ASN H 3 -27.975 39.202 30.567 1.00212.07 N \ ANISOU 8046 ND2 ASN H 3 45016 19319 16240 4464 -7363 1897 N \ ATOM 8047 N PHE H 4 -27.675 34.782 32.079 1.00205.51 N \ ANISOU 8047 N PHE H 4 43678 18714 15693 4226 -7514 2739 N \ ATOM 8048 CA PHE H 4 -27.759 34.359 33.473 1.00208.07 C \ ANISOU 8048 CA PHE H 4 44154 19201 15702 4462 -7449 2898 C \ ATOM 8049 C PHE H 4 -27.072 35.341 34.422 1.00213.25 C \ ANISOU 8049 C PHE H 4 45200 19818 16006 4721 -7598 2558 C \ ATOM 8050 O PHE H 4 -26.685 34.952 35.529 1.00220.76 O \ ANISOU 8050 O PHE H 4 46301 20831 16746 4871 -7684 2581 O \ ATOM 8051 CB PHE H 4 -27.162 32.960 33.659 1.00207.06 C \ ANISOU 8051 CB PHE H 4 43886 19012 15774 4304 -7655 3035 C \ ATOM 8052 CG PHE H 4 -27.884 31.866 32.908 1.00205.55 C \ ANISOU 8052 CG PHE H 4 43335 18864 15900 4060 -7497 3406 C \ ATOM 8053 CD1 PHE H 4 -29.185 31.513 33.232 1.00207.29 C \ ANISOU 8053 CD1 PHE H 4 43416 19345 16002 4137 -7114 3832 C \ ATOM 8054 CD2 PHE H 4 -27.238 31.156 31.910 1.00202.63 C \ ANISOU 8054 CD2 PHE H 4 42766 18280 15946 3752 -7739 3331 C \ ATOM 8055 CE1 PHE H 4 -29.837 30.494 32.555 1.00206.13 C \ ANISOU 8055 CE1 PHE H 4 42939 19233 16147 3889 -6981 4176 C \ ATOM 8056 CE2 PHE H 4 -27.883 30.137 31.229 1.00201.45 C \ ANISOU 8056 CE2 PHE H 4 42302 18151 16088 3518 -7603 3659 C \ ATOM 8057 CZ PHE H 4 -29.185 29.806 31.552 1.00203.21 C \ ANISOU 8057 CZ PHE H 4 42393 18625 16191 3576 -7227 4082 C \ ATOM 8058 N LYS H 5 -26.921 36.604 34.024 1.00213.18 N \ ANISOU 8058 N LYS H 5 45363 19706 15928 4771 -7628 2248 N \ ATOM 8059 CA LYS H 5 -26.283 37.589 34.890 1.00212.01 C \ ANISOU 8059 CA LYS H 5 45597 19503 15454 4997 -7769 1912 C \ ATOM 8060 C LYS H 5 -27.175 37.875 36.093 1.00214.26 C \ ANISOU 8060 C LYS H 5 46064 20036 15309 5352 -7447 2110 C \ ATOM 8061 O LYS H 5 -28.388 38.052 35.948 1.00214.56 O \ ANISOU 8061 O LYS H 5 45996 20259 15267 5457 -7073 2376 O \ ATOM 8062 CB LYS H 5 -25.987 38.881 34.127 1.00211.15 C \ ANISOU 8062 CB LYS H 5 45627 19215 15387 4953 -7858 1552 C \ ATOM 8063 CG LYS H 5 -24.824 38.787 33.147 1.00207.82 C \ ANISOU 8063 CG LYS H 5 45095 18537 15331 4634 -8249 1262 C \ ATOM 8064 CD LYS H 5 -24.965 39.796 32.014 1.00206.64 C \ ANISOU 8064 CD LYS H 5 44929 18259 15325 4519 -8225 1065 C \ ATOM 8065 CE LYS H 5 -23.964 39.521 30.903 1.00206.09 C \ ANISOU 8065 CE LYS H 5 44662 17975 15668 4172 -8573 853 C \ ATOM 8066 NZ LYS H 5 -23.821 40.679 29.973 1.00204.70 N1+ \ ANISOU 8066 NZ LYS H 5 44539 17650 15588 4073 -8624 571 N1+ \ ATOM 8067 N GLY H 6 -26.576 37.920 37.282 1.00217.42 N \ ANISOU 8067 N GLY H 6 46725 20454 15431 5540 -7589 1987 N \ ATOM 8068 CA GLY H 6 -27.309 38.118 38.516 1.00221.48 C \ ANISOU 8068 CA GLY H 6 47421 21205 15528 5882 -7317 2163 C \ ATOM 8069 C GLY H 6 -27.486 36.882 39.374 1.00223.83 C \ ANISOU 8069 C GLY H 6 47600 21687 15757 5928 -7263 2506 C \ ATOM 8070 O GLY H 6 -27.863 37.017 40.546 1.00227.58 O \ ANISOU 8070 O GLY H 6 48256 22347 15866 6215 -7105 2610 O \ ATOM 8071 N TYR H 7 -27.200 35.694 38.846 1.00221.90 N \ ANISOU 8071 N TYR H 7 47073 21390 15851 5659 -7397 2675 N \ ATOM 8072 CA TYR H 7 -27.284 34.478 39.642 1.00224.17 C \ ANISOU 8072 CA TYR H 7 47258 21824 16093 5685 -7373 2994 C \ ATOM 8073 C TYR H 7 -26.227 34.502 40.743 1.00226.89 C \ ANISOU 8073 C TYR H 7 47879 22119 16209 5828 -7655 2767 C \ ATOM 8074 O TYR H 7 -25.133 35.045 40.573 1.00225.93 O \ ANISOU 8074 O TYR H 7 47918 21788 16137 5765 -7980 2370 O \ ATOM 8075 CB TYR H 7 -27.088 33.234 38.762 1.00221.45 C \ ANISOU 8075 CB TYR H 7 46575 21381 16185 5352 -7491 3180 C \ ATOM 8076 CG TYR H 7 -28.328 32.761 38.022 1.00220.04 C \ ANISOU 8076 CG TYR H 7 46074 21338 16193 5222 -7158 3569 C \ ATOM 8077 CD1 TYR H 7 -29.560 33.315 38.283 1.00221.56 C \ ANISOU 8077 CD1 TYR H 7 46262 21773 16148 5418 -6766 3784 C \ ATOM 8078 CD2 TYR H 7 -28.267 31.745 37.081 1.00217.40 C \ ANISOU 8078 CD2 TYR H 7 45435 20897 16271 4905 -7237 3727 C \ ATOM 8079 CE1 TYR H 7 -30.700 32.901 37.626 1.00220.49 C \ ANISOU 8079 CE1 TYR H 7 45812 21787 16177 5294 -6462 4151 C \ ATOM 8080 CE2 TYR H 7 -29.412 31.320 36.420 1.00216.33 C \ ANISOU 8080 CE2 TYR H 7 45001 20890 16302 4770 -6936 4088 C \ ATOM 8081 CZ TYR H 7 -30.626 31.902 36.698 1.00217.87 C \ ANISOU 8081 CZ TYR H 7 45183 21345 16255 4960 -6551 4304 C \ ATOM 8082 OH TYR H 7 -31.772 31.494 36.052 1.00216.99 O \ ANISOU 8082 OH TYR H 7 44756 21386 16302 4820 -6253 4675 O \ ATOM 8083 N GLN H 8 -26.569 33.917 41.890 1.00192.60 N \ ANISOU 8083 N GLN H 8 37883 20472 14823 9217 -6897 -2445 N \ ATOM 8084 CA GLN H 8 -25.618 33.803 42.990 1.00188.83 C \ ANISOU 8084 CA GLN H 8 37273 19751 14724 8546 -6393 -1903 C \ ATOM 8085 C GLN H 8 -24.660 32.662 42.683 1.00184.84 C \ ANISOU 8085 C GLN H 8 36142 19079 15010 7165 -5443 -1380 C \ ATOM 8086 O GLN H 8 -25.090 31.519 42.500 1.00182.46 O \ ANISOU 8086 O GLN H 8 34554 19505 15269 6847 -4915 -1545 O \ ATOM 8087 CB GLN H 8 -26.348 33.552 44.307 1.00195.25 C \ ANISOU 8087 CB GLN H 8 36867 21566 15755 9067 -6283 -2213 C \ ATOM 8088 CG GLN H 8 -25.461 33.551 45.551 1.00203.06 C \ ANISOU 8088 CG GLN H 8 37703 22366 17087 8497 -5843 -1683 C \ ATOM 8089 CD GLN H 8 -24.627 34.808 45.706 1.00207.40 C \ ANISOU 8089 CD GLN H 8 39776 21839 17188 8545 -6267 -1385 C \ ATOM 8090 OE1 GLN H 8 -23.590 34.968 45.061 1.00207.81 O \ ANISOU 8090 OE1 GLN H 8 40625 20963 17369 7718 -6040 -955 O \ ATOM 8091 NE2 GLN H 8 -25.072 35.705 46.581 1.00205.93 N \ ANISOU 8091 NE2 GLN H 8 39585 21758 16902 9257 -6585 -1733 N \ ATOM 8092 N ILE H 9 -23.361 32.965 42.644 1.00184.99 N \ ANISOU 8092 N ILE H 9 37043 18154 15090 6342 -5220 -796 N \ ATOM 8093 CA ILE H 9 -22.376 32.051 42.080 1.00182.19 C \ ANISOU 8093 CA ILE H 9 36367 17479 15379 5079 -4449 -378 C \ ATOM 8094 C ILE H 9 -21.242 31.817 43.072 1.00181.97 C \ ANISOU 8094 C ILE H 9 36084 17174 15885 4292 -3892 183 C \ ATOM 8095 O ILE H 9 -20.891 32.692 43.870 1.00187.38 O \ ANISOU 8095 O ILE H 9 37449 17520 16226 4550 -4194 345 O \ ATOM 8096 CB ILE H 9 -21.822 32.579 40.734 1.00178.97 C \ ANISOU 8096 CB ILE H 9 37326 16188 14485 4689 -4694 -290 C \ ATOM 8097 CG1 ILE H 9 -22.956 32.848 39.744 1.00177.98 C \ ANISOU 8097 CG1 ILE H 9 37514 16346 13763 5532 -5328 -831 C \ ATOM 8098 CG2 ILE H 9 -20.890 31.572 40.102 1.00174.74 C \ ANISOU 8098 CG2 ILE H 9 36309 15448 14638 3408 -3880 8 C \ ATOM 8099 CD1 ILE H 9 -23.830 31.641 39.472 1.00173.73 C \ ANISOU 8099 CD1 ILE H 9 35426 16826 13757 5569 -4935 -1226 C \ ATOM 8100 N GLU H 10 -20.680 30.605 43.023 1.00169.76 N \ ANISOU 8100 N GLU H 10 33518 15787 15198 3348 -3087 453 N \ ATOM 8101 CA GLU H 10 -19.505 30.223 43.794 1.00163.35 C \ ANISOU 8101 CA GLU H 10 32395 14693 14976 2509 -2525 994 C \ ATOM 8102 C GLU H 10 -18.485 29.563 42.873 1.00167.69 C \ ANISOU 8102 C GLU H 10 32947 14735 16032 1398 -1966 1223 C \ ATOM 8103 O GLU H 10 -18.850 28.744 42.025 1.00173.30 O \ ANISOU 8103 O GLU H 10 33059 15710 17079 1160 -1684 1005 O \ ATOM 8104 CB GLU H 10 -19.873 29.256 44.926 1.00159.24 C \ ANISOU 8104 CB GLU H 10 30391 14989 15125 2523 -2073 1099 C \ ATOM 8105 CG GLU H 10 -21.365 29.085 45.141 1.00165.56 C \ ANISOU 8105 CG GLU H 10 30457 16720 15729 3416 -2326 582 C \ ATOM 8106 CD GLU H 10 -21.688 27.998 46.146 1.00168.90 C \ ANISOU 8106 CD GLU H 10 29415 17932 16827 3222 -1772 709 C \ ATOM 8107 OE1 GLU H 10 -20.780 27.587 46.900 1.00165.90 O \ ANISOU 8107 OE1 GLU H 10 28727 17355 16954 2589 -1339 1244 O \ ATOM 8108 OE2 GLU H 10 -22.853 27.549 46.177 1.00173.30 O1- \ ANISOU 8108 OE2 GLU H 10 29141 19321 17386 3686 -1774 262 O1- \ ATOM 8109 N ILE H 11 -17.204 29.916 43.047 1.00168.08 N \ ANISOU 8109 N ILE H 11 33625 14099 16138 701 -1791 1604 N \ ATOM 8110 CA ILE H 11 -16.091 29.307 42.322 1.00166.43 C \ ANISOU 8110 CA ILE H 11 33344 13439 16453 -414 -1219 1789 C \ ATOM 8111 C ILE H 11 -15.020 28.846 43.307 1.00166.95 C \ ANISOU 8111 C ILE H 11 32751 13475 17208 -1032 -728 2201 C \ ATOM 8112 O ILE H 11 -14.975 29.286 44.462 1.00179.10 O \ ANISOU 8112 O ILE H 11 34239 15187 18623 -667 -908 2371 O \ ATOM 8113 CB ILE H 11 -15.476 30.250 41.268 1.00163.28 C \ ANISOU 8113 CB ILE H 11 34145 12495 15401 -778 -1471 1608 C \ ATOM 8114 CG1 ILE H 11 -14.898 31.509 41.920 1.00163.25 C \ ANISOU 8114 CG1 ILE H 11 34651 12477 14899 -635 -1802 1525 C \ ATOM 8115 CG2 ILE H 11 -16.508 30.598 40.203 1.00159.57 C \ ANISOU 8115 CG2 ILE H 11 34560 11836 14232 -207 -1987 1327 C \ ATOM 8116 CD1 ILE H 11 -13.394 31.441 42.151 1.00159.79 C \ ANISOU 8116 CD1 ILE H 11 33617 12186 14911 -1522 -1314 1591 C \ ATOM 8117 N GLU H 12 -14.137 27.951 42.829 1.00151.98 N \ ANISOU 8117 N GLU H 12 29972 11677 16095 -1903 -120 2200 N \ ATOM 8118 CA GLU H 12 -13.194 27.290 43.721 1.00158.41 C \ ANISOU 8118 CA GLU H 12 29644 12806 17740 -2324 322 2457 C \ ATOM 8119 C GLU H 12 -11.771 27.168 43.153 1.00173.51 C \ ANISOU 8119 C GLU H 12 31025 14845 20056 -3015 627 2285 C \ ATOM 8120 O GLU H 12 -11.489 27.391 41.965 1.00161.41 O \ ANISOU 8120 O GLU H 12 29860 13210 18257 -3329 638 1981 O \ ATOM 8121 CB GLU H 12 -13.758 25.911 44.081 1.00152.53 C \ ANISOU 8121 CB GLU H 12 27947 12209 17798 -2407 770 2710 C \ ATOM 8122 CG GLU H 12 -15.228 25.959 44.550 1.00152.99 C \ ANISOU 8122 CG GLU H 12 27858 12775 17497 -1522 464 2603 C \ ATOM 8123 CD GLU H 12 -15.710 24.635 45.063 1.00164.29 C \ ANISOU 8123 CD GLU H 12 27874 14789 19758 -1577 929 2712 C \ ATOM 8124 OE1 GLU H 12 -14.854 23.777 45.329 1.00162.45 O \ ANISOU 8124 OE1 GLU H 12 26999 14381 20343 -2228 1421 3036 O \ ATOM 8125 OE2 GLU H 12 -16.916 24.339 45.062 1.00176.64 O1- \ ANISOU 8125 OE2 GLU H 12 28929 16961 21225 -1053 851 2433 O1- \ ATOM 8126 N LEU H 13 -10.867 26.854 44.072 1.00180.42 N \ ANISOU 8126 N LEU H 13 31081 15960 21511 -3178 826 2500 N \ ATOM 8127 CA LEU H 13 -9.559 26.346 43.754 1.00170.15 C \ ANISOU 8127 CA LEU H 13 28953 14840 20858 -3678 1140 2411 C \ ATOM 8128 C LEU H 13 -9.084 25.447 44.907 1.00160.24 C \ ANISOU 8128 C LEU H 13 26565 13824 20494 -3668 1347 2784 C \ ATOM 8129 O LEU H 13 -9.251 25.766 46.089 1.00152.30 O \ ANISOU 8129 O LEU H 13 25658 12872 19340 -3386 1205 3072 O \ ATOM 8130 CB LEU H 13 -8.611 27.506 43.491 1.00167.22 C \ ANISOU 8130 CB LEU H 13 29287 14398 19852 -3864 956 2173 C \ ATOM 8131 CG LEU H 13 -7.146 27.211 43.198 1.00162.63 C \ ANISOU 8131 CG LEU H 13 28052 13984 19755 -4321 1216 2042 C \ ATOM 8132 CD1 LEU H 13 -6.346 27.211 44.493 1.00157.90 C \ ANISOU 8132 CD1 LEU H 13 26953 13516 19525 -4265 1227 2290 C \ ATOM 8133 CD2 LEU H 13 -6.958 25.906 42.423 1.00157.02 C \ ANISOU 8133 CD2 LEU H 13 26343 13413 19904 -4562 1542 1971 C \ ATOM 8134 N LYS H 17 -9.013 28.248 47.584 1.00181.65 N \ ANISOU 8134 N LYS H 17 30991 16468 21561 -2904 520 3068 N \ ATOM 8135 CA LYS H 17 -9.761 29.470 47.851 1.00185.23 C \ ANISOU 8135 CA LYS H 17 32572 16746 21059 -2438 50 2950 C \ ATOM 8136 C LYS H 17 -11.086 29.468 47.079 1.00183.55 C \ ANISOU 8136 C LYS H 17 32943 16352 20447 -2053 -153 2828 C \ ATOM 8137 O LYS H 17 -11.110 29.099 45.901 1.00190.27 O \ ANISOU 8137 O LYS H 17 33798 17089 21406 -2334 -2 2631 O \ ATOM 8138 CB LYS H 17 -8.921 30.709 47.493 1.00185.10 C \ ANISOU 8138 CB LYS H 17 33370 16543 20416 -2660 -153 2599 C \ ATOM 8139 CG LYS H 17 -7.475 30.676 47.990 1.00182.40 C \ ANISOU 8139 CG LYS H 17 32502 16354 20449 -3114 81 2637 C \ ATOM 8140 CD LYS H 17 -7.380 30.427 49.491 1.00181.65 C \ ANISOU 8140 CD LYS H 17 31877 16477 20665 -2913 94 3019 C \ ATOM 8141 CE LYS H 17 -5.925 30.351 49.919 1.00179.55 C \ ANISOU 8141 CE LYS H 17 31122 16329 20770 -3344 301 3042 C \ ATOM 8142 NZ LYS H 17 -5.782 30.009 51.356 1.00177.77 N1+ \ ANISOU 8142 NZ LYS H 17 30349 16333 20864 -3183 326 3459 N1+ \ ATOM 8143 N ARG H 18 -12.162 29.933 47.736 1.00186.67 N \ ANISOU 8143 N ARG H 18 33860 16744 20322 -1358 -533 2912 N \ ATOM 8144 CA ARG H 18 -13.512 29.953 47.181 1.00169.96 C \ ANISOU 8144 CA ARG H 18 32311 14502 17764 -770 -825 2804 C \ ATOM 8145 C ARG H 18 -14.023 31.392 47.112 1.00170.65 C \ ANISOU 8145 C ARG H 18 33564 14392 16881 -120 -1476 2456 C \ ATOM 8146 O ARG H 18 -13.893 32.153 48.077 1.00178.76 O \ ANISOU 8146 O ARG H 18 34800 15504 17618 168 -1713 2447 O \ ATOM 8147 CB ARG H 18 -14.508 29.122 48.011 1.00162.04 C \ ANISOU 8147 CB ARG H 18 30812 13787 16967 -296 -757 3172 C \ ATOM 8148 CG ARG H 18 -14.244 27.649 48.244 1.00158.36 C \ ANISOU 8148 CG ARG H 18 29058 13606 17505 -841 -120 3481 C \ ATOM 8149 CD ARG H 18 -15.537 26.967 48.688 1.00160.63 C \ ANISOU 8149 CD ARG H 18 28367 14713 17953 -280 -77 3359 C \ ATOM 8150 NE ARG H 18 -15.381 25.524 48.958 1.00156.38 N \ ANISOU 8150 NE ARG H 18 26585 14452 18381 -784 529 3655 N \ ATOM 8151 CZ ARG H 18 -16.415 24.703 49.135 1.00161.91 C \ ANISOU 8151 CZ ARG H 18 26364 15801 19354 -539 717 3541 C \ ATOM 8152 NH1 ARG H 18 -16.224 23.392 49.331 1.00162.66 N1+ \ ANISOU 8152 NH1 ARG H 18 25440 16026 20338 -1050 1271 3831 N1+ \ ATOM 8153 NH2 ARG H 18 -17.634 25.208 49.132 1.00165.31 N \ ANISOU 8153 NH2 ARG H 18 26906 16745 19161 218 341 3108 N \ ATOM 8154 N ILE H 19 -14.590 31.779 45.962 1.00205.16 N \ ANISOU 8154 N ILE H 19 44834 13559 19559 -1187 -9533 2762 N \ ATOM 8155 CA ILE H 19 -15.126 33.130 45.769 1.00201.40 C \ ANISOU 8155 CA ILE H 19 44404 13243 18874 -1650 -9316 2797 C \ ATOM 8156 C ILE H 19 -16.630 33.033 45.546 1.00197.16 C \ ANISOU 8156 C ILE H 19 43434 12869 18609 -1480 -8458 2848 C \ ATOM 8157 O ILE H 19 -17.103 32.178 44.792 1.00194.62 O \ ANISOU 8157 O ILE H 19 42678 12615 18655 -1381 -8125 2888 O \ ATOM 8158 CB ILE H 19 -14.453 33.911 44.610 1.00201.30 C \ ANISOU 8158 CB ILE H 19 44391 13348 18748 -2437 -9783 2839 C \ ATOM 8159 CG1 ILE H 19 -12.934 34.029 44.793 1.00205.62 C \ ANISOU 8159 CG1 ILE H 19 45333 13789 19004 -2652 -10697 2818 C \ ATOM 8160 CG2 ILE H 19 -15.059 35.325 44.453 1.00199.66 C \ ANISOU 8160 CG2 ILE H 19 44211 13314 18339 -2883 -9547 2857 C \ ATOM 8161 CD1 ILE H 19 -12.493 34.362 46.218 1.00209.10 C \ ANISOU 8161 CD1 ILE H 19 46247 14085 19115 -2296 -10946 2735 C \ ATOM 8162 N THR H 20 -17.383 33.914 46.195 1.00196.46 N \ ANISOU 8162 N THR H 20 43450 12841 18356 -1447 -8123 2841 N \ ATOM 8163 CA THR H 20 -18.831 33.968 46.040 1.00192.65 C \ ANISOU 8163 CA THR H 20 42562 12524 18112 -1302 -7370 2890 C \ ATOM 8164 C THR H 20 -19.202 35.343 45.519 1.00191.13 C \ ANISOU 8164 C THR H 20 42348 12486 17784 -1803 -7330 2894 C \ ATOM 8165 O THR H 20 -18.680 36.350 45.995 1.00193.41 O \ ANISOU 8165 O THR H 20 43044 12715 17728 -2039 -7704 2843 O \ ATOM 8166 CB THR H 20 -19.568 33.704 47.365 1.00193.18 C \ ANISOU 8166 CB THR H 20 42724 12521 18154 -757 -6975 2876 C \ ATOM 8167 OG1 THR H 20 -19.052 32.514 47.970 1.00195.41 O \ ANISOU 8167 OG1 THR H 20 43105 12646 18494 -320 -7121 2861 O \ ATOM 8168 CG2 THR H 20 -21.081 33.530 47.137 1.00189.18 C \ ANISOU 8168 CG2 THR H 20 41726 12190 17963 -585 -6219 2938 C \ ATOM 8169 N GLY H 21 -20.105 35.393 44.553 1.00187.36 N \ ANISOU 8169 N GLY H 21 41392 12210 17586 -1959 -6885 2950 N \ ATOM 8170 CA GLY H 21 -20.432 36.699 44.020 1.00193.78 C \ ANISOU 8170 CA GLY H 21 42171 13177 18278 -2431 -6886 2949 C \ ATOM 8171 C GLY H 21 -21.579 36.657 43.046 1.00198.89 C \ ANISOU 8171 C GLY H 21 42245 14048 19276 -2496 -6332 3007 C \ ATOM 8172 O GLY H 21 -22.119 35.594 42.723 1.00203.97 O \ ANISOU 8172 O GLY H 21 42498 14733 20269 -2202 -5936 3053 O \ ATOM 8173 N THR H 22 -21.935 37.856 42.583 1.00199.65 N \ ANISOU 8173 N THR H 22 42294 14288 19275 -2888 -6331 3001 N \ ATOM 8174 CA THR H 22 -23.004 38.030 41.614 1.00197.00 C \ ANISOU 8174 CA THR H 22 41429 14178 19243 -3000 -5869 3048 C \ ATOM 8175 C THR H 22 -22.416 38.063 40.214 1.00203.48 C \ ANISOU 8175 C THR H 22 42047 15160 20108 -3587 -6131 3084 C \ ATOM 8176 O THR H 22 -21.430 38.760 39.968 1.00207.26 O \ ANISOU 8176 O THR H 22 42826 15648 20276 -4108 -6691 3067 O \ ATOM 8177 CB THR H 22 -23.747 39.334 41.872 1.00195.10 C \ ANISOU 8177 CB THR H 22 41237 14006 18885 -3091 -5745 3016 C \ ATOM 8178 OG1 THR H 22 -22.831 40.422 41.638 1.00201.05 O \ ANISOU 8178 OG1 THR H 22 42343 14770 19279 -3649 -6319 2980 O \ ATOM 8179 CG2 THR H 22 -24.248 39.384 43.313 1.00192.34 C \ ANISOU 8179 CG2 THR H 22 41137 13496 18448 -2589 -5545 2974 C \ ATOM 8180 N LEU H 23 -23.027 37.321 39.303 1.00209.31 N \ ANISOU 8180 N LEU H 23 42265 16039 21226 -3540 -5735 3136 N \ ATOM 8181 CA LEU H 23 -22.499 37.187 37.952 1.00206.93 C \ ANISOU 8181 CA LEU H 23 41722 15903 20999 -4100 -5942 3170 C \ ATOM 8182 C LEU H 23 -22.741 38.470 37.155 1.00202.64 C \ ANISOU 8182 C LEU H 23 41060 15601 20332 -4650 -6025 3174 C \ ATOM 8183 O LEU H 23 -23.892 38.847 36.891 1.00199.99 O \ ANISOU 8183 O LEU H 23 40389 15397 20202 -4503 -5574 3185 O \ ATOM 8184 CB LEU H 23 -23.157 36.000 37.261 1.00205.20 C \ ANISOU 8184 CB LEU H 23 40967 15756 21243 -3848 -5451 3213 C \ ATOM 8185 CG LEU H 23 -22.976 35.878 35.758 1.00200.31 C \ ANISOU 8185 CG LEU H 23 39954 15365 20788 -4406 -5488 3241 C \ ATOM 8186 CD1 LEU H 23 -21.500 35.927 35.411 1.00205.68 C \ ANISOU 8186 CD1 LEU H 23 40923 16021 21204 -5004 -6176 3227 C \ ATOM 8187 CD2 LEU H 23 -23.576 34.564 35.300 1.00189.58 C \ ANISOU 8187 CD2 LEU H 23 38126 14012 19893 -4052 -5006 3268 C \ ATOM 8188 N LYS H 24 -21.650 39.135 36.761 1.00200.37 N \ ANISOU 8188 N LYS H 24 41033 15385 19715 -5298 -6625 3170 N \ ATOM 8189 CA LYS H 24 -21.710 40.369 35.984 1.00197.43 C \ ANISOU 8189 CA LYS H 24 40572 15271 19170 -5891 -6794 3179 C \ ATOM 8190 C LYS H 24 -21.712 40.104 34.484 1.00200.38 C \ ANISOU 8190 C LYS H 24 40441 15959 19737 -6389 -6724 3228 C \ ATOM 8191 O LYS H 24 -22.455 40.760 33.750 1.00203.91 O \ ANISOU 8191 O LYS H 24 40562 16643 20272 -6561 -6497 3241 O \ ATOM 8192 CB LYS H 24 -20.543 41.291 36.350 1.00200.68 C \ ANISOU 8192 CB LYS H 24 41501 15651 19096 -6387 -7487 3158 C \ ATOM 8193 CG LYS H 24 -20.637 42.681 35.722 1.00200.62 C \ ANISOU 8193 CG LYS H 24 41454 15908 18864 -6951 -7680 3167 C \ ATOM 8194 CD LYS H 24 -21.948 43.350 36.117 1.00195.28 C \ ANISOU 8194 CD LYS H 24 40681 15190 18327 -6512 -7225 3127 C \ ATOM 8195 CE LYS H 24 -21.802 44.853 36.276 1.00191.81 C \ ANISOU 8195 CE LYS H 24 40531 14809 17538 -6875 -7578 3096 C \ ATOM 8196 NZ LYS H 24 -20.706 45.207 37.222 1.00192.81 N1+ \ ANISOU 8196 NZ LYS H 24 41255 14734 17269 -7009 -8124 3052 N1+ \ ATOM 8197 N GLN H 25 -20.873 39.182 34.014 1.00202.68 N \ ANISOU 8197 N GLN H 25 40651 16262 20097 -6644 -6935 3246 N \ ATOM 8198 CA GLN H 25 -20.939 38.707 32.638 1.00202.50 C \ ANISOU 8198 CA GLN H 25 40073 16537 20329 -7059 -6776 3270 C \ ATOM 8199 C GLN H 25 -20.105 37.443 32.520 1.00200.85 C \ ANISOU 8199 C GLN H 25 39829 16200 20287 -7119 -6948 3245 C \ ATOM 8200 O GLN H 25 -19.222 37.180 33.343 1.00207.28 O \ ANISOU 8200 O GLN H 25 41089 16743 20925 -7037 -7363 3219 O \ ATOM 8201 CB GLN H 25 -20.450 39.746 31.623 1.00206.05 C \ ANISOU 8201 CB GLN H 25 40369 17407 20514 -7914 -7114 3295 C \ ATOM 8202 CG GLN H 25 -18.952 39.957 31.589 1.00207.41 C \ ANISOU 8202 CG GLN H 25 40787 17677 20341 -8593 -7787 3292 C \ ATOM 8203 CD GLN H 25 -18.541 40.791 30.397 1.00202.74 C \ ANISOU 8203 CD GLN H 25 39825 17651 19557 -9422 -7973 3331 C \ ATOM 8204 OE1 GLN H 25 -19.230 40.801 29.376 1.00194.72 O \ ANISOU 8204 OE1 GLN H 25 38287 16948 18750 -9526 -7604 3345 O \ ATOM 8205 NE2 GLN H 25 -17.419 41.490 30.511 1.00206.52 N \ ANISOU 8205 NE2 GLN H 25 40519 18304 19647 -9972 -8507 3358 N \ ATOM 8206 N VAL H 26 -20.403 36.661 31.487 1.00199.32 N \ ANISOU 8206 N VAL H 26 39084 16190 20460 -7254 -6634 3230 N \ ATOM 8207 CA VAL H 26 -19.717 35.401 31.236 1.00190.09 C \ ANISOU 8207 CA VAL H 26 37765 14905 19555 -7337 -6749 3151 C \ ATOM 8208 C VAL H 26 -19.401 35.309 29.751 1.00180.72 C \ ANISOU 8208 C VAL H 26 35928 14198 18538 -8135 -6751 3047 C \ ATOM 8209 O VAL H 26 -20.234 35.636 28.898 1.00166.05 O \ ANISOU 8209 O VAL H 26 33641 12657 16794 -8219 -6353 3102 O \ ATOM 8210 CB VAL H 26 -20.549 34.187 31.702 1.00182.74 C \ ANISOU 8210 CB VAL H 26 36744 13674 19016 -6467 -6228 3174 C \ ATOM 8211 CG1 VAL H 26 -21.930 34.195 31.059 1.00174.72 C \ ANISOU 8211 CG1 VAL H 26 35222 12869 18294 -6214 -5550 3225 C \ ATOM 8212 CG2 VAL H 26 -19.818 32.886 31.388 1.00180.59 C \ ANISOU 8212 CG2 VAL H 26 36312 13251 19054 -6564 -6391 3059 C \ ATOM 8213 N SER H 27 -18.185 34.877 29.450 1.00173.32 N \ ANISOU 8213 N SER H 27 32304 16631 16918 661 4916 2040 N \ ATOM 8214 CA SER H 27 -17.733 34.606 28.097 1.00172.71 C \ ANISOU 8214 CA SER H 27 31890 16924 16807 310 5207 2078 C \ ATOM 8215 C SER H 27 -16.932 33.310 28.127 1.00175.94 C \ ANISOU 8215 C SER H 27 31772 17496 17583 -14 5309 1742 C \ ATOM 8216 O SER H 27 -16.567 32.841 29.214 1.00167.89 O \ ANISOU 8216 O SER H 27 30709 16208 16875 5 5134 1530 O \ ATOM 8217 CB SER H 27 -16.895 35.773 27.567 1.00173.59 C \ ANISOU 8217 CB SER H 27 32254 16696 17004 48 5219 2335 C \ ATOM 8218 OG SER H 27 -15.661 35.868 28.255 1.00171.42 O \ ANISOU 8218 OG SER H 27 32002 15929 17202 -234 5072 2208 O \ ATOM 8219 N PRO H 28 -16.661 32.687 26.972 1.00178.18 N \ ANISOU 8219 N PRO H 28 31633 18227 17839 -306 5593 1682 N \ ATOM 8220 CA PRO H 28 -15.873 31.445 26.968 1.00174.29 C \ ANISOU 8220 CA PRO H 28 30623 17883 17717 -628 5707 1359 C \ ATOM 8221 C PRO H 28 -14.537 31.565 27.686 1.00169.44 C \ ANISOU 8221 C PRO H 28 30037 16739 17602 -924 5552 1260 C \ ATOM 8222 O PRO H 28 -13.975 30.559 28.131 1.00166.24 O \ ANISOU 8222 O PRO H 28 29280 16341 17543 -1089 5561 983 O \ ATOM 8223 CB PRO H 28 -15.677 31.176 25.472 1.00180.32 C \ ANISOU 8223 CB PRO H 28 31041 19129 18343 -929 6029 1394 C \ ATOM 8224 CG PRO H 28 -16.914 31.719 24.859 1.00182.68 C \ ANISOU 8224 CG PRO H 28 31547 19759 18105 -603 6101 1633 C \ ATOM 8225 CD PRO H 28 -17.210 32.981 25.634 1.00183.90 C \ ANISOU 8225 CD PRO H 28 32304 19409 18161 -313 5833 1889 C \ ATOM 8226 N LYS H 29 -14.016 32.786 27.796 1.00177.63 N \ ANISOU 8226 N LYS H 29 31481 17320 18689 -995 5416 1486 N \ ATOM 8227 CA LYS H 29 -12.696 33.010 28.369 1.00171.89 C \ ANISOU 8227 CA LYS H 29 30792 16095 18422 -1305 5280 1411 C \ ATOM 8228 C LYS H 29 -12.710 33.666 29.743 1.00170.91 C \ ANISOU 8228 C LYS H 29 31094 15426 18419 -1064 4949 1429 C \ ATOM 8229 O LYS H 29 -11.804 33.406 30.539 1.00170.70 O \ ANISOU 8229 O LYS H 29 30992 15074 18791 -1242 4812 1256 O \ ATOM 8230 CB LYS H 29 -11.844 33.873 27.424 1.00170.91 C \ ANISOU 8230 CB LYS H 29 30760 15831 18347 -1656 5391 1625 C \ ATOM 8231 CG LYS H 29 -10.443 34.171 27.948 1.00172.01 C \ ANISOU 8231 CG LYS H 29 30947 15451 18959 -1998 5259 1558 C \ ATOM 8232 CD LYS H 29 -9.521 34.720 26.872 1.00175.03 C \ ANISOU 8232 CD LYS H 29 31283 15794 19428 -2405 5427 1717 C \ ATOM 8233 CE LYS H 29 -8.096 34.851 27.395 1.00177.89 C \ ANISOU 8233 CE LYS H 29 31629 15678 20284 -2766 5309 1609 C \ ATOM 8234 NZ LYS H 29 -7.133 35.208 26.315 1.00182.58 N1+ \ ANISOU 8234 NZ LYS H 29 32104 16272 20995 -3196 5494 1730 N1+ \ ATOM 8235 N SER H 30 -13.726 34.461 30.076 1.00176.23 N \ ANISOU 8235 N SER H 30 32192 16007 18761 -657 4817 1620 N \ ATOM 8236 CA SER H 30 -13.652 35.274 31.281 1.00168.44 C \ ANISOU 8236 CA SER H 30 31645 14469 17886 -464 4511 1661 C \ ATOM 8237 C SER H 30 -14.970 35.260 32.041 1.00166.63 C \ ANISOU 8237 C SER H 30 31640 14313 17358 54 4363 1669 C \ ATOM 8238 O SER H 30 -16.040 35.016 31.475 1.00165.85 O \ ANISOU 8238 O SER H 30 31486 14644 16885 293 4498 1743 O \ ATOM 8239 CB SER H 30 -13.269 36.725 30.947 1.00172.23 C \ ANISOU 8239 CB SER H 30 32549 14558 18333 -555 4465 1950 C \ ATOM 8240 OG SER H 30 -13.430 37.576 32.069 1.00172.88 O \ ANISOU 8240 OG SER H 30 33087 14147 18453 -306 4181 2002 O \ ATOM 8241 N LEU H 31 -14.863 35.515 33.344 1.00166.00 N \ ANISOU 8241 N LEU H 31 31804 13816 17450 221 4083 1583 N \ ATOM 8242 CA LEU H 31 -15.988 35.577 34.266 1.00164.37 C \ ANISOU 8242 CA LEU H 31 31847 13590 17014 707 3897 1577 C \ ATOM 8243 C LEU H 31 -15.781 36.763 35.197 1.00184.10 C \ ANISOU 8243 C LEU H 31 34852 15502 19596 830 3620 1677 C \ ATOM 8244 O LEU H 31 -14.701 36.920 35.778 1.00178.80 O \ ANISOU 8244 O LEU H 31 34190 14447 19298 581 3490 1569 O \ ATOM 8245 CB LEU H 31 -16.119 34.276 35.068 1.00162.74 C \ ANISOU 8245 CB LEU H 31 31293 13572 16969 805 3844 1280 C \ ATOM 8246 CG LEU H 31 -16.898 34.327 36.384 1.00159.05 C \ ANISOU 8246 CG LEU H 31 31079 12937 16416 1243 3579 1219 C \ ATOM 8247 CD1 LEU H 31 -18.377 34.474 36.114 1.00158.40 C \ ANISOU 8247 CD1 LEU H 31 31169 13160 15854 1670 3624 1362 C \ ATOM 8248 CD2 LEU H 31 -16.637 33.078 37.211 1.00156.12 C \ ANISOU 8248 CD2 LEU H 31 30328 12663 16326 1233 3524 925 C \ ATOM 8249 N THR H 32 -16.809 37.601 35.323 1.00188.38 N \ ANISOU 8249 N THR H 32 35804 15977 19793 1208 3537 1880 N \ ATOM 8250 CA THR H 32 -16.768 38.801 36.148 1.00189.03 C \ ANISOU 8250 CA THR H 32 36392 15519 19912 1363 3291 1989 C \ ATOM 8251 C THR H 32 -17.827 38.715 37.240 1.00181.34 C \ ANISOU 8251 C THR H 32 35625 14526 18749 1845 3081 1924 C \ ATOM 8252 O THR H 32 -18.939 38.239 36.995 1.00174.93 O \ ANISOU 8252 O THR H 32 34739 14118 17609 2140 3165 1954 O \ ATOM 8253 CB THR H 32 -16.987 40.059 35.295 1.00191.87 C \ ANISOU 8253 CB THR H 32 37101 15752 20050 1372 3384 2326 C \ ATOM 8254 OG1 THR H 32 -16.021 40.095 34.237 1.00187.95 O \ ANISOU 8254 OG1 THR H 32 36388 15308 19717 927 3591 2393 O \ ATOM 8255 CG2 THR H 32 -16.835 41.315 36.139 1.00197.19 C \ ANISOU 8255 CG2 THR H 32 38280 15827 20815 1493 3144 2421 C \ ATOM 8256 N LEU H 33 -17.469 39.140 38.453 1.00190.88 N \ ANISOU 8256 N LEU H 33 37076 15282 20168 1917 2810 1822 N \ ATOM 8257 CA LEU H 33 -18.376 39.135 39.593 1.00189.40 C \ ANISOU 8257 CA LEU H 33 37106 15027 19830 2362 2585 1753 C \ ATOM 8258 C LEU H 33 -18.420 40.518 40.232 1.00192.03 C \ ANISOU 8258 C LEU H 33 37980 14833 20149 2514 2373 1884 C \ ATOM 8259 O LEU H 33 -17.488 41.316 40.099 1.00186.88 O \ ANISOU 8259 O LEU H 33 37480 13800 19726 2229 2351 1945 O \ ATOM 8260 CB LEU H 33 -17.953 38.100 40.651 1.00186.18 C \ ANISOU 8260 CB LEU H 33 36406 14629 19704 2340 2441 1446 C \ ATOM 8261 CG LEU H 33 -17.880 36.619 40.268 1.00175.68 C \ ANISOU 8261 CG LEU H 33 34516 13778 18455 2209 2625 1267 C \ ATOM 8262 CD1 LEU H 33 -17.122 35.827 41.326 1.00177.83 C \ ANISOU 8262 CD1 LEU H 33 34532 13932 19102 2100 2473 995 C \ ATOM 8263 CD2 LEU H 33 -19.272 36.040 40.072 1.00173.37 C \ ANISOU 8263 CD2 LEU H 33 34152 13938 17782 2596 2712 1298 C \ ATOM 8264 N THR H 34 -19.527 40.799 40.919 1.00182.63 N \ ANISOU 8264 N THR H 34 37076 13624 18691 2969 2223 1925 N \ ATOM 8265 CA THR H 34 -19.633 41.973 41.775 1.00201.45 C \ ANISOU 8265 CA THR H 34 39951 15509 21083 3159 1987 1987 C \ ATOM 8266 C THR H 34 -19.977 41.521 43.193 1.00220.41 C \ ANISOU 8266 C THR H 34 42375 17844 23524 3446 1728 1762 C \ ATOM 8267 O THR H 34 -20.544 40.434 43.394 1.00216.40 O \ ANISOU 8267 O THR H 34 41585 17725 22913 3620 1751 1637 O \ ATOM 8268 CB THR H 34 -20.657 42.994 41.247 1.00197.80 C \ ANISOU 8268 CB THR H 34 39888 15021 20247 3451 2046 2293 C \ ATOM 8269 OG1 THR H 34 -21.927 42.358 41.057 1.00193.78 O \ ANISOU 8269 OG1 THR H 34 39287 14977 19365 3808 2120 2332 O \ ATOM 8270 CG2 THR H 34 -20.171 43.600 39.914 1.00198.42 C \ ANISOU 8270 CG2 THR H 34 39972 15092 20325 3144 2285 2535 C \ ATOM 8271 N ASP H 35 -19.571 42.357 44.164 1.00227.35 N \ ANISOU 8271 N ASP H 35 43576 18231 24577 3472 1488 1704 N \ ATOM 8272 CA ASP H 35 -19.663 42.109 45.615 1.00219.30 C \ ANISOU 8272 CA ASP H 35 42610 17063 23651 3691 1209 1481 C \ ATOM 8273 C ASP H 35 -19.116 40.731 45.985 1.00216.96 C \ ANISOU 8273 C ASP H 35 41817 17033 23585 3534 1210 1228 C \ ATOM 8274 O ASP H 35 -19.681 40.004 46.805 1.00217.33 O \ ANISOU 8274 O ASP H 35 41749 17264 23562 3811 1092 1088 O \ ATOM 8275 CB ASP H 35 -21.086 42.337 46.165 1.00213.43 C \ ANISOU 8275 CB ASP H 35 42154 16401 22538 4226 1093 1551 C \ ATOM 8276 CG ASP H 35 -22.139 41.395 45.587 1.00205.36 C \ ANISOU 8276 CG ASP H 35 40891 15936 21202 4458 1263 1604 C \ ATOM 8277 OD1 ASP H 35 -21.975 40.160 45.624 1.00198.79 O \ ANISOU 8277 OD1 ASP H 35 39624 15437 20468 4377 1327 1435 O \ ATOM 8278 OD2 ASP H 35 -23.160 41.909 45.085 1.00207.28 O1- \ ANISOU 8278 OD2 ASP H 35 41378 16284 21094 4729 1340 1821 O1- \ ATOM 8279 N ALA H 36 -17.966 40.398 45.407 1.00220.21 N \ ANISOU 8279 N ALA H 36 41934 17442 24294 3080 1341 1172 N \ ATOM 8280 CA ALA H 36 -17.333 39.109 45.650 1.00203.62 C \ ANISOU 8280 CA ALA H 36 39339 15578 22450 2883 1371 947 C \ ATOM 8281 C ALA H 36 -16.800 39.028 47.076 1.00191.80 C \ ANISOU 8281 C ALA H 36 37859 13812 21205 2916 1089 727 C \ ATOM 8282 O ALA H 36 -16.027 39.886 47.509 1.00189.54 O \ ANISOU 8282 O ALA H 36 37804 13094 21121 2749 944 701 O \ ATOM 8283 CB ALA H 36 -16.205 38.878 44.648 1.00199.82 C \ ANISOU 8283 CB ALA H 36 38566 15131 22226 2378 1583 955 C \ ATOM 8284 N VAL H 37 -17.197 37.984 47.800 1.00193.65 N \ ANISOU 8284 N VAL H 37 37833 14311 21433 3126 1018 569 N \ ATOM 8285 CA VAL H 37 -16.673 37.723 49.136 1.00190.11 C \ ANISOU 8285 CA VAL H 37 37321 13687 21227 3152 768 357 C \ ATOM 8286 C VAL H 37 -15.508 36.750 49.021 1.00196.73 C \ ANISOU 8286 C VAL H 37 37669 14636 22445 2754 860 199 C \ ATOM 8287 O VAL H 37 -15.529 35.825 48.199 1.00196.12 O \ ANISOU 8287 O VAL H 37 37217 14918 22381 2623 1098 202 O \ ATOM 8288 CB VAL H 37 -17.780 37.188 50.068 1.00179.48 C \ ANISOU 8288 CB VAL H 37 35984 12550 19662 3631 626 289 C \ ATOM 8289 CG1 VAL H 37 -17.405 35.833 50.662 1.00170.59 C \ ANISOU 8289 CG1 VAL H 37 34370 11678 18767 3585 612 88 C \ ATOM 8290 CG2 VAL H 37 -18.063 38.187 51.179 1.00182.66 C \ ANISOU 8290 CG2 VAL H 37 36834 12586 19981 3898 332 270 C \ ATOM 8291 N PHE H 38 -14.471 36.976 49.825 1.00195.74 N \ ANISOU 8291 N PHE H 38 37541 14200 22631 2549 679 58 N \ ATOM 8292 CA PHE H 38 -13.245 36.191 49.771 1.00192.56 C \ ANISOU 8292 CA PHE H 38 36707 13842 22616 2147 747 -84 C \ ATOM 8293 C PHE H 38 -13.136 35.289 50.994 1.00189.64 C \ ANISOU 8293 C PHE H 38 36070 13582 22401 2289 577 -280 C \ ATOM 8294 O PHE H 38 -13.440 35.705 52.117 1.00187.69 O \ ANISOU 8294 O PHE H 38 36064 13162 22087 2559 319 -342 O \ ATOM 8295 CB PHE H 38 -11.999 37.086 49.688 1.00193.44 C \ ANISOU 8295 CB PHE H 38 36969 13528 23002 1751 689 -95 C \ ATOM 8296 CG PHE H 38 -11.965 37.994 48.484 1.00188.58 C \ ANISOU 8296 CG PHE H 38 36595 12778 22279 1574 862 107 C \ ATOM 8297 CD1 PHE H 38 -12.728 37.720 47.361 1.00186.72 C \ ANISOU 8297 CD1 PHE H 38 36290 12870 21787 1647 1110 266 C \ ATOM 8298 CD2 PHE H 38 -11.151 39.117 48.474 1.00187.71 C \ ANISOU 8298 CD2 PHE H 38 36767 12222 22331 1328 783 140 C \ ATOM 8299 CE1 PHE H 38 -12.689 38.552 46.257 1.00189.64 C \ ANISOU 8299 CE1 PHE H 38 36867 13135 22053 1489 1271 468 C \ ATOM 8300 CE2 PHE H 38 -11.106 39.952 47.371 1.00189.22 C \ ANISOU 8300 CE2 PHE H 38 37171 12288 22437 1168 949 343 C \ ATOM 8301 CZ PHE H 38 -11.877 39.668 46.262 1.00189.91 C \ ANISOU 8301 CZ PHE H 38 37183 12715 22257 1253 1193 515 C \ ATOM 8302 N GLN H 39 -12.704 34.053 50.760 1.00184.07 N \ ANISOU 8302 N GLN H 39 34859 13172 21908 2108 730 -373 N \ ATOM 8303 CA GLN H 39 -12.504 33.055 51.809 1.00179.81 C \ ANISOU 8303 CA GLN H 39 33986 12775 21560 2203 613 -543 C \ ATOM 8304 C GLN H 39 -11.522 33.513 52.887 1.00183.00 C \ ANISOU 8304 C GLN H 39 34473 12835 22223 2068 353 -670 C \ ATOM 8305 O GLN H 39 -10.888 34.563 52.768 1.00186.51 O \ ANISOU 8305 O GLN H 39 35206 12921 22740 1853 279 -644 O \ ATOM 8306 CB GLN H 39 -12.028 31.741 51.183 1.00177.04 C \ ANISOU 8306 CB GLN H 39 33068 12754 21445 1947 865 -607 C \ ATOM 8307 CG GLN H 39 -11.916 30.575 52.150 1.00178.12 C \ ANISOU 8307 CG GLN H 39 32808 13090 21781 2063 793 -756 C \ ATOM 8308 CD GLN H 39 -11.885 29.236 51.437 1.00183.19 C \ ANISOU 8308 CD GLN H 39 32919 14121 22565 1929 1080 -795 C \ ATOM 8309 OE1 GLN H 39 -11.764 29.174 50.215 1.00189.27 O \ ANISOU 8309 OE1 GLN H 39 33591 15000 23321 1689 1328 -733 O \ ATOM 8310 NE2 GLN H 39 -11.986 28.156 52.201 1.00181.07 N \ ANISOU 8310 NE2 GLN H 39 32294 14065 22440 2083 1052 -899 N \ ATOM 8311 N GLY H 42 -13.152 38.524 52.470 1.00189.27 N \ ANISOU 8311 N GLY H 42 37227 12496 22193 2535 31 -227 N \ ATOM 8312 CA GLY H 42 -12.937 39.833 51.883 1.00194.45 C \ ANISOU 8312 CA GLY H 42 38275 12788 22818 2388 59 -91 C \ ATOM 8313 C GLY H 42 -13.939 40.169 50.798 1.00196.81 C \ ANISOU 8313 C GLY H 42 38763 13233 22783 2555 259 147 C \ ATOM 8314 O GLY H 42 -14.243 39.331 49.958 1.00197.57 O \ ANISOU 8314 O GLY H 42 38565 13707 22795 2523 483 212 O \ ATOM 8315 N VAL H 43 -14.416 41.409 50.774 1.00195.85 N \ ANISOU 8315 N VAL H 43 39120 12812 22483 2715 191 279 N \ ATOM 8316 CA VAL H 43 -15.381 41.835 49.771 1.00198.10 C \ ANISOU 8316 CA VAL H 43 39612 13218 22440 2888 372 527 C \ ATOM 8317 C VAL H 43 -14.670 42.731 48.772 1.00201.30 C \ ANISOU 8317 C VAL H 43 40165 13356 22964 2536 523 683 C \ ATOM 8318 O VAL H 43 -13.667 43.385 49.083 1.00204.76 O \ ANISOU 8318 O VAL H 43 40713 13403 23684 2266 423 608 O \ ATOM 8319 CB VAL H 43 -16.597 42.560 50.393 1.00199.47 C \ ANISOU 8319 CB VAL H 43 40052 13448 22290 3330 212 591 C \ ATOM 8320 CG1 VAL H 43 -17.305 41.665 51.403 1.00194.11 C \ ANISOU 8320 CG1 VAL H 43 39138 13123 21491 3657 62 439 C \ ATOM 8321 CG2 VAL H 43 -16.187 43.890 51.009 1.00203.25 C \ ANISOU 8321 CG2 VAL H 43 40728 13612 22885 3245 23 558 C \ ATOM 8322 N SER H 44 -15.201 42.759 47.551 1.00209.87 N \ ANISOU 8322 N SER H 44 41245 14666 23831 2542 769 905 N \ ATOM 8323 CA SER H 44 -14.631 43.526 46.476 1.00208.62 C \ ANISOU 8323 CA SER H 44 41193 14323 23749 2230 946 1087 C \ ATOM 8324 C SER H 44 -15.773 43.925 45.552 1.00209.00 C \ ANISOU 8324 C SER H 44 41441 14563 23407 2482 1118 1365 C \ ATOM 8325 O SER H 44 -16.600 43.066 45.208 1.00203.43 O \ ANISOU 8325 O SER H 44 40523 14312 22457 2682 1231 1391 O \ ATOM 8326 CB SER H 44 -13.578 42.727 45.708 1.00204.20 C \ ANISOU 8326 CB SER H 44 40186 13949 23452 1775 1135 1029 C \ ATOM 8327 OG SER H 44 -12.925 43.529 44.742 1.00208.09 O \ ANISOU 8327 OG SER H 44 40791 14225 24048 1454 1288 1199 O \ ATOM 8328 N PRO H 45 -15.852 45.194 45.143 1.00213.32 N \ ANISOU 8328 N PRO H 45 42378 14783 23891 2483 1148 1574 N \ ATOM 8329 CA PRO H 45 -16.981 45.611 44.297 1.00209.44 C \ ANISOU 8329 CA PRO H 45 42085 14479 23014 2748 1307 1858 C \ ATOM 8330 C PRO H 45 -16.945 45.010 42.903 1.00204.63 C \ ANISOU 8330 C PRO H 45 41155 14290 22307 2542 1611 2001 C \ ATOM 8331 O PRO H 45 -18.009 44.758 42.324 1.00195.33 O \ ANISOU 8331 O PRO H 45 39962 13479 20774 2802 1742 2151 O \ ATOM 8332 CB PRO H 45 -16.840 47.140 44.252 1.00213.89 C \ ANISOU 8332 CB PRO H 45 43118 14530 23622 2736 1264 2035 C \ ATOM 8333 CG PRO H 45 -16.001 47.483 45.447 1.00217.05 C \ ANISOU 8333 CG PRO H 45 43544 14570 24355 2607 1005 1778 C \ ATOM 8334 CD PRO H 45 -15.045 46.340 45.588 1.00217.89 C \ ANISOU 8334 CD PRO H 45 43263 14793 24730 2305 1012 1555 C \ ATOM 8335 N VAL H 46 -15.758 44.779 42.344 1.00214.13 N \ ANISOU 8335 N VAL H 46 31374 12261 37723 4124 6279 -2241 N \ ATOM 8336 CA VAL H 46 -15.600 44.156 41.033 1.00212.06 C \ ANISOU 8336 CA VAL H 46 30267 12395 37909 3666 6398 -1973 C \ ATOM 8337 C VAL H 46 -14.468 43.142 41.123 1.00211.02 C \ ANISOU 8337 C VAL H 46 30017 12878 37283 3670 6726 -2198 C \ ATOM 8338 O VAL H 46 -13.396 43.446 41.656 1.00214.91 O \ ANISOU 8338 O VAL H 46 31155 13168 37332 3628 6585 -2484 O \ ATOM 8339 CB VAL H 46 -15.313 45.191 39.926 1.00212.69 C \ ANISOU 8339 CB VAL H 46 30272 11855 38687 2935 5769 -1694 C \ ATOM 8340 CG1 VAL H 46 -15.035 44.492 38.602 1.00204.38 C \ ANISOU 8340 CG1 VAL H 46 28220 11276 38160 2429 5841 -1445 C \ ATOM 8341 CG2 VAL H 46 -16.477 46.160 39.780 1.00218.42 C \ ANISOU 8341 CG2 VAL H 46 31093 12048 39849 2939 5440 -1463 C \ ATOM 8342 N PHE H 47 -14.706 41.940 40.603 1.00212.73 N \ ANISOU 8342 N PHE H 47 29436 13854 37537 3703 7141 -2083 N \ ATOM 8343 CA PHE H 47 -13.747 40.846 40.662 1.00201.81 C \ ANISOU 8343 CA PHE H 47 27870 13172 35636 3756 7455 -2295 C \ ATOM 8344 C PHE H 47 -13.648 40.211 39.284 1.00187.44 C \ ANISOU 8344 C PHE H 47 25066 11749 34405 3335 7522 -2078 C \ ATOM 8345 O PHE H 47 -14.665 39.811 38.709 1.00187.17 O \ ANISOU 8345 O PHE H 47 24364 11955 34797 3310 7640 -1779 O \ ATOM 8346 CB PHE H 47 -14.169 39.811 41.712 1.00205.70 C \ ANISOU 8346 CB PHE H 47 28427 14324 35404 4300 7822 -2405 C \ ATOM 8347 CG PHE H 47 -13.253 38.627 41.804 1.00205.47 C \ ANISOU 8347 CG PHE H 47 28213 15099 34758 4362 8048 -2594 C \ ATOM 8348 CD1 PHE H 47 -12.021 38.736 42.428 1.00206.76 C \ ANISOU 8348 CD1 PHE H 47 28962 15314 34283 4437 8019 -2966 C \ ATOM 8349 CD2 PHE H 47 -13.626 37.404 41.274 1.00202.52 C \ ANISOU 8349 CD2 PHE H 47 27114 15447 34387 4326 8232 -2410 C \ ATOM 8350 CE1 PHE H 47 -11.177 37.647 42.520 1.00203.42 C \ ANISOU 8350 CE1 PHE H 47 28363 15712 33216 4506 8179 -3161 C \ ATOM 8351 CE2 PHE H 47 -12.786 36.311 41.361 1.00197.42 C \ ANISOU 8351 CE2 PHE H 47 26318 15574 33120 4386 8316 -2587 C \ ATOM 8352 CZ PHE H 47 -11.560 36.432 41.984 1.00198.44 C \ ANISOU 8352 CZ PHE H 47 26989 15812 32598 4492 8291 -2967 C \ ATOM 8353 N LYS H 48 -12.431 40.127 38.752 1.00194.14 N \ ANISOU 8353 N LYS H 48 25803 12659 35301 2969 7423 -2256 N \ ATOM 8354 CA LYS H 48 -12.184 39.570 37.428 1.00189.92 C \ ANISOU 8354 CA LYS H 48 24246 12483 35430 2532 7398 -2116 C \ ATOM 8355 C LYS H 48 -11.453 38.243 37.560 1.00191.89 C \ ANISOU 8355 C LYS H 48 24215 13700 34993 2793 7792 -2430 C \ ATOM 8356 O LYS H 48 -10.415 38.167 38.227 1.00184.47 O \ ANISOU 8356 O LYS H 48 23876 12912 33302 2918 7876 -2850 O \ ATOM 8357 CB LYS H 48 -11.344 40.522 36.573 1.00175.40 C \ ANISOU 8357 CB LYS H 48 22353 9971 34321 1674 6762 -2060 C \ ATOM 8358 CG LYS H 48 -11.992 41.849 36.229 1.00182.11 C \ ANISOU 8358 CG LYS H 48 23363 10018 35814 1200 6116 -1629 C \ ATOM 8359 CD LYS H 48 -11.257 42.490 35.061 1.00181.17 C \ ANISOU 8359 CD LYS H 48 22700 10232 35904 -65 5023 -1250 C \ ATOM 8360 CE LYS H 48 -11.773 43.885 34.759 1.00187.04 C \ ANISOU 8360 CE LYS H 48 23715 9907 37446 -605 4355 -838 C \ ATOM 8361 NZ LYS H 48 -10.987 44.522 33.666 1.00187.68 N1+ \ ANISOU 8361 NZ LYS H 48 23211 11015 37082 -1949 3017 -366 N1+ \ ATOM 8362 N ILE H 49 -11.993 37.200 36.929 1.00188.95 N \ ANISOU 8362 N ILE H 49 22974 14039 34777 2836 7966 -2226 N \ ATOM 8363 CA ILE H 49 -11.396 35.872 36.999 1.00188.24 C \ ANISOU 8363 CA ILE H 49 22598 14998 33927 3031 8153 -2447 C \ ATOM 8364 C ILE H 49 -11.498 35.225 35.624 1.00189.47 C \ ANISOU 8364 C ILE H 49 21564 15698 34727 2696 8049 -2275 C \ ATOM 8365 O ILE H 49 -12.424 35.497 34.855 1.00191.89 O \ ANISOU 8365 O ILE H 49 21332 15662 35916 2442 7941 -1880 O \ ATOM 8366 CB ILE H 49 -12.061 34.997 38.090 1.00186.68 C \ ANISOU 8366 CB ILE H 49 22864 15229 32836 3495 8273 -2356 C \ ATOM 8367 CG1 ILE H 49 -11.342 33.653 38.233 1.00179.10 C \ ANISOU 8367 CG1 ILE H 49 21750 15310 30990 3646 8221 -2556 C \ ATOM 8368 CG2 ILE H 49 -13.528 34.778 37.789 1.00185.33 C \ ANISOU 8368 CG2 ILE H 49 22345 14933 33139 3450 8287 -1924 C \ ATOM 8369 CD1 ILE H 49 -9.920 33.772 38.729 1.00177.36 C \ ANISOU 8369 CD1 ILE H 49 21952 15393 30045 3739 8243 -3039 C \ ATOM 8370 N LYS H 50 -10.524 34.379 35.308 1.00189.74 N \ ANISOU 8370 N LYS H 50 21145 16722 34225 2679 8019 -2585 N \ ATOM 8371 CA LYS H 50 -10.471 33.663 34.044 1.00183.95 C \ ANISOU 8371 CA LYS H 50 19228 16855 33808 2362 7768 -2466 C \ ATOM 8372 C LYS H 50 -10.813 32.196 34.266 1.00178.86 C \ ANISOU 8372 C LYS H 50 18773 17014 32173 2592 7616 -2337 C \ ATOM 8373 O LYS H 50 -10.547 31.635 35.332 1.00179.69 O \ ANISOU 8373 O LYS H 50 19612 17378 31283 2980 7678 -2505 O \ ATOM 8374 CB LYS H 50 -9.092 33.790 33.390 1.00179.53 C \ ANISOU 8374 CB LYS H 50 17953 17512 32749 1790 7275 -2726 C \ ATOM 8375 CG LYS H 50 -8.400 35.118 33.656 1.00183.58 C \ ANISOU 8375 CG LYS H 50 19220 17888 32646 1049 6489 -2599 C \ ATOM 8376 CD LYS H 50 -7.002 35.145 33.060 1.00180.68 C \ ANISOU 8376 CD LYS H 50 18448 19241 30962 98 5456 -2584 C \ ATOM 8377 CE LYS H 50 -7.058 35.276 31.546 1.00177.89 C \ ANISOU 8377 CE LYS H 50 16885 19760 30945 -797 4612 -2094 C \ ATOM 8378 NZ LYS H 50 -7.858 36.458 31.120 1.00182.64 N1+ \ ANISOU 8378 NZ LYS H 50 17538 19277 32581 -1252 4245 -1585 N1+ \ ATOM 8379 N ALA H 51 -11.428 31.581 33.252 1.00182.75 N \ ANISOU 8379 N ALA H 51 18634 17838 32966 2348 7312 -2034 N \ ATOM 8380 CA ALA H 51 -11.790 30.171 33.347 1.00167.99 C \ ANISOU 8380 CA ALA H 51 16977 16608 30243 2554 7059 -1943 C \ ATOM 8381 C ALA H 51 -10.582 29.277 33.597 1.00164.31 C \ ANISOU 8381 C ALA H 51 16545 17295 28590 2758 6798 -2297 C \ ATOM 8382 O ALA H 51 -10.754 28.118 33.989 1.00162.87 O \ ANISOU 8382 O ALA H 51 16684 17576 27623 3047 6578 -2278 O \ ATOM 8383 CB ALA H 51 -12.513 29.726 32.075 1.00160.52 C \ ANISOU 8383 CB ALA H 51 15435 15823 29731 2232 6704 -1633 C \ ATOM 8384 N ASP H 52 -9.367 29.785 33.366 1.00166.17 N \ ANISOU 8384 N ASP H 52 16376 18089 28673 2567 6785 -2622 N \ ATOM 8385 CA ASP H 52 -8.163 28.998 33.615 1.00175.94 C \ ANISOU 8385 CA ASP H 52 17625 20539 28686 2706 6545 -2940 C \ ATOM 8386 C ASP H 52 -7.982 28.708 35.101 1.00185.33 C \ ANISOU 8386 C ASP H 52 19817 21469 29131 3236 6761 -3120 C \ ATOM 8387 O ASP H 52 -7.521 27.623 35.475 1.00186.72 O \ ANISOU 8387 O ASP H 52 20182 22451 28311 3534 6449 -3191 O \ ATOM 8388 CB ASP H 52 -6.938 29.724 33.059 1.00177.60 C \ ANISOU 8388 CB ASP H 52 17063 21568 28848 2175 6478 -3268 C \ ATOM 8389 CG ASP H 52 -7.131 30.183 31.628 1.00178.07 C \ ANISOU 8389 CG ASP H 52 15983 22039 29638 1469 6018 -2976 C \ ATOM 8390 OD1 ASP H 52 -8.250 30.026 31.095 1.00182.39 O \ ANISOU 8390 OD1 ASP H 52 16524 21963 30813 1529 5906 -2574 O \ ATOM 8391 OD2 ASP H 52 -6.160 30.700 31.036 1.00174.26 O1- \ ANISOU 8391 OD2 ASP H 52 14640 22640 28932 705 5596 -3101 O1- \ ATOM 8392 N LYS H 53 -8.335 29.663 35.961 1.00179.81 N \ ANISOU 8392 N LYS H 53 19755 19701 28864 3362 7192 -3156 N \ ATOM 8393 CA LYS H 53 -8.117 29.544 37.396 1.00176.21 C \ ANISOU 8393 CA LYS H 53 20205 19071 27676 3792 7284 -3321 C \ ATOM 8394 C LYS H 53 -9.310 28.936 38.123 1.00172.63 C \ ANISOU 8394 C LYS H 53 20138 18222 27232 4074 7200 -3025 C \ ATOM 8395 O LYS H 53 -9.329 28.920 39.358 1.00184.12 O \ ANISOU 8395 O LYS H 53 22208 19340 28407 4330 7410 -3104 O \ ATOM 8396 CB LYS H 53 -7.795 30.913 38.005 1.00182.37 C \ ANISOU 8396 CB LYS H 53 21557 19006 28729 3767 7696 -3542 C \ ATOM 8397 CG LYS H 53 -6.764 31.731 37.239 1.00181.22 C \ ANISOU 8397 CG LYS H 53 20959 19092 28803 3329 7867 -3936 C \ ATOM 8398 CD LYS H 53 -5.353 31.262 37.574 1.00175.21 C \ ANISOU 8398 CD LYS H 53 20315 19482 26775 3315 7750 -4407 C \ ATOM 8399 CE LYS H 53 -4.293 32.203 37.023 1.00171.54 C \ ANISOU 8399 CE LYS H 53 19589 19572 26015 2520 7509 -4738 C \ ATOM 8400 NZ LYS H 53 -2.962 31.970 37.654 1.00167.27 N1+ \ ANISOU 8400 NZ LYS H 53 19552 20027 23977 2421 7282 -5146 N1+ \ ATOM 8401 N LEU H 54 -10.301 28.442 37.389 1.00176.19 N \ ANISOU 8401 N LEU H 54 31262 14446 21238 -1064 3387 4790 N \ ATOM 8402 CA LEU H 54 -11.504 27.868 37.975 1.00157.31 C \ ANISOU 8402 CA LEU H 54 28947 12305 18519 -749 3509 4638 C \ ATOM 8403 C LEU H 54 -11.426 26.353 37.862 1.00153.99 C \ ANISOU 8403 C LEU H 54 28268 11966 18274 -857 4066 4495 C \ ATOM 8404 O LEU H 54 -11.342 25.816 36.755 1.00142.01 O \ ANISOU 8404 O LEU H 54 26638 10518 16799 -1164 4465 4379 O \ ATOM 8405 CB LEU H 54 -12.757 28.385 37.269 1.00146.03 C \ ANISOU 8405 CB LEU H 54 27824 11086 16575 -711 3486 4514 C \ ATOM 8406 CG LEU H 54 -13.090 29.871 37.377 1.00136.23 C \ ANISOU 8406 CG LEU H 54 26958 9758 15045 -521 2905 4599 C \ ATOM 8407 CD1 LEU H 54 -14.553 30.075 37.036 1.00134.70 C \ ANISOU 8407 CD1 LEU H 54 27066 9792 14323 -330 2872 4423 C \ ATOM 8408 CD2 LEU H 54 -12.777 30.391 38.764 1.00136.48 C \ ANISOU 8408 CD2 LEU H 54 26986 9665 15204 -182 2472 4703 C \ ATOM 8409 N TYR H 55 -11.451 25.661 38.998 1.00154.05 N \ ANISOU 8409 N TYR H 55 28224 11945 18363 -604 4094 4492 N \ ATOM 8410 CA TYR H 55 -11.660 24.221 38.931 1.00155.03 C \ ANISOU 8410 CA TYR H 55 28224 12141 18540 -661 4632 4326 C \ ATOM 8411 C TYR H 55 -13.133 23.901 38.708 1.00153.09 C \ ANISOU 8411 C TYR H 55 28134 12186 17846 -607 4930 4110 C \ ATOM 8412 O TYR H 55 -13.473 23.096 37.833 1.00152.97 O \ ANISOU 8412 O TYR H 55 28018 12287 17816 -815 5404 3916 O \ ATOM 8413 CB TYR H 55 -11.153 23.540 40.201 1.00161.38 C \ ANISOU 8413 CB TYR H 55 29012 12752 19553 -435 4561 4413 C \ ATOM 8414 CG TYR H 55 -11.119 22.028 40.118 1.00170.04 C \ ANISOU 8414 CG TYR H 55 30024 13812 20772 -515 5081 4277 C \ ATOM 8415 CD1 TYR H 55 -12.296 21.275 40.025 1.00168.49 C \ ANISOU 8415 CD1 TYR H 55 29951 13826 20242 -519 5519 4065 C \ ATOM 8416 CD2 TYR H 55 -9.913 21.342 40.154 1.00175.96 C \ ANISOU 8416 CD2 TYR H 55 30592 14273 21994 -588 5120 4346 C \ ATOM 8417 CE1 TYR H 55 -12.252 19.898 39.975 1.00166.53 C \ ANISOU 8417 CE1 TYR H 55 29668 13493 20112 -600 5982 3940 C \ ATOM 8418 CE2 TYR H 55 -9.875 19.975 40.096 1.00174.76 C \ ANISOU 8418 CE2 TYR H 55 30411 14038 21951 -635 5552 4229 C \ ATOM 8419 CZ TYR H 55 -11.031 19.233 40.006 1.00168.97 C \ ANISOU 8419 CZ TYR H 55 29824 13508 20871 -646 5994 4032 C \ ATOM 8420 OH TYR H 55 -10.965 17.895 39.953 1.00171.15 O \ ANISOU 8420 OH TYR H 55 30108 13655 21266 -709 6406 3922 O \ ATOM 8421 N ASP H 56 -14.021 24.514 39.489 1.00158.87 N \ ANISOU 8421 N ASP H 56 29104 13029 18232 -333 4660 4116 N \ ATOM 8422 CA ASP H 56 -15.428 24.150 39.431 1.00154.34 C \ ANISOU 8422 CA ASP H 56 28672 12706 17265 -285 4952 3899 C \ ATOM 8423 C ASP H 56 -16.292 25.361 39.756 1.00146.49 C \ ANISOU 8423 C ASP H 56 27940 11835 15886 -35 4507 3921 C \ ATOM 8424 O ASP H 56 -15.839 26.334 40.365 1.00142.69 O \ ANISOU 8424 O ASP H 56 27552 11228 15436 166 3985 4090 O \ ATOM 8425 CB ASP H 56 -15.753 22.991 40.384 1.00158.11 C \ ANISOU 8425 CB ASP H 56 29189 13170 17714 -207 5303 3809 C \ ATOM 8426 CG ASP H 56 -17.163 22.448 40.185 1.00154.88 C \ ANISOU 8426 CG ASP H 56 28882 13000 16967 -277 5719 3547 C \ ATOM 8427 OD1 ASP H 56 -17.938 23.074 39.430 1.00162.64 O1- \ ANISOU 8427 OD1 ASP H 56 29906 14178 17711 -310 5654 3453 O1- \ ATOM 8428 OD2 ASP H 56 -17.494 21.397 40.775 1.00145.10 O \ ANISOU 8428 OD2 ASP H 56 27708 11730 15694 -319 6100 3439 O \ ATOM 8429 N LEU H 57 -17.555 25.274 39.335 1.00151.07 N \ ANISOU 8429 N LEU H 57 28636 12652 16112 -41 4712 3727 N \ ATOM 8430 CA LEU H 57 -18.560 26.319 39.471 1.00140.74 C \ ANISOU 8430 CA LEU H 57 27601 11491 14383 216 4325 3699 C \ ATOM 8431 C LEU H 57 -19.858 25.713 39.985 1.00136.95 C \ ANISOU 8431 C LEU H 57 27196 11266 13573 280 4662 3502 C \ ATOM 8432 O LEU H 57 -20.227 24.601 39.600 1.00138.95 O \ ANISOU 8432 O LEU H 57 27301 11622 13871 16 5242 3325 O \ ATOM 8433 CB LEU H 57 -18.810 27.027 38.123 1.00145.22 C \ ANISOU 8433 CB LEU H 57 28285 12099 14791 111 4164 3677 C \ ATOM 8434 CG LEU H 57 -19.998 27.983 37.953 1.00146.35 C \ ANISOU 8434 CG LEU H 57 28879 12349 14379 416 3830 3580 C \ ATOM 8435 CD1 LEU H 57 -19.627 29.105 36.996 1.00161.15 C \ ANISOU 8435 CD1 LEU H 57 30928 14089 16212 395 3322 3698 C \ ATOM 8436 CD2 LEU H 57 -21.232 27.248 37.431 1.00138.66 C \ ANISOU 8436 CD2 LEU H 57 28261 11485 12938 381 4480 3272 C \ ATOM 8437 N LYS H 58 -20.546 26.442 40.861 1.00146.90 N \ ANISOU 8437 N LYS H 58 28905 12514 14396 660 4417 3469 N \ ATOM 8438 CA LYS H 58 -21.872 26.044 41.308 1.00145.09 C \ ANISOU 8438 CA LYS H 58 29192 12359 13577 788 4935 3204 C \ ATOM 8439 C LYS H 58 -22.770 27.259 41.459 1.00160.27 C \ ANISOU 8439 C LYS H 58 31844 14260 14793 1311 4554 3097 C \ ATOM 8440 O LYS H 58 -22.312 28.356 41.788 1.00165.29 O \ ANISOU 8440 O LYS H 58 32571 14780 15453 1642 3813 3233 O \ ATOM 8441 CB LYS H 58 -21.848 25.320 42.661 1.00140.83 C \ ANISOU 8441 CB LYS H 58 28621 11810 13077 776 5169 3223 C \ ATOM 8442 CG LYS H 58 -23.092 24.488 42.898 1.00146.85 C \ ANISOU 8442 CG LYS H 58 29676 12722 13399 604 5919 2929 C \ ATOM 8443 CD LYS H 58 -23.503 24.536 44.357 1.00150.94 C \ ANISOU 8443 CD LYS H 58 30568 13244 13539 801 5953 2925 C \ ATOM 8444 CE LYS H 58 -24.912 23.994 44.542 1.00158.75 C \ ANISOU 8444 CE LYS H 58 31769 14596 13953 555 6644 2570 C \ ATOM 8445 NZ LYS H 58 -25.301 23.910 45.977 1.00166.65 N1+ \ ANISOU 8445 NZ LYS H 58 33061 15700 14558 614 6749 2541 N1+ \ ATOM 8446 N VAL H 59 -24.062 27.042 41.227 1.00155.33 N \ ANISOU 8446 N VAL H 59 31683 13818 13519 1388 5021 2809 N \ ATOM 8447 CA VAL H 59 -25.076 28.085 41.295 1.00164.94 C \ ANISOU 8447 CA VAL H 59 33643 15174 13851 2013 4614 2609 C \ ATOM 8448 C VAL H 59 -26.162 27.624 42.258 1.00162.21 C \ ANISOU 8448 C VAL H 59 33414 15343 12874 2073 5111 2285 C \ ATOM 8449 O VAL H 59 -26.589 26.465 42.209 1.00168.57 O \ ANISOU 8449 O VAL H 59 33752 16491 13805 1483 5934 2071 O \ ATOM 8450 CB VAL H 59 -25.666 28.412 39.907 1.00176.01 C \ ANISOU 8450 CB VAL H 59 35329 16712 14836 2092 4551 2415 C \ ATOM 8451 CG1 VAL H 59 -26.244 27.169 39.257 1.00177.45 C \ ANISOU 8451 CG1 VAL H 59 35052 17303 15067 1485 5507 2148 C \ ATOM 8452 CG2 VAL H 59 -26.736 29.484 40.026 1.00183.81 C \ ANISOU 8452 CG2 VAL H 59 36988 18080 14771 2933 3874 2021 C \ ATOM 8453 N LEU H 60 -26.574 28.511 43.164 1.00174.20 N \ ANISOU 8453 N LEU H 60 28400 23956 13833 7885 1377 5202 N \ ATOM 8454 CA LEU H 60 -27.613 28.189 44.138 1.00172.81 C \ ANISOU 8454 CA LEU H 60 28344 23717 13598 7825 1401 5125 C \ ATOM 8455 C LEU H 60 -28.855 29.054 43.962 1.00186.69 C \ ANISOU 8455 C LEU H 60 30022 25637 15274 7921 1426 5103 C \ ATOM 8456 O LEU H 60 -29.959 28.518 43.822 1.00185.30 O \ ANISOU 8456 O LEU H 60 29817 25600 14988 7906 1472 5043 O \ ATOM 8457 CB LEU H 60 -27.055 28.301 45.566 1.00160.62 C \ ANISOU 8457 CB LEU H 60 26984 21905 12139 7750 1362 5136 C \ ATOM 8458 CG LEU H 60 -26.523 29.641 46.076 1.00155.41 C \ ANISOU 8458 CG LEU H 60 26362 21119 11568 7816 1291 5189 C \ ATOM 8459 CD1 LEU H 60 -27.397 30.148 47.213 1.00162.18 C \ ANISOU 8459 CD1 LEU H 60 27325 21932 12364 7861 1282 5134 C \ ATOM 8460 CD2 LEU H 60 -25.077 29.514 46.518 1.00152.95 C \ ANISOU 8460 CD2 LEU H 60 26140 20588 11387 7745 1231 5243 C \ ATOM 8461 N LYS H 61 -28.705 30.376 43.953 1.00189.54 N \ ANISOU 8461 N LYS H 61 30346 25985 15685 8010 1379 5162 N \ ATOM 8462 CA LYS H 61 -29.810 31.315 44.055 1.00190.45 C \ ANISOU 8462 CA LYS H 61 30426 26204 15733 8108 1375 5137 C \ ATOM 8463 C LYS H 61 -29.938 32.133 42.774 1.00186.83 C \ ANISOU 8463 C LYS H 61 29774 25947 15268 8205 1362 5211 C \ ATOM 8464 O LYS H 61 -28.954 32.372 42.068 1.00185.97 O \ ANISOU 8464 O LYS H 61 29571 25855 15235 8204 1327 5325 O \ ATOM 8465 CB LYS H 61 -29.608 32.241 45.264 1.00196.49 C \ ANISOU 8465 CB LYS H 61 31335 26771 16551 8142 1289 5142 C \ ATOM 8466 CG LYS H 61 -30.470 33.492 45.294 1.00200.28 C \ ANISOU 8466 CG LYS H 61 31781 27335 16982 8276 1234 5132 C \ ATOM 8467 CD LYS H 61 -29.607 34.736 45.408 1.00203.67 C \ ANISOU 8467 CD LYS H 61 32237 27612 17536 8311 1076 5239 C \ ATOM 8468 CE LYS H 61 -30.413 35.999 45.166 1.00206.90 C \ ANISOU 8468 CE LYS H 61 32588 28116 17909 8438 986 5256 C \ ATOM 8469 NZ LYS H 61 -29.550 37.211 45.210 1.00209.50 N1+ \ ANISOU 8469 NZ LYS H 61 32934 28281 18385 8438 778 5403 N1+ \ ATOM 8470 N LEU H 62 -31.166 32.553 42.482 1.00189.66 N \ ANISOU 8470 N LEU H 62 30057 26478 15527 8288 1391 5163 N \ ATOM 8471 CA LEU H 62 -31.511 33.338 41.309 1.00181.94 C \ ANISOU 8471 CA LEU H 62 28887 25718 14522 8386 1383 5231 C \ ATOM 8472 C LEU H 62 -32.036 34.717 41.707 1.00185.45 C \ ANISOU 8472 C LEU H 62 29354 26129 14978 8469 1292 5262 C \ ATOM 8473 O LEU H 62 -32.553 34.898 42.814 1.00177.37 O \ ANISOU 8473 O LEU H 62 28477 24993 13923 8492 1269 5172 O \ ATOM 8474 CB LEU H 62 -32.566 32.584 40.478 1.00174.07 C \ ANISOU 8474 CB LEU H 62 27771 24980 13389 8422 1482 5137 C \ ATOM 8475 CG LEU H 62 -33.884 32.053 41.076 1.00167.14 C \ ANISOU 8475 CG LEU H 62 26960 24148 12397 8402 1536 5007 C \ ATOM 8476 CD1 LEU H 62 -34.819 31.611 39.959 1.00165.11 C \ ANISOU 8476 CD1 LEU H 62 26541 24173 12021 8450 1598 4950 C \ ATOM 8477 CD2 LEU H 62 -33.696 30.897 42.057 1.00167.93 C \ ANISOU 8477 CD2 LEU H 62 27221 24086 12498 8263 1556 4957 C \ ATOM 8478 N PRO H 63 -31.929 35.712 40.826 1.00184.60 N \ ANISOU 8478 N PRO H 63 29098 26135 14907 8524 1225 5398 N \ ATOM 8479 CA PRO H 63 -32.458 37.050 41.136 1.00190.38 C \ ANISOU 8479 CA PRO H 63 29853 26829 15653 8602 1099 5436 C \ ATOM 8480 C PRO H 63 -33.974 37.144 41.034 1.00191.22 C \ ANISOU 8480 C PRO H 63 29921 27122 15614 8708 1165 5303 C \ ATOM 8481 O PRO H 63 -34.545 38.150 41.485 1.00193.67 O \ ANISOU 8481 O PRO H 63 30283 27393 15909 8796 1060 5287 O \ ATOM 8482 CB PRO H 63 -31.768 37.953 40.100 1.00186.31 C \ ANISOU 8482 CB PRO H 63 29162 26387 15238 8585 993 5678 C \ ATOM 8483 CG PRO H 63 -31.391 37.040 38.993 1.00178.93 C \ ANISOU 8483 CG PRO H 63 28055 25668 14261 8568 1128 5713 C \ ATOM 8484 CD PRO H 63 -31.009 35.766 39.679 1.00178.28 C \ ANISOU 8484 CD PRO H 63 28118 25455 14165 8502 1218 5568 C \ ATOM 8485 N PRO H 64 -34.677 36.162 40.418 1.00181.53 N \ ANISOU 8485 N PRO H 64 28595 26102 14275 8710 1314 5208 N \ ATOM 8486 CA PRO H 64 -36.123 36.279 40.653 1.00170.46 C \ ANISOU 8486 CA PRO H 64 27193 24832 12743 8794 1356 5078 C \ ATOM 8487 C PRO H 64 -36.520 36.270 42.128 1.00162.61 C \ ANISOU 8487 C PRO H 64 26389 23688 11707 8811 1335 4970 C \ ATOM 8488 O PRO H 64 -36.930 37.323 42.619 1.00156.60 O \ ANISOU 8488 O PRO H 64 25679 22894 10926 8924 1235 4951 O \ ATOM 8489 CB PRO H 64 -36.682 35.049 39.941 1.00162.89 C \ ANISOU 8489 CB PRO H 64 26131 24073 11688 8754 1491 4999 C \ ATOM 8490 CG PRO H 64 -35.785 34.886 38.783 1.00160.18 C \ ANISOU 8490 CG PRO H 64 25643 23820 11397 8744 1498 5107 C \ ATOM 8491 CD PRO H 64 -34.409 35.294 39.252 1.00164.13 C \ ANISOU 8491 CD PRO H 64 26233 24087 12043 8684 1409 5231 C \ TER 8492 PRO H 64 \ CONECT 1195 8493 \ CONECT 8493 1195 \ CONECT 8494 8506 8507 8508 8509 \ CONECT 8495 8509 8510 8511 8512 \ CONECT 8496 8512 8513 8514 8515 \ CONECT 8497 8515 8516 8517 8518 \ CONECT 8498 8499 \ CONECT 8499 8498 8500 8550 \ CONECT 8500 8499 8501 \ CONECT 8501 8500 8502 8543 \ CONECT 8502 8501 8503 8541 \ CONECT 8503 8502 8504 \ CONECT 8504 8503 8505 8539 \ CONECT 8505 8504 8506 \ CONECT 8506 8494 8505 \ CONECT 8507 8494 \ CONECT 8508 8494 \ CONECT 8509 8494 8495 \ CONECT 8510 8495 \ CONECT 8511 8495 \ CONECT 8512 8495 8496 \ CONECT 8513 8496 \ CONECT 8514 8496 \ CONECT 8515 8496 8497 \ CONECT 8516 8497 \ CONECT 8517 8497 \ CONECT 8518 8497 8519 \ CONECT 8519 8518 8520 \ CONECT 8520 8519 8521 8537 \ CONECT 8521 8520 8522 \ CONECT 8522 8521 8523 8535 \ CONECT 8523 8522 8524 8534 \ CONECT 8524 8523 8525 \ CONECT 8525 8524 8526 8527 \ CONECT 8526 8525 \ CONECT 8527 8525 8528 8534 \ CONECT 8528 8527 8529 8530 \ CONECT 8529 8528 \ CONECT 8530 8528 8531 \ CONECT 8531 8530 8532 8533 \ CONECT 8532 8531 \ CONECT 8533 8531 8534 \ CONECT 8534 8523 8527 8533 \ CONECT 8535 8522 8536 8537 \ CONECT 8536 8535 \ CONECT 8537 8520 8535 8538 \ CONECT 8538 8537 \ CONECT 8539 8504 8540 8541 \ CONECT 8540 8539 \ CONECT 8541 8502 8539 8542 \ CONECT 8542 8541 \ CONECT 8543 8501 8544 8550 \ CONECT 8544 8543 8545 \ CONECT 8545 8544 8546 8547 \ CONECT 8546 8545 \ CONECT 8547 8545 8548 \ CONECT 8548 8547 8549 8550 \ CONECT 8549 8548 \ CONECT 8550 8499 8543 8548 \ CONECT 8551 8563 8564 8565 8566 \ CONECT 8552 8566 8567 8568 8569 \ CONECT 8553 8569 8570 8571 8572 \ CONECT 8554 8572 8573 8574 8575 \ CONECT 8555 8556 \ CONECT 8556 8555 8557 8607 \ CONECT 8557 8556 8558 \ CONECT 8558 8557 8559 8600 \ CONECT 8559 8558 8560 8598 \ CONECT 8560 8559 8561 \ CONECT 8561 8560 8562 8596 \ CONECT 8562 8561 8563 \ CONECT 8563 8551 8562 \ CONECT 8564 8551 \ CONECT 8565 8551 \ CONECT 8566 8551 8552 \ CONECT 8567 8552 \ CONECT 8568 8552 \ CONECT 8569 8552 8553 \ CONECT 8570 8553 \ CONECT 8571 8553 \ CONECT 8572 8553 8554 \ CONECT 8573 8554 \ CONECT 8574 8554 \ CONECT 8575 8554 8576 \ CONECT 8576 8575 8577 \ CONECT 8577 8576 8578 8594 \ CONECT 8578 8577 8579 \ CONECT 8579 8578 8580 8592 \ CONECT 8580 8579 8581 8591 \ CONECT 8581 8580 8582 \ CONECT 8582 8581 8583 8584 \ CONECT 8583 8582 \ CONECT 8584 8582 8585 8591 \ CONECT 8585 8584 8586 8587 \ CONECT 8586 8585 \ CONECT 8587 8585 8588 \ CONECT 8588 8587 8589 8590 \ CONECT 8589 8588 \ CONECT 8590 8588 8591 \ CONECT 8591 8580 8584 8590 \ CONECT 8592 8579 8593 8594 \ CONECT 8593 8592 \ CONECT 8594 8577 8592 8595 \ CONECT 8595 8594 \ CONECT 8596 8561 8597 8598 \ CONECT 8597 8596 \ CONECT 8598 8559 8596 8599 \ CONECT 8599 8598 \ CONECT 8600 8558 8601 8607 \ CONECT 8601 8600 8602 \ CONECT 8602 8601 8603 8604 \ CONECT 8603 8602 \ CONECT 8604 8602 8605 \ CONECT 8605 8604 8606 8607 \ CONECT 8606 8605 \ CONECT 8607 8556 8600 8605 \ MASTER 485 0 3 32 40 0 7 6 8599 8 116 90 \ END \ """, "6am0chainH") cmd.hide("all") cmd.color('grey70', "6am0chainH") cmd.show('cartoon', "6am0chainH") cmd.center("6am0chainH", state=0, origin=1) cmd.zoom("6am0chainH", animate=-1) cmd.select("e6am0H1", "c. H & i. 2-64") cmd.color("red", "e6am0H1") cmd.disable("e6am0H1")