cmd.read_pdbstr("""\ HEADER ANTIMICROBIAL PROTEIN 18-AUG-08 3E7R \ TITLE X-RAY CRYSTAL STRUCTURE OF RACEMIC PLECTASIN \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: PLECTASIN; \ COMPND 3 CHAIN: L; \ COMPND 4 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 SYNTHETIC: YES; \ SOURCE 3 OTHER_DETAILS: THE PEPTIDE IS NATURALLY FOUND IN PSEUDOPLECTANIA \ SOURCE 4 NIGRELLA (EBONY CUP). \ KEYWDS PLECTASIN, RACEMIC PROTEIN CRYSTALLOGRAPHY, ANTIBIOTIC, \ KEYWDS 2 ANTIMICROBIAL, CLEAVAGE ON PAIR OF BASIC RESIDUES, DEFENSIN, \ KEYWDS 3 SECRETED, ANTIMICROBIAL PROTEIN \ EXPDTA X-RAY DIFFRACTION \ AUTHOR K.MANDAL,B.L.PENTELUTE,V.TERESHKO,A.A.KOSSIAKOFF,S.B.H.KENT \ REVDAT 3 16-OCT-24 3E7R 1 REMARK \ REVDAT 2 28-MAR-12 3E7R 1 CRYST1 VERSN \ REVDAT 1 09-JUN-09 3E7R 0 \ JRNL AUTH K.MANDAL,B.L.PENTELUTE,V.TERESHKO,V.THAMMAVONGSA, \ JRNL AUTH 2 O.SCHNEEWIND,A.A.KOSSIAKOFF,S.B.KENT \ JRNL TITL RACEMIC CRYSTALLOGRAPHY OF SYNTHETIC PROTEIN ENANTIOMERS \ JRNL TITL 2 USED TO DETERMINE THE X-RAY STRUCTURE OF PLECTASIN BY DIRECT \ JRNL TITL 3 METHODS \ JRNL REF PROTEIN SCI. V. 18 1146 2009 \ JRNL REFN ISSN 0961-8368 \ JRNL PMID 19472324 \ JRNL DOI 10.1002/PRO.127 \ REMARK 2 \ REMARK 2 RESOLUTION. 1.00 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : REFMAC 5.2.0019 \ REMARK 3 AUTHORS : MURSHUDOV,SKUBAK,LEBEDEV,PANNU,STEINER, \ REMARK 3 : NICHOLLS,WINN,LONG,VAGIN \ REMARK 3 \ REMARK 3 REFINEMENT TARGET : MAXIMUM LIKELIHOOD \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 1.00 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 22.84 \ REMARK 3 DATA CUTOFF (SIGMA(F)) : NULL \ REMARK 3 COMPLETENESS FOR RANGE (%) : 83.2 \ REMARK 3 NUMBER OF REFLECTIONS : 21051 \ REMARK 3 \ REMARK 3 FIT TO DATA USED IN REFINEMENT. \ REMARK 3 CROSS-VALIDATION METHOD : THROUGHOUT \ REMARK 3 FREE R VALUE TEST SET SELECTION : RANDOM \ REMARK 3 R VALUE (WORKING + TEST SET) : 0.203 \ REMARK 3 R VALUE (WORKING SET) : 0.202 \ REMARK 3 FREE R VALUE : 0.224 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 5.000 \ REMARK 3 FREE R VALUE TEST SET COUNT : 1100 \ REMARK 3 \ REMARK 3 FIT IN THE HIGHEST RESOLUTION BIN. \ REMARK 3 TOTAL NUMBER OF BINS USED : 20 \ REMARK 3 BIN RESOLUTION RANGE HIGH (A) : 1.00 \ REMARK 3 BIN RESOLUTION RANGE LOW (A) : 1.03 \ REMARK 3 REFLECTION IN BIN (WORKING SET) : 574 \ REMARK 3 BIN COMPLETENESS (WORKING+TEST) (%) : 30.41 \ REMARK 3 BIN R VALUE (WORKING SET) : 0.3230 \ REMARK 3 BIN FREE R VALUE SET COUNT : 30 \ REMARK 3 BIN FREE R VALUE : 0.3470 \ REMARK 3 \ REMARK 3 NUMBER OF NON-HYDROGEN ATOMS USED IN REFINEMENT. \ REMARK 3 PROTEIN ATOMS : 302 \ REMARK 3 NUCLEIC ACID ATOMS : 0 \ REMARK 3 HETEROGEN ATOMS : 0 \ REMARK 3 SOLVENT ATOMS : 24 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : NULL \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 11.78 \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : 0.11000 \ REMARK 3 B22 (A**2) : -0.03000 \ REMARK 3 B33 (A**2) : -0.09000 \ REMARK 3 B12 (A**2) : 0.08000 \ REMARK 3 B13 (A**2) : 0.03000 \ REMARK 3 B23 (A**2) : -0.05000 \ REMARK 3 \ REMARK 3 ESTIMATED OVERALL COORDINATE ERROR. \ REMARK 3 ESU BASED ON R VALUE (A): 0.030 \ REMARK 3 ESU BASED ON FREE R VALUE (A): 0.030 \ REMARK 3 ESU BASED ON MAXIMUM LIKELIHOOD (A): 0.013 \ REMARK 3 ESU FOR B VALUES BASED ON MAXIMUM LIKELIHOOD (A**2): 0.522 \ REMARK 3 \ REMARK 3 CORRELATION COEFFICIENTS. \ REMARK 3 CORRELATION COEFFICIENT FO-FC : 0.960 \ REMARK 3 CORRELATION COEFFICIENT FO-FC FREE : 0.955 \ REMARK 3 \ REMARK 3 RMS DEVIATIONS FROM IDEAL VALUES COUNT RMS WEIGHT \ REMARK 3 BOND LENGTHS REFINED ATOMS (A): 322 ; 0.020 ; 0.021 \ REMARK 3 BOND LENGTHS OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 BOND ANGLES REFINED ATOMS (DEGREES): 432 ; 1.749 ; 1.910 \ REMARK 3 BOND ANGLES OTHERS (DEGREES): NULL ; NULL ; NULL \ REMARK 3 TORSION ANGLES, PERIOD 1 (DEGREES): 39 ; 6.453 ; 5.000 \ REMARK 3 TORSION ANGLES, PERIOD 2 (DEGREES): 16 ;31.391 ;24.375 \ REMARK 3 TORSION ANGLES, PERIOD 3 (DEGREES): 48 ;16.544 ;15.000 \ REMARK 3 TORSION ANGLES, PERIOD 4 (DEGREES): NULL ; NULL ; NULL \ REMARK 3 CHIRAL-CENTER RESTRAINTS (A**3): 34 ; 0.090 ; 0.200 \ REMARK 3 GENERAL PLANES REFINED ATOMS (A): 260 ; 0.014 ; 0.020 \ REMARK 3 GENERAL PLANES OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED CONTACTS REFINED ATOMS (A): 135 ; 0.192 ; 0.200 \ REMARK 3 NON-BONDED CONTACTS OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED TORSION REFINED ATOMS (A): 220 ; 0.323 ; 0.200 \ REMARK 3 NON-BONDED TORSION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 H-BOND (X...Y) REFINED ATOMS (A): 10 ; 0.069 ; 0.200 \ REMARK 3 H-BOND (X...Y) OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 POTENTIAL METAL-ION REFINED ATOMS (A): NULL ; NULL ; NULL \ REMARK 3 POTENTIAL METAL-ION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY VDW REFINED ATOMS (A): 41 ; 0.209 ; 0.200 \ REMARK 3 SYMMETRY VDW OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY H-BOND REFINED ATOMS (A): 9 ; 0.133 ; 0.200 \ REMARK 3 SYMMETRY H-BOND OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY METAL-ION REFINED ATOMS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY METAL-ION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 \ REMARK 3 ISOTROPIC THERMAL FACTOR RESTRAINTS. COUNT RMS WEIGHT \ REMARK 3 MAIN-CHAIN BOND REFINED ATOMS (A**2): 196 ; 1.927 ; 1.500 \ REMARK 3 MAIN-CHAIN BOND OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 MAIN-CHAIN ANGLE REFINED ATOMS (A**2): 299 ; 2.825 ; 2.000 \ REMARK 3 MAIN-CHAIN ANGLE OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SIDE-CHAIN BOND REFINED ATOMS (A**2): 151 ; 4.246 ; 3.000 \ REMARK 3 SIDE-CHAIN BOND OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SIDE-CHAIN ANGLE REFINED ATOMS (A**2): 133 ; 5.873 ; 4.500 \ REMARK 3 SIDE-CHAIN ANGLE OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 LONG RANGE B REFINED ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 LONG RANGE B OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 \ REMARK 3 ANISOTROPIC THERMAL FACTOR RESTRAINTS. COUNT RMS WEIGHT \ REMARK 3 RIGID-BOND RESTRAINTS (A**2): 347 ; 2.230 ; 3.000 \ REMARK 3 SPHERICITY; FREE ATOMS (A**2): 24 ;12.100 ; 3.000 \ REMARK 3 SPHERICITY; BONDED ATOMS (A**2): 309 ; 7.042 ; 3.000 \ REMARK 3 \ REMARK 3 NCS RESTRAINTS STATISTICS \ REMARK 3 NUMBER OF DIFFERENT NCS GROUPS : NULL \ REMARK 3 \ REMARK 3 TLS DETAILS \ REMARK 3 NUMBER OF TLS GROUPS : NULL \ REMARK 3 \ REMARK 3 BULK SOLVENT MODELLING. \ REMARK 3 METHOD USED : MASK \ REMARK 3 PARAMETERS FOR MASK CALCULATION \ REMARK 3 VDW PROBE RADIUS : 1.20 \ REMARK 3 ION PROBE RADIUS : 0.80 \ REMARK 3 SHRINKAGE RADIUS : 0.80 \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: HYDROGENS HAVE BEEN ADDED IN THE RIDING \ REMARK 3 POSITIONS \ REMARK 4 \ REMARK 4 3E7R COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 20-AUG-08. \ REMARK 100 THE DEPOSITION ID IS D_1000048981. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 24-OCT-07 \ REMARK 200 TEMPERATURE (KELVIN) : 100 \ REMARK 200 PH : 7 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : APS \ REMARK 200 BEAMLINE : 23-ID-D \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 0.97934 \ REMARK 200 MONOCHROMATOR : NULL \ REMARK 200 OPTICS : NULL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : CCD \ REMARK 200 DETECTOR MANUFACTURER : MARMOSAIC 300 MM CCD \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : HKL-2000 \ REMARK 200 DATA SCALING SOFTWARE : HKL-2000 \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 22253 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 1.000 \ 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 (%) : 83.2 \ REMARK 200 DATA REDUNDANCY : 3.500 \ REMARK 200 R MERGE (I) : 0.06800 \ REMARK 200 R SYM (I) : NULL \ REMARK 200 FOR THE DATA SET : 12.0000 \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : 1.00 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 1.04 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 32.0 \ REMARK 200 DATA REDUNDANCY IN SHELL : 2.20 \ REMARK 200 R MERGE FOR SHELL (I) : 0.21200 \ REMARK 200 R SYM FOR SHELL (I) : NULL \ REMARK 200 FOR SHELL : 4.800 \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: SINGLE WAVELENGTH \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: AB INITIO PHASING \ REMARK 200 SOFTWARE USED: SHELXS \ REMARK 200 STARTING MODEL: NULL \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 14.53 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 1.41 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: 0.1 M HEPES, 22.5% (W/V) JEFFAMINE ED \ REMARK 280 -2001, PH 7, VAPOR DIFFUSION, HANGING DROP, TEMPERATURE 292K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P -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 \ 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 \ 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: MONOMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: MONOMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: L \ 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 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 MET L 13 CG SD CE \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: COVALENT BOND ANGLES \ REMARK 500 \ REMARK 500 THE STEREOCHEMICAL PARAMETERS OF THE FOLLOWING RESIDUES \ REMARK 500 HAVE VALUES WHICH DEVIATE FROM EXPECTED VALUES BY MORE \ REMARK 500 THAN 6*RMSD (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN \ REMARK 500 IDENTIFIER; SSEQ=SEQUENCE NUMBER; I=INSERTION CODE). \ REMARK 500 \ REMARK 500 STANDARD TABLE: \ REMARK 500 FORMAT: (10X,I3,1X,A3,1X,A1,I4,A1,3(1X,A4,2X),12X,F5.1) \ REMARK 500 \ REMARK 500 EXPECTED VALUES PROTEIN: ENGH AND HUBER, 1999 \ REMARK 500 EXPECTED VALUES NUCLEIC ACID: CLOWNEY ET AL 1996 \ REMARK 500 \ REMARK 500 M RES CSSEQI ATM1 ATM2 ATM3 \ REMARK 500 ASP L 12 CB - CG - OD1 ANGL. DEV. = 6.7 DEGREES \ 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 L 9 72.01 -151.19 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 3E7U RELATED DB: PDB \ DBREF 3E7R L 1 40 UNP Q53I06 PLECT_PSENR 56 95 \ SEQRES 1 L 40 GLY PHE GLY CYS ASN GLY PRO TRP ASP GLU ASP ASP MET \ SEQRES 2 L 40 GLN CYS HIS ASN HIS CYS LYS SER ILE LYS GLY TYR LYS \ SEQRES 3 L 40 GLY GLY TYR CYS ALA LYS GLY GLY PHE VAL CYS LYS CYS \ SEQRES 4 L 40 TYR \ FORMUL 2 HOH *24(H2 O) \ HELIX 1 1 ASP L 11 ILE L 22 1 12 \ SHEET 1 A 2 GLY L 27 ALA L 31 0 \ SHEET 2 A 2 VAL L 36 TYR L 40 -1 O LYS L 38 N TYR L 29 \ SSBOND 1 CYS L 4 CYS L 30 1555 1555 2.02 \ SSBOND 2 CYS L 15 CYS L 37 1555 1555 2.04 \ SSBOND 3 CYS L 19 CYS L 39 1555 1555 2.02 \ CRYST1 23.581 23.812 24.492 109.65 94.95 97.69 P -1 2 \ 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 0.042407 0.005726 0.006080 0.00000 \ SCALE2 0.000000 0.042377 0.015952 0.00000 \ SCALE3 0.000000 0.000000 0.043790 0.00000 \ ATOM 1 N GLY L 1 -11.368 12.310 -6.218 1.00 13.77 N \ ANISOU 1 N GLY L 1 1291 1619 2321 -573 -112 -141 N \ ATOM 2 CA GLY L 1 -12.336 13.406 -6.371 1.00 13.43 C \ ANISOU 2 CA GLY L 1 1149 1848 2105 -475 -293 -115 C \ ATOM 3 C GLY L 1 -11.852 14.674 -5.678 1.00 9.95 C \ ANISOU 3 C GLY L 1 787 1477 1518 -528 -173 -38 C \ ATOM 4 O GLY L 1 -10.776 14.688 -5.107 1.00 9.62 O \ ANISOU 4 O GLY L 1 781 1473 1400 -316 -129 24 O \ ATOM 5 N PHE L 2 -12.641 15.749 -5.823 1.00 10.65 N \ ANISOU 5 N PHE L 2 726 1865 1454 -332 -162 -82 N \ ATOM 6 CA PHE L 2 -12.370 17.021 -5.166 1.00 10.53 C \ ANISOU 6 CA PHE L 2 847 1702 1452 -147 -235 -78 C \ ATOM 7 C PHE L 2 -10.976 17.529 -5.494 1.00 9.58 C \ ANISOU 7 C PHE L 2 678 1346 1613 -186 -311 25 C \ ATOM 8 O PHE L 2 -10.295 18.111 -4.659 1.00 11.45 O \ ANISOU 8 O PHE L 2 876 1530 1944 -203 -305 -246 O \ ATOM 9 CB PHE L 2 -12.636 16.967 -3.652 1.00 12.35 C \ ANISOU 9 CB PHE L 2 1062 2145 1483 -97 -160 -40 C \ ATOM 10 CG PHE L 2 -14.020 16.472 -3.353 1.00 12.44 C \ ANISOU 10 CG PHE L 2 1205 1957 1563 -58 -95 -80 C \ ATOM 11 CD1 PHE L 2 -14.230 15.174 -2.924 1.00 14.23 C \ ANISOU 11 CD1 PHE L 2 1564 2229 1610 -276 10 -28 C \ ATOM 12 CD2 PHE L 2 -15.091 17.319 -3.591 1.00 13.94 C \ ANISOU 12 CD2 PHE L 2 1017 2199 2081 -60 -16 -162 C \ ATOM 13 CE1 PHE L 2 -15.509 14.705 -2.716 1.00 15.53 C \ ANISOU 13 CE1 PHE L 2 1910 2113 1877 -412 41 -128 C \ ATOM 14 CE2 PHE L 2 -16.388 16.865 -3.395 1.00 15.05 C \ ANISOU 14 CE2 PHE L 2 1252 2196 2268 -93 61 -110 C \ ATOM 15 CZ PHE L 2 -16.578 15.533 -2.969 1.00 15.90 C \ ANISOU 15 CZ PHE L 2 1633 2365 2041 -312 278 64 C \ ATOM 16 N GLY L 3 -10.573 17.331 -6.752 1.00 9.70 N \ ANISOU 16 N GLY L 3 795 1278 1610 -140 -227 157 N \ ATOM 17 CA GLY L 3 -9.267 17.787 -7.209 1.00 10.11 C \ ANISOU 17 CA GLY L 3 849 1172 1819 -223 -134 162 C \ ATOM 18 C GLY L 3 -8.225 16.705 -7.284 1.00 8.65 C \ ANISOU 18 C GLY L 3 794 1065 1426 -325 -263 12 C \ ATOM 19 O GLY L 3 -7.172 16.899 -7.899 1.00 9.25 O \ ANISOU 19 O GLY L 3 732 1223 1556 -320 -132 149 O \ ATOM 20 N CYS L 4 -8.492 15.570 -6.650 1.00 8.03 N \ ANISOU 20 N CYS L 4 758 944 1348 -225 -170 -14 N \ ATOM 21 CA CYS L 4 -7.524 14.484 -6.571 1.00 8.32 C \ ANISOU 21 CA CYS L 4 799 933 1430 -215 -145 -12 C \ ATOM 22 C CYS L 4 -7.840 13.512 -7.718 1.00 8.53 C \ ANISOU 22 C CYS L 4 672 1131 1436 -318 -208 -81 C \ ATOM 23 O CYS L 4 -8.762 12.707 -7.651 1.00 9.77 O \ ANISOU 23 O CYS L 4 776 1205 1729 -470 -171 -101 O \ ATOM 24 CB CYS L 4 -7.591 13.816 -5.228 1.00 8.62 C \ ANISOU 24 CB CYS L 4 923 1001 1348 -279 -154 -51 C \ ATOM 25 SG CYS L 4 -7.318 14.971 -3.878 1.00 8.67 S \ ANISOU 25 SG CYS L 4 934 1024 1334 -149 -85 23 S \ ATOM 26 N ASN L 5 -7.073 13.662 -8.801 1.00 8.82 N \ ANISOU 26 N ASN L 5 827 1202 1318 -348 -164 -144 N \ ATOM 27 CA ASN L 5 -7.274 12.973 -10.069 1.00 10.53 C \ ANISOU 27 CA ASN L 5 1107 1372 1521 -411 -182 -244 C \ ATOM 28 C ASN L 5 -6.057 12.130 -10.427 1.00 10.77 C \ ANISOU 28 C ASN L 5 1316 1204 1569 -460 8 -292 C \ ATOM 29 O ASN L 5 -5.695 11.959 -11.583 1.00 12.40 O \ ANISOU 29 O ASN L 5 1620 1448 1642 -347 27 -230 O \ ATOM 30 CB ASN L 5 -7.647 13.988 -11.140 1.00 11.97 C \ ANISOU 30 CB ASN L 5 1279 1770 1498 -410 -406 -270 C \ ATOM 31 CG ASN L 5 -9.050 14.543 -10.921 1.00 18.24 C \ ANISOU 31 CG ASN L 5 1552 2744 2634 -714 -596 -229 C \ ATOM 32 OD1 ASN L 5 -9.996 13.817 -10.667 1.00 25.43 O \ ANISOU 32 OD1 ASN L 5 1798 4107 3755 -538 -374 130 O \ ATOM 33 ND2 ASN L 5 -9.169 15.858 -10.999 1.00 25.43 N \ ANISOU 33 ND2 ASN L 5 2605 3172 3882 -507 -647 -269 N \ ATOM 34 N GLY L 6 -5.446 11.541 -9.404 1.00 10.13 N \ ANISOU 34 N GLY L 6 993 1168 1684 -446 18 -156 N \ ATOM 35 CA GLY L 6 -4.380 10.567 -9.601 1.00 10.67 C \ ANISOU 35 CA GLY L 6 1116 1176 1761 -250 151 -128 C \ ATOM 36 C GLY L 6 -3.053 11.199 -9.330 1.00 9.71 C \ ANISOU 36 C GLY L 6 1126 1123 1439 -212 72 106 C \ ATOM 37 O GLY L 6 -2.924 12.422 -9.078 1.00 9.33 O \ ANISOU 37 O GLY L 6 959 1146 1440 -280 17 32 O \ ATOM 38 N PRO L 7 -2.005 10.367 -9.363 1.00 10.56 N \ ANISOU 38 N PRO L 7 1244 1180 1586 -57 171 153 N \ ATOM 39 CA PRO L 7 -0.700 10.794 -8.873 1.00 11.31 C \ ANISOU 39 CA PRO L 7 1300 1449 1546 4 -41 320 C \ ATOM 40 C PRO L 7 -0.060 11.921 -9.676 1.00 10.71 C \ ANISOU 40 C PRO L 7 838 1604 1626 -141 -90 178 C \ ATOM 41 O PRO L 7 0.874 12.552 -9.206 1.00 13.31 O \ ANISOU 41 O PRO L 7 1204 2199 1653 -426 -259 211 O \ ATOM 42 CB PRO L 7 0.128 9.487 -9.007 1.00 13.54 C \ ANISOU 42 CB PRO L 7 1550 1566 2026 118 -48 328 C \ ATOM 43 CG PRO L 7 -0.671 8.559 -9.832 1.00 16.47 C \ ANISOU 43 CG PRO L 7 1789 1856 2613 202 43 -41 C \ ATOM 44 CD PRO L 7 -2.076 8.936 -9.753 1.00 12.33 C \ ANISOU 44 CD PRO L 7 1633 1100 1952 5 350 106 C \ ATOM 45 N TRP L 8 -0.543 12.174 -10.866 1.00 9.05 N \ ANISOU 45 N TRP L 8 975 1164 1299 -103 6 87 N \ ATOM 46 CA TRP L 8 -0.015 13.211 -11.754 1.00 9.22 C \ ANISOU 46 CA TRP L 8 995 1115 1393 -136 106 77 C \ ATOM 47 C TRP L 8 -0.972 14.364 -11.924 1.00 8.62 C \ ANISOU 47 C TRP L 8 905 1135 1235 -242 -45 58 C \ ATOM 48 O TRP L 8 -0.735 15.216 -12.770 1.00 8.90 O \ ANISOU 48 O TRP L 8 888 1163 1329 -234 -27 52 O \ ATOM 49 CB TRP L 8 0.381 12.579 -13.089 1.00 11.07 C \ ANISOU 49 CB TRP L 8 1358 1411 1437 72 82 133 C \ ATOM 50 CG TRP L 8 1.479 11.557 -12.906 1.00 11.10 C \ ANISOU 50 CG TRP L 8 1114 1417 1685 -105 235 178 C \ ATOM 51 CD1 TRP L 8 2.701 11.805 -12.425 1.00 12.11 C \ ANISOU 51 CD1 TRP L 8 1286 1503 1812 -35 143 274 C \ ATOM 52 CD2 TRP L 8 1.408 10.170 -13.151 1.00 11.38 C \ ANISOU 52 CD2 TRP L 8 1393 1369 1559 18 105 160 C \ ATOM 53 NE1 TRP L 8 3.436 10.628 -12.336 1.00 12.25 N \ ANISOU 53 NE1 TRP L 8 1169 1572 1913 -86 54 209 N \ ATOM 54 CE2 TRP L 8 2.635 9.611 -12.779 1.00 11.36 C \ ANISOU 54 CE2 TRP L 8 1298 1270 1747 -101 12 116 C \ ATOM 55 CE3 TRP L 8 0.395 9.314 -13.623 1.00 13.45 C \ ANISOU 55 CE3 TRP L 8 1643 1524 1941 -18 82 149 C \ ATOM 56 CZ2 TRP L 8 2.908 8.245 -12.900 1.00 13.40 C \ ANISOU 56 CZ2 TRP L 8 1608 1607 1877 117 -57 240 C \ ATOM 57 CZ3 TRP L 8 0.664 7.960 -13.749 1.00 15.35 C \ ANISOU 57 CZ3 TRP L 8 1915 1673 2245 -228 -150 20 C \ ATOM 58 CH2 TRP L 8 1.898 7.432 -13.374 1.00 15.00 C \ ANISOU 58 CH2 TRP L 8 1838 1644 2215 -155 -233 -13 C \ ATOM 59 N ASP L 9 -2.056 14.388 -11.149 1.00 8.55 N \ ANISOU 59 N ASP L 9 873 1016 1360 -233 -59 -45 N \ ATOM 60 CA ASP L 9 -3.069 15.419 -11.285 1.00 8.74 C \ ANISOU 60 CA ASP L 9 960 1154 1204 -214 -161 19 C \ ATOM 61 C ASP L 9 -3.738 15.633 -9.925 1.00 7.90 C \ ANISOU 61 C ASP L 9 637 1001 1361 -230 -159 57 C \ ATOM 62 O ASP L 9 -4.864 15.225 -9.731 1.00 9.58 O \ ANISOU 62 O ASP L 9 877 1346 1414 -292 -205 -14 O \ ATOM 63 CB ASP L 9 -4.061 15.100 -12.370 1.00 10.58 C \ ANISOU 63 CB ASP L 9 959 1539 1522 -149 -298 -66 C \ ATOM 64 CG ASP L 9 -4.968 16.273 -12.672 1.00 13.01 C \ ANISOU 64 CG ASP L 9 1273 2018 1652 -325 -519 106 C \ ATOM 65 OD1 ASP L 9 -4.851 17.343 -12.038 1.00 13.52 O \ ANISOU 65 OD1 ASP L 9 1561 1684 1889 -82 -306 217 O \ ATOM 66 OD2 ASP L 9 -5.824 16.104 -13.521 1.00 18.89 O \ ANISOU 66 OD2 ASP L 9 1900 2729 2547 -154 -1087 3 O \ ATOM 67 N GLU L 10 -3.010 16.243 -9.011 1.00 8.26 N \ ANISOU 67 N GLU L 10 757 1087 1291 -286 -157 -45 N \ ATOM 68 CA GLU L 10 -3.447 16.431 -7.627 1.00 9.08 C \ ANISOU 68 CA GLU L 10 950 1287 1213 -268 -102 126 C \ ATOM 69 C GLU L 10 -3.598 17.877 -7.296 1.00 8.62 C \ ANISOU 69 C GLU L 10 913 1172 1188 -283 -74 -61 C \ ATOM 70 O GLU L 10 -2.612 18.562 -6.979 1.00 9.16 O \ ANISOU 70 O GLU L 10 752 1368 1358 -359 -216 -91 O \ ATOM 71 CB GLU L 10 -2.523 15.797 -6.609 1.00 11.26 C \ ANISOU 71 CB GLU L 10 1557 1218 1502 -161 -200 97 C \ ATOM 72 CG GLU L 10 -2.595 14.320 -6.677 1.00 12.99 C \ ANISOU 72 CG GLU L 10 1884 1459 1593 -153 30 201 C \ ATOM 73 CD GLU L 10 -1.542 13.702 -5.818 1.00 14.22 C \ ANISOU 73 CD GLU L 10 1698 1574 2128 76 213 392 C \ ATOM 74 OE1 GLU L 10 -0.346 14.123 -5.932 1.00 17.95 O \ ANISOU 74 OE1 GLU L 10 1707 2170 2940 170 274 790 O \ ATOM 75 OE2 GLU L 10 -1.826 12.792 -5.050 1.00 14.13 O \ ANISOU 75 OE2 GLU L 10 1844 1609 1916 64 90 463 O \ ATOM 76 N ASP L 11 -4.828 18.397 -7.379 1.00 8.78 N \ ANISOU 76 N ASP L 11 805 1309 1222 -280 -153 -9 N \ ATOM 77 CA ASP L 11 -5.114 19.775 -6.994 1.00 8.89 C \ ANISOU 77 CA ASP L 11 887 1175 1313 -266 -87 -79 C \ ATOM 78 C ASP L 11 -5.321 19.760 -5.485 1.00 8.40 C \ ANISOU 78 C ASP L 11 719 1217 1255 -297 -82 -55 C \ ATOM 79 O ASP L 11 -6.431 19.740 -4.975 1.00 8.58 O \ ANISOU 79 O ASP L 11 751 1194 1315 -222 -150 6 O \ ATOM 80 CB ASP L 11 -6.299 20.317 -7.796 1.00 9.57 C \ ANISOU 80 CB ASP L 11 893 1399 1344 -193 -211 85 C \ ATOM 81 CG ASP L 11 -6.547 21.794 -7.561 1.00 10.18 C \ ANISOU 81 CG ASP L 11 972 1428 1466 -79 -172 178 C \ ATOM 82 OD1 ASP L 11 -5.927 22.396 -6.668 1.00 11.17 O \ ANISOU 82 OD1 ASP L 11 1376 1337 1529 -277 -172 108 O \ ATOM 83 OD2 ASP L 11 -7.416 22.325 -8.277 1.00 12.26 O \ ANISOU 83 OD2 ASP L 11 1395 1766 1496 112 -104 154 O \ ATOM 84 N ASP L 12 -4.202 19.748 -4.743 1.00 8.87 N \ ANISOU 84 N ASP L 12 723 1385 1259 -257 -150 -77 N \ ATOM 85 CA ASP L 12 -4.255 19.647 -3.305 1.00 9.22 C \ ANISOU 85 CA ASP L 12 790 1347 1365 -230 -178 11 C \ ATOM 86 C ASP L 12 -5.000 20.789 -2.696 1.00 8.78 C \ ANISOU 86 C ASP L 12 756 1424 1155 -284 -255 12 C \ ATOM 87 O ASP L 12 -5.646 20.603 -1.656 1.00 9.98 O \ ANISOU 87 O ASP L 12 715 1753 1323 -187 -169 63 O \ ATOM 88 CB ASP L 12 -2.844 19.597 -2.686 1.00 9.30 C \ ANISOU 88 CB ASP L 12 745 1239 1548 -302 -278 37 C \ ATOM 89 CG ASP L 12 -2.261 18.238 -2.667 1.00 10.48 C \ ANISOU 89 CG ASP L 12 691 1433 1857 -435 -426 125 C \ ATOM 90 OD1 ASP L 12 -2.894 17.216 -2.574 1.00 11.63 O \ ANISOU 90 OD1 ASP L 12 1221 1369 1827 -572 -191 197 O \ ATOM 91 OD2 ASP L 12 -1.045 18.201 -2.516 1.00 18.75 O \ ANISOU 91 OD2 ASP L 12 1202 1432 4488 -354 -694 27 O \ ATOM 92 N MET L 13 -4.891 21.989 -3.271 1.00 9.14 N \ ANISOU 92 N MET L 13 679 1367 1424 -255 -230 -166 N \ ATOM 93 CA MET L 13 -5.567 23.117 -2.646 1.00 10.08 C \ ANISOU 93 CA MET L 13 692 1366 1772 -471 -140 -322 C \ ATOM 94 C MET L 13 -7.059 23.077 -2.841 1.00 8.20 C \ ANISOU 94 C MET L 13 826 953 1335 -413 -189 16 C \ ATOM 95 O MET L 13 -7.795 23.474 -1.927 1.00 8.22 O \ ANISOU 95 O MET L 13 796 1050 1277 -299 -186 -75 O \ ATOM 96 CB MET L 13 -5.002 24.433 -3.231 1.00 12.54 C \ ANISOU 96 CB MET L 13 1045 1341 2378 -641 178 -471 C \ ATOM 97 N GLN L 14 -7.552 22.548 -3.969 1.00 8.08 N \ ANISOU 97 N GLN L 14 755 1019 1292 -371 -253 47 N \ ATOM 98 CA GLN L 14 -8.972 22.308 -4.103 1.00 8.19 C \ ANISOU 98 CA GLN L 14 816 1070 1225 -289 -286 77 C \ ATOM 99 C GLN L 14 -9.427 21.321 -3.010 1.00 7.17 C \ ANISOU 99 C GLN L 14 648 916 1159 -254 -270 -23 C \ ATOM 100 O GLN L 14 -10.450 21.535 -2.351 1.00 7.74 O \ ANISOU 100 O GLN L 14 660 980 1299 -239 -210 4 O \ ATOM 101 CB GLN L 14 -9.292 21.761 -5.485 1.00 8.92 C \ ANISOU 101 CB GLN L 14 947 1231 1210 -194 -326 -31 C \ ATOM 102 CG GLN L 14 -10.759 21.419 -5.648 1.00 10.33 C \ ANISOU 102 CG GLN L 14 1213 1220 1490 -185 -665 -125 C \ ATOM 103 CD GLN L 14 -11.079 20.853 -7.039 1.00 12.30 C \ ANISOU 103 CD GLN L 14 1478 1286 1909 -241 -928 201 C \ ATOM 104 OE1 GLN L 14 -12.147 20.329 -7.189 1.00 15.81 O \ ANISOU 104 OE1 GLN L 14 1976 1790 2241 -267 -1066 -158 O \ ATOM 105 NE2 GLN L 14 -10.200 20.912 -8.000 1.00 14.32 N \ ANISOU 105 NE2 GLN L 14 2204 1581 1653 263 -860 -189 N \ ATOM 106 N CYS L 15 -8.673 20.240 -2.847 1.00 7.16 N \ ANISOU 106 N CYS L 15 678 933 1107 -244 -237 35 N \ ATOM 107 CA CYS L 15 -9.038 19.256 -1.848 1.00 7.45 C \ ANISOU 107 CA CYS L 15 720 880 1228 -218 -211 -16 C \ ATOM 108 C CYS L 15 -9.028 19.863 -0.440 1.00 6.94 C \ ANISOU 108 C CYS L 15 481 865 1291 -250 -180 52 C \ ATOM 109 O CYS L 15 -9.963 19.659 0.341 1.00 7.65 O \ ANISOU 109 O CYS L 15 674 899 1331 -283 -241 24 O \ ATOM 110 CB CYS L 15 -8.125 18.059 -1.956 1.00 7.91 C \ ANISOU 110 CB CYS L 15 755 880 1370 -197 -198 42 C \ ATOM 111 SG CYS L 15 -8.198 16.899 -0.579 1.00 8.20 S \ ANISOU 111 SG CYS L 15 828 916 1372 -186 -272 13 S \ ATOM 112 N HIS L 16 -8.001 20.626 -0.103 1.00 7.68 N \ ANISOU 112 N HIS L 16 634 1013 1270 -229 -159 31 N \ ATOM 113 CA HIS L 16 -7.897 21.277 1.191 1.00 8.15 C \ ANISOU 113 CA HIS L 16 701 1165 1229 -328 -214 -151 C \ ATOM 114 C HIS L 16 -9.074 22.227 1.436 1.00 8.15 C \ ANISOU 114 C HIS L 16 664 1055 1378 -426 -163 -124 C \ ATOM 115 O HIS L 16 -9.681 22.196 2.501 1.00 9.14 O \ ANISOU 115 O HIS L 16 774 1286 1414 -433 -61 -176 O \ ATOM 116 CB HIS L 16 -6.559 22.002 1.220 1.00 8.93 C \ ANISOU 116 CB HIS L 16 679 1326 1384 -483 -204 -112 C \ ATOM 117 CG HIS L 16 -6.299 22.709 2.508 1.00 11.07 C \ ANISOU 117 CG HIS L 16 1297 1493 1417 -746 -120 -63 C \ ATOM 118 ND1 HIS L 16 -6.093 22.087 3.721 1.00 13.84 N \ ANISOU 118 ND1 HIS L 16 1638 2068 1551 -874 -486 -234 N \ ATOM 119 CD2 HIS L 16 -6.219 24.028 2.741 1.00 15.74 C \ ANISOU 119 CD2 HIS L 16 2565 1799 1616 -974 102 -281 C \ ATOM 120 CE1 HIS L 16 -5.873 23.010 4.646 1.00 17.99 C \ ANISOU 120 CE1 HIS L 16 2628 2105 2099 -1232 -193 -334 C \ ATOM 121 NE2 HIS L 16 -5.940 24.198 4.071 1.00 18.49 N \ ANISOU 121 NE2 HIS L 16 3089 2112 1822 -1420 -50 -336 N \ ATOM 122 N ASN L 17 -9.353 23.074 0.455 1.00 8.18 N \ ANISOU 122 N ASN L 17 581 1025 1502 -380 -188 -140 N \ ATOM 123 CA ASN L 17 -10.483 24.018 0.595 1.00 8.98 C \ ANISOU 123 CA ASN L 17 601 963 1847 -297 -92 -129 C \ ATOM 124 C ASN L 17 -11.794 23.260 0.720 1.00 8.02 C \ ANISOU 124 C ASN L 17 749 890 1407 -197 -101 105 C \ ATOM 125 O ASN L 17 -12.687 23.669 1.486 1.00 8.49 O \ ANISOU 125 O ASN L 17 737 963 1523 -280 -51 -50 O \ ATOM 126 CB ASN L 17 -10.526 24.940 -0.707 1.00 10.79 C \ ANISOU 126 CB ASN L 17 854 1007 2238 -230 115 281 C \ ATOM 127 CG ASN L 17 -9.616 26.059 -0.727 1.00 12.33 C \ ANISOU 127 CG ASN L 17 855 1421 2406 -423 4 220 C \ ATOM 128 OD1 ASN L 17 -9.179 26.505 0.372 1.00 15.49 O \ ANISOU 128 OD1 ASN L 17 1168 1636 3079 -1034 -437 -46 O \ ATOM 129 ND2 ASN L 17 -9.235 26.542 -1.950 1.00 12.82 N \ ANISOU 129 ND2 ASN L 17 1099 1416 2353 -412 -52 145 N \ ATOM 130 N HIS L 18 -11.943 22.164 -0.030 1.00 7.56 N \ ANISOU 130 N HIS L 18 669 852 1349 -311 -137 53 N \ ATOM 131 CA HIS L 18 -13.138 21.330 0.100 1.00 7.60 C \ ANISOU 131 CA HIS L 18 665 896 1324 -309 -103 48 C \ ATOM 132 C HIS L 18 -13.230 20.799 1.506 1.00 7.48 C \ ANISOU 132 C HIS L 18 649 892 1299 -292 -194 18 C \ ATOM 133 O HIS L 18 -14.298 20.881 2.163 1.00 8.29 O \ ANISOU 133 O HIS L 18 719 1100 1329 -230 -87 97 O \ ATOM 134 CB HIS L 18 -13.058 20.176 -0.910 1.00 8.17 C \ ANISOU 134 CB HIS L 18 675 1054 1374 -401 -143 -28 C \ ATOM 135 CG HIS L 18 -13.928 19.031 -0.527 1.00 8.41 C \ ANISOU 135 CG HIS L 18 680 1131 1383 -380 -178 -81 C \ ATOM 136 ND1 HIS L 18 -15.295 19.055 -0.673 1.00 9.63 N \ ANISOU 136 ND1 HIS L 18 752 1257 1649 -564 -200 -2 N \ ATOM 137 CD2 HIS L 18 -13.616 17.868 0.042 1.00 8.92 C \ ANISOU 137 CD2 HIS L 18 869 1042 1475 -433 -176 -12 C \ ATOM 138 CE1 HIS L 18 -15.774 17.915 -0.213 1.00 10.99 C \ ANISOU 138 CE1 HIS L 18 900 1453 1821 -550 -93 -54 C \ ATOM 139 NE2 HIS L 18 -14.777 17.173 0.223 1.00 10.29 N \ ANISOU 139 NE2 HIS L 18 1033 1113 1763 -404 -253 -4 N \ ATOM 140 N CYS L 19 -12.157 20.247 2.060 1.00 7.43 N \ ANISOU 140 N CYS L 19 717 949 1154 -274 -175 19 N \ ATOM 141 CA CYS L 19 -12.221 19.686 3.383 1.00 8.25 C \ ANISOU 141 CA CYS L 19 744 1089 1302 -282 -174 -8 C \ ATOM 142 C CYS L 19 -12.596 20.739 4.407 1.00 8.54 C \ ANISOU 142 C CYS L 19 726 1329 1188 -176 -158 -18 C \ ATOM 143 O CYS L 19 -13.382 20.473 5.315 1.00 9.24 O \ ANISOU 143 O CYS L 19 941 1267 1302 -118 -87 19 O \ ATOM 144 CB CYS L 19 -10.913 19.018 3.755 1.00 8.55 C \ ANISOU 144 CB CYS L 19 776 1119 1351 -162 -185 31 C \ ATOM 145 SG CYS L 19 -10.610 17.506 2.775 1.00 8.49 S \ ANISOU 145 SG CYS L 19 821 1118 1286 -150 -163 30 S \ ATOM 146 N LYS L 20 -12.014 21.932 4.301 1.00 8.93 N \ ANISOU 146 N LYS L 20 858 1175 1358 -252 -149 -166 N \ ATOM 147 CA LYS L 20 -12.330 22.962 5.284 1.00 10.22 C \ ANISOU 147 CA LYS L 20 979 1381 1521 -195 -132 -293 C \ ATOM 148 C LYS L 20 -13.795 23.376 5.223 1.00 9.33 C \ ANISOU 148 C LYS L 20 1039 1046 1460 -292 -194 -102 C \ ATOM 149 O LYS L 20 -14.338 23.829 6.221 1.00 10.87 O \ ANISOU 149 O LYS L 20 1128 1477 1526 -174 -126 -345 O \ ATOM 150 CB LYS L 20 -11.431 24.160 5.076 1.00 12.31 C \ ANISOU 150 CB LYS L 20 1110 1526 2040 -426 64 -565 C \ ATOM 151 CG LYS L 20 -10.035 23.874 5.587 1.00 15.50 C \ ANISOU 151 CG LYS L 20 890 2485 2514 -489 -214 -649 C \ ATOM 152 CD LYS L 20 -9.076 25.049 5.337 1.00 20.82 C \ ANISOU 152 CD LYS L 20 1323 2932 3654 -647 -574 -734 C \ ATOM 153 CE LYS L 20 -8.680 25.729 6.615 1.00 30.94 C \ ANISOU 153 CE LYS L 20 3513 4275 3965 -207 -328 -310 C \ ATOM 154 NZ LYS L 20 -9.802 26.559 7.136 1.00 33.94 N \ ANISOU 154 NZ LYS L 20 3878 4508 4509 14 19 -199 N \ ATOM 155 N SER L 21 -14.432 23.231 4.078 1.00 9.40 N \ ANISOU 155 N SER L 21 961 1188 1423 -87 -138 82 N \ ATOM 156 CA SER L 21 -15.854 23.543 3.982 1.00 9.91 C \ ANISOU 156 CA SER L 21 1012 1185 1568 -124 -188 137 C \ ATOM 157 C SER L 21 -16.725 22.532 4.686 1.00 9.30 C \ ANISOU 157 C SER L 21 978 1065 1490 -180 -262 -70 C \ ATOM 158 O SER L 21 -17.922 22.791 4.902 1.00 10.47 O \ ANISOU 158 O SER L 21 1094 1142 1742 -170 -149 142 O \ ATOM 159 CB SER L 21 -16.279 23.687 2.531 1.00 11.75 C \ ANISOU 159 CB SER L 21 1201 1507 1755 34 -372 16 C \ ATOM 160 OG SER L 21 -16.482 22.473 1.860 1.00 12.65 O \ ANISOU 160 OG SER L 21 1301 1920 1584 82 -450 9 O \ ATOM 161 N ILE L 22 -16.190 21.397 5.029 1.00 10.39 N \ ANISOU 161 N ILE L 22 944 1111 1893 -377 -529 223 N \ ATOM 162 CA ILE L 22 -16.806 20.383 5.774 1.00 12.20 C \ ANISOU 162 CA ILE L 22 949 1502 2185 -404 -491 514 C \ ATOM 163 C ILE L 22 -16.438 20.721 7.184 1.00 12.49 C \ ANISOU 163 C ILE L 22 1130 1485 2129 -363 -115 371 C \ ATOM 164 O ILE L 22 -15.445 20.213 7.729 1.00 14.28 O \ ANISOU 164 O ILE L 22 1075 2280 2071 -50 -289 512 O \ ATOM 165 CB ILE L 22 -16.367 18.926 5.265 1.00 13.43 C \ ANISOU 165 CB ILE L 22 1213 1215 2672 -220 -297 413 C \ ATOM 166 CG1 ILE L 22 -16.462 18.782 3.705 1.00 13.05 C \ ANISOU 166 CG1 ILE L 22 1220 1473 2262 -455 -203 -74 C \ ATOM 167 CG2 ILE L 22 -17.080 17.870 6.007 1.00 15.06 C \ ANISOU 167 CG2 ILE L 22 1071 1411 3239 -660 -212 193 C \ ATOM 168 CD1 ILE L 22 -17.788 19.126 3.115 1.00 14.12 C \ ANISOU 168 CD1 ILE L 22 1259 1675 2428 -423 -357 -49 C \ ATOM 169 N LYS L 23 -17.168 21.687 7.739 1.00 13.19 N \ ANISOU 169 N LYS L 23 1493 1368 2150 -498 -409 337 N \ ATOM 170 CA LYS L 23 -16.808 22.447 8.924 1.00 14.54 C \ ANISOU 170 CA LYS L 23 1648 1513 2362 60 -198 420 C \ ATOM 171 C LYS L 23 -16.384 21.526 10.101 1.00 13.39 C \ ANISOU 171 C LYS L 23 1007 1448 2629 -271 -96 281 C \ ATOM 172 O LYS L 23 -17.126 20.601 10.393 1.00 14.89 O \ ANISOU 172 O LYS L 23 1412 1833 2412 -546 75 402 O \ ATOM 173 CB LYS L 23 -17.989 23.311 9.308 1.00 16.94 C \ ANISOU 173 CB LYS L 23 2164 1923 2350 125 -410 56 C \ ATOM 174 CG LYS L 23 -17.827 24.100 10.537 1.00 22.65 C \ ANISOU 174 CG LYS L 23 2988 2739 2877 329 -236 -95 C \ ATOM 175 CD LYS L 23 -16.738 25.146 10.385 1.00 29.48 C \ ANISOU 175 CD LYS L 23 3832 3483 3883 3 -235 158 C \ ATOM 176 CE LYS L 23 -16.918 26.336 11.368 1.00 36.07 C \ ANISOU 176 CE LYS L 23 4802 4441 4459 101 -66 -90 C \ ATOM 177 NZ LYS L 23 -16.191 26.189 12.652 1.00 40.12 N \ ANISOU 177 NZ LYS L 23 5143 5089 5011 -157 -210 -20 N \ ATOM 178 N GLY L 24 -15.206 21.788 10.661 1.00 13.05 N \ ANISOU 178 N GLY L 24 1167 1485 2306 -248 -201 283 N \ ATOM 179 CA GLY L 24 -14.630 20.951 11.670 1.00 11.89 C \ ANISOU 179 CA GLY L 24 1235 1450 1832 -201 -26 327 C \ ATOM 180 C GLY L 24 -13.431 20.158 11.161 1.00 11.17 C \ ANISOU 180 C GLY L 24 1144 1461 1636 -139 -216 19 C \ ATOM 181 O GLY L 24 -12.500 19.822 11.929 1.00 11.18 O \ ANISOU 181 O GLY L 24 1080 1602 1562 -358 -241 -55 O \ ATOM 182 N TYR L 25 -13.415 19.851 9.860 1.00 11.14 N \ ANISOU 182 N TYR L 25 1026 1618 1586 -371 -181 80 N \ ATOM 183 CA TYR L 25 -12.212 19.280 9.326 1.00 10.54 C \ ANISOU 183 CA TYR L 25 1004 1488 1512 -344 -159 -76 C \ ATOM 184 C TYR L 25 -11.158 20.364 9.263 1.00 10.40 C \ ANISOU 184 C TYR L 25 1283 1359 1308 -185 -301 -119 C \ ATOM 185 O TYR L 25 -11.415 21.515 8.892 1.00 11.14 O \ ANISOU 185 O TYR L 25 1122 1520 1592 -386 -212 -35 O \ ATOM 186 CB TYR L 25 -12.437 18.642 7.962 1.00 11.73 C \ ANISOU 186 CB TYR L 25 1448 1600 1407 -476 -283 -138 C \ ATOM 187 CG ATYR L 25 -13.416 17.489 7.925 0.50 13.78 C \ ANISOU 187 CG ATYR L 25 1580 1885 1768 -485 134 -258 C \ ATOM 188 CG BTYR L 25 -12.894 17.152 8.005 0.50 9.45 C \ ANISOU 188 CG BTYR L 25 824 1204 1561 -440 -447 -31 C \ ATOM 189 CD1ATYR L 25 -13.989 16.943 9.060 0.50 14.59 C \ ANISOU 189 CD1ATYR L 25 1819 1796 1928 -396 273 -310 C \ ATOM 190 CD1BTYR L 25 -12.223 16.149 8.680 0.50 9.33 C \ ANISOU 190 CD1BTYR L 25 912 1078 1554 -167 -238 0 C \ ATOM 191 CD2ATYR L 25 -13.689 16.865 6.720 0.50 14.35 C \ ANISOU 191 CD2ATYR L 25 1614 2239 1597 -455 219 -257 C \ ATOM 192 CD2BTYR L 25 -13.999 16.775 7.266 0.50 10.81 C \ ANISOU 192 CD2BTYR L 25 633 1485 1986 -356 -270 -265 C \ ATOM 193 CE1ATYR L 25 -14.773 15.801 8.982 0.50 14.50 C \ ANISOU 193 CE1ATYR L 25 1637 1719 2154 -279 43 -122 C \ ATOM 194 CE1BTYR L 25 -12.659 14.828 8.688 0.50 10.30 C \ ANISOU 194 CE1BTYR L 25 1209 1225 1479 -411 -264 98 C \ ATOM 195 CE2ATYR L 25 -14.432 15.725 6.639 0.50 15.02 C \ ANISOU 195 CE2ATYR L 25 1732 2111 1861 -524 160 -297 C \ ATOM 196 CE2BTYR L 25 -14.420 15.467 7.277 0.50 11.90 C \ ANISOU 196 CE2BTYR L 25 852 1763 1904 -616 -373 42 C \ ATOM 197 CZ ATYR L 25 -14.978 15.181 7.783 0.50 14.67 C \ ANISOU 197 CZ ATYR L 25 1516 1926 2131 -379 265 134 C \ ATOM 198 CZ BTYR L 25 -13.766 14.490 8.004 0.50 11.84 C \ ANISOU 198 CZ BTYR L 25 1223 1275 2000 -406 -541 -41 C \ ATOM 199 OH ATYR L 25 -15.682 14.032 7.686 0.50 16.13 O \ ANISOU 199 OH ATYR L 25 2235 1868 2024 -510 -110 -279 O \ ATOM 200 OH BTYR L 25 -14.222 13.169 7.989 0.50 15.29 O \ ANISOU 200 OH BTYR L 25 1884 1354 2571 -739 -655 27 O \ ATOM 201 N LYS L 26 -9.943 20.017 9.668 1.00 10.67 N \ ANISOU 201 N LYS L 26 957 1724 1371 -164 -275 -235 N \ ATOM 202 CA LYS L 26 -8.844 20.949 9.723 1.00 10.61 C \ ANISOU 202 CA LYS L 26 1018 1568 1443 -240 -237 -269 C \ ATOM 203 C LYS L 26 -8.267 21.229 8.322 1.00 10.86 C \ ANISOU 203 C LYS L 26 1044 1496 1584 -388 -185 -319 C \ ATOM 204 O LYS L 26 -7.766 22.323 8.031 1.00 11.47 O \ ANISOU 204 O LYS L 26 1273 1509 1576 -267 -177 -375 O \ ATOM 205 CB LYS L 26 -7.769 20.394 10.690 1.00 11.06 C \ ANISOU 205 CB LYS L 26 1094 1586 1522 -118 -341 -159 C \ ATOM 206 CG LYS L 26 -8.266 20.369 12.134 0.50 6.99 C \ ANISOU 206 CG LYS L 26 595 1017 1041 -173 -323 -62 C \ ATOM 207 CD LYS L 26 -7.324 19.627 13.099 0.50 8.66 C \ ANISOU 207 CD LYS L 26 852 1367 1071 -242 -456 -39 C \ ATOM 208 CE LYS L 26 -7.858 19.650 14.537 0.50 9.26 C \ ANISOU 208 CE LYS L 26 1002 1280 1234 -345 -535 33 C \ ATOM 209 NZ LYS L 26 -8.971 18.689 14.735 0.50 8.38 N \ ANISOU 209 NZ LYS L 26 917 1138 1126 -300 -297 -4 N \ ATOM 210 N GLY L 27 -8.216 20.244 7.457 1.00 10.66 N \ ANISOU 210 N GLY L 27 1015 1541 1492 -312 -84 -413 N \ ATOM 211 CA GLY L 27 -7.599 20.415 6.148 1.00 10.77 C \ ANISOU 211 CA GLY L 27 1133 1477 1480 -322 -52 -374 C \ ATOM 212 C GLY L 27 -7.715 19.130 5.382 1.00 9.25 C \ ANISOU 212 C GLY L 27 866 1273 1373 -202 -174 -262 C \ ATOM 213 O GLY L 27 -8.448 18.218 5.781 1.00 9.15 O \ ANISOU 213 O GLY L 27 799 1337 1340 -242 -179 -178 O \ ATOM 214 N GLY L 28 -7.037 19.091 4.242 1.00 9.22 N \ ANISOU 214 N GLY L 28 842 1276 1385 -292 -184 -266 N \ ATOM 215 CA GLY L 28 -7.035 17.877 3.437 1.00 10.01 C \ ANISOU 215 CA GLY L 28 846 1374 1583 -364 -28 -422 C \ ATOM 216 C GLY L 28 -5.963 17.922 2.390 1.00 8.09 C \ ANISOU 216 C GLY L 28 641 1160 1271 -164 -178 -122 C \ ATOM 217 O GLY L 28 -5.354 18.957 2.116 1.00 9.02 O \ ANISOU 217 O GLY L 28 883 1061 1483 -211 -95 -128 O \ ATOM 218 N TYR L 29 -5.738 16.760 1.802 1.00 7.73 N \ ANISOU 218 N TYR L 29 618 1072 1244 -145 -177 -29 N \ ATOM 219 CA TYR L 29 -4.754 16.621 0.734 1.00 7.85 C \ ANISOU 219 CA TYR L 29 738 981 1264 -211 -164 -99 C \ ATOM 220 C TYR L 29 -5.047 15.343 -0.031 1.00 7.43 C \ ANISOU 220 C TYR L 29 607 908 1306 -262 -218 60 C \ ATOM 221 O TYR L 29 -5.713 14.439 0.476 1.00 8.02 O \ ANISOU 221 O TYR L 29 795 925 1325 -281 -161 17 O \ ATOM 222 CB TYR L 29 -3.308 16.618 1.262 1.00 8.49 C \ ANISOU 222 CB TYR L 29 736 1109 1378 -238 -141 5 C \ ATOM 223 CG TYR L 29 -3.109 15.612 2.365 1.00 8.70 C \ ANISOU 223 CG TYR L 29 548 1371 1386 -229 -272 -162 C \ ATOM 224 CD1 TYR L 29 -2.686 14.297 2.094 1.00 8.67 C \ ANISOU 224 CD1 TYR L 29 629 1206 1460 -269 -237 123 C \ ATOM 225 CD2 TYR L 29 -3.383 15.964 3.669 1.00 10.13 C \ ANISOU 225 CD2 TYR L 29 914 1745 1189 -40 -345 -72 C \ ATOM 226 CE1 TYR L 29 -2.539 13.381 3.111 1.00 9.22 C \ ANISOU 226 CE1 TYR L 29 706 1428 1366 -195 -242 40 C \ ATOM 227 CE2 TYR L 29 -3.224 15.063 4.693 1.00 11.32 C \ ANISOU 227 CE2 TYR L 29 1101 1838 1360 165 -145 -76 C \ ATOM 228 CZ TYR L 29 -2.813 13.782 4.417 1.00 10.56 C \ ANISOU 228 CZ TYR L 29 1018 1708 1284 31 -197 347 C \ ATOM 229 OH TYR L 29 -2.662 12.912 5.469 1.00 13.18 O \ ANISOU 229 OH TYR L 29 1344 2156 1505 210 -103 307 O \ ATOM 230 N CYS L 30 -4.534 15.260 -1.235 1.00 7.73 N \ ANISOU 230 N CYS L 30 806 880 1250 -215 -108 -11 N \ ATOM 231 CA CYS L 30 -4.709 14.059 -2.067 1.00 7.94 C \ ANISOU 231 CA CYS L 30 906 828 1279 -212 -134 -30 C \ ATOM 232 C CYS L 30 -3.793 12.931 -1.508 1.00 7.87 C \ ANISOU 232 C CYS L 30 884 881 1222 -290 -39 -57 C \ ATOM 233 O CYS L 30 -2.659 13.152 -1.142 1.00 8.21 O \ ANISOU 233 O CYS L 30 686 963 1468 -316 -201 20 O \ ATOM 234 CB CYS L 30 -4.390 14.366 -3.497 1.00 8.32 C \ ANISOU 234 CB CYS L 30 827 1046 1288 -158 -124 82 C \ ATOM 235 SG CYS L 30 -5.448 15.669 -4.216 1.00 8.58 S \ ANISOU 235 SG CYS L 30 1020 918 1319 -293 -221 36 S \ ATOM 236 N ALA L 31 -4.364 11.728 -1.506 1.00 8.17 N \ ANISOU 236 N ALA L 31 793 817 1494 -254 -160 10 N \ ATOM 237 CA ALA L 31 -3.775 10.657 -0.755 1.00 8.57 C \ ANISOU 237 CA ALA L 31 931 869 1453 -189 -52 34 C \ ATOM 238 C ALA L 31 -4.178 9.306 -1.359 1.00 8.77 C \ ANISOU 238 C ALA L 31 738 903 1691 -318 -28 -20 C \ ATOM 239 O ALA L 31 -4.966 9.225 -2.286 1.00 9.30 O \ ANISOU 239 O ALA L 31 808 928 1797 -315 -18 -123 O \ ATOM 240 CB ALA L 31 -4.228 10.761 0.674 1.00 10.15 C \ ANISOU 240 CB ALA L 31 1274 1025 1556 -34 -133 124 C \ ATOM 241 N LYS L 32 -3.629 8.247 -0.761 1.00 9.32 N \ ANISOU 241 N LYS L 32 941 806 1791 -282 28 62 N \ ATOM 242 CA LYS L 32 -4.108 6.855 -0.976 1.00 10.91 C \ ANISOU 242 CA LYS L 32 972 1055 2118 -444 56 10 C \ ATOM 243 C LYS L 32 -4.089 6.446 -2.417 1.00 10.28 C \ ANISOU 243 C LYS L 32 917 988 1998 -392 -150 20 C \ ATOM 244 O LYS L 32 -4.949 5.672 -2.818 1.00 11.91 O \ ANISOU 244 O LYS L 32 1219 1184 2122 -570 -141 -61 O \ ATOM 245 CB LYS L 32 -5.504 6.683 -0.303 1.00 12.33 C \ ANISOU 245 CB LYS L 32 1328 1086 2270 -481 173 71 C \ ATOM 246 CG LYS L 32 -5.374 6.932 1.302 1.00 17.13 C \ ANISOU 246 CG LYS L 32 1799 1756 2951 -857 727 -374 C \ ATOM 247 CD LYS L 32 -6.644 6.665 1.958 1.00 20.42 C \ ANISOU 247 CD LYS L 32 1696 3153 2908 -530 105 -40 C \ ATOM 248 CE LYS L 32 -6.670 7.059 3.389 1.00 21.95 C \ ANISOU 248 CE LYS L 32 1855 3629 2856 -653 -385 -201 C \ ATOM 249 NZ LYS L 32 -5.540 6.512 4.166 1.00 25.73 N \ ANISOU 249 NZ LYS L 32 2306 3919 3549 -458 -348 286 N \ ATOM 250 N GLY L 33 -3.110 6.922 -3.207 1.00 10.04 N \ ANISOU 250 N GLY L 33 919 1007 1886 -247 -111 -96 N \ ATOM 251 CA GLY L 33 -2.965 6.625 -4.591 1.00 11.15 C \ ANISOU 251 CA GLY L 33 1204 1176 1853 -101 -62 -121 C \ ATOM 252 C GLY L 33 -3.220 7.802 -5.501 1.00 10.56 C \ ANISOU 252 C GLY L 33 969 1246 1795 -378 -46 -187 C \ ATOM 253 O GLY L 33 -3.006 7.695 -6.698 1.00 12.29 O \ ANISOU 253 O GLY L 33 1333 1418 1918 -159 60 -151 O \ ATOM 254 N GLY L 34 -3.689 8.930 -4.932 1.00 9.74 N \ ANISOU 254 N GLY L 34 808 1028 1863 -252 -99 -124 N \ ATOM 255 CA GLY L 34 -3.854 10.167 -5.696 1.00 10.12 C \ ANISOU 255 CA GLY L 34 900 1220 1723 -357 -39 -29 C \ ATOM 256 C GLY L 34 -5.274 10.522 -6.087 1.00 9.05 C \ ANISOU 256 C GLY L 34 857 1009 1571 -374 47 -115 C \ ATOM 257 O GLY L 34 -5.516 11.648 -6.549 1.00 9.52 O \ ANISOU 257 O GLY L 34 983 1041 1592 -412 -22 -15 O \ ATOM 258 N PHE L 35 -6.212 9.587 -5.899 1.00 8.77 N \ ANISOU 258 N PHE L 35 893 1027 1411 -363 -65 -127 N \ ATOM 259 CA PHE L 35 -7.613 9.825 -6.246 1.00 8.99 C \ ANISOU 259 CA PHE L 35 829 1190 1395 -387 -97 -199 C \ ATOM 260 C PHE L 35 -8.482 10.114 -5.039 1.00 9.03 C \ ANISOU 260 C PHE L 35 902 1092 1435 -317 -38 -34 C \ ATOM 261 O PHE L 35 -9.671 10.315 -5.233 1.00 11.49 O \ ANISOU 261 O PHE L 35 927 1857 1580 -192 -20 -25 O \ ATOM 262 CB PHE L 35 -8.205 8.639 -7.045 1.00 10.13 C \ ANISOU 262 CB PHE L 35 1087 1237 1523 -511 -24 -216 C \ ATOM 263 CG PHE L 35 -7.648 8.535 -8.438 1.00 9.63 C \ ANISOU 263 CG PHE L 35 961 1208 1489 -503 -81 -179 C \ ATOM 264 CD1 PHE L 35 -6.578 7.681 -8.691 1.00 11.58 C \ ANISOU 264 CD1 PHE L 35 1292 1426 1680 -332 -120 -158 C \ ATOM 265 CD2 PHE L 35 -8.190 9.293 -9.478 1.00 10.41 C \ ANISOU 265 CD2 PHE L 35 1167 1412 1375 -697 -265 -28 C \ ATOM 266 CE1 PHE L 35 -6.069 7.564 -10.014 1.00 11.76 C \ ANISOU 266 CE1 PHE L 35 1237 1580 1648 -349 -138 -268 C \ ATOM 267 CE2 PHE L 35 -7.676 9.198 -10.771 1.00 11.34 C \ ANISOU 267 CE2 PHE L 35 1285 1514 1508 -599 -123 -178 C \ ATOM 268 CZ PHE L 35 -6.624 8.346 -11.017 1.00 11.81 C \ ANISOU 268 CZ PHE L 35 1283 1534 1666 -453 -214 -168 C \ ATOM 269 N VAL L 36 -7.922 10.085 -3.837 1.00 8.59 N \ ANISOU 269 N VAL L 36 948 948 1365 -360 20 -97 N \ ATOM 270 CA VAL L 36 -8.667 10.299 -2.626 1.00 8.74 C \ ANISOU 270 CA VAL L 36 1001 995 1323 -366 2 -91 C \ ATOM 271 C VAL L 36 -8.332 11.658 -2.042 1.00 8.07 C \ ANISOU 271 C VAL L 36 825 814 1426 -328 -17 -45 C \ ATOM 272 O VAL L 36 -7.187 11.921 -1.715 1.00 8.76 O \ ANISOU 272 O VAL L 36 825 910 1591 -314 -127 -91 O \ ATOM 273 CB VAL L 36 -8.370 9.208 -1.595 1.00 9.34 C \ ANISOU 273 CB VAL L 36 1032 918 1596 -421 -25 -94 C \ ATOM 274 CG1 VAL L 36 -9.017 9.507 -0.256 1.00 10.52 C \ ANISOU 274 CG1 VAL L 36 1429 1232 1336 -341 56 -22 C \ ATOM 275 CG2 VAL L 36 -8.795 7.821 -2.141 1.00 11.19 C \ ANISOU 275 CG2 VAL L 36 1391 1033 1828 -458 168 -84 C \ ATOM 276 N CYS L 37 -9.337 12.519 -1.882 1.00 8.31 N \ ANISOU 276 N CYS L 37 884 982 1290 -254 -139 -75 N \ ATOM 277 CA CYS L 37 -9.181 13.739 -1.104 1.00 7.97 C \ ANISOU 277 CA CYS L 37 740 967 1320 -233 -138 -73 C \ ATOM 278 C CYS L 37 -9.381 13.363 0.338 1.00 8.03 C \ ANISOU 278 C CYS L 37 646 1016 1387 -275 -149 -79 C \ ATOM 279 O CYS L 37 -10.504 13.040 0.747 1.00 9.21 O \ ANISOU 279 O CYS L 37 879 1227 1392 -346 -163 -3 O \ ATOM 280 CB CYS L 37 -10.138 14.818 -1.612 1.00 8.58 C \ ANISOU 280 CB CYS L 37 920 922 1419 -194 -128 -92 C \ ATOM 281 SG CYS L 37 -10.139 16.273 -0.541 1.00 8.42 S \ ANISOU 281 SG CYS L 37 832 988 1378 -224 -104 -39 S \ ATOM 282 N LYS L 38 -8.300 13.318 1.098 1.00 8.41 N \ ANISOU 282 N LYS L 38 897 1024 1271 -215 -116 5 N \ ATOM 283 CA LYS L 38 -8.297 12.882 2.453 1.00 9.00 C \ ANISOU 283 CA LYS L 38 966 1077 1375 -255 -172 38 C \ ATOM 284 C LYS L 38 -8.399 14.096 3.381 1.00 8.59 C \ ANISOU 284 C LYS L 38 838 1178 1245 -252 -113 -20 C \ ATOM 285 O LYS L 38 -7.473 14.901 3.463 1.00 10.78 O \ ANISOU 285 O LYS L 38 1073 1335 1687 -475 45 -266 O \ ATOM 286 CB LYS L 38 -7.029 12.093 2.793 1.00 10.23 C \ ANISOU 286 CB LYS L 38 1302 1291 1291 -9 -187 162 C \ ATOM 287 CG LYS L 38 -6.964 11.671 4.190 1.00 13.15 C \ ANISOU 287 CG LYS L 38 1387 1871 1736 -335 -351 343 C \ ATOM 288 CD LYS L 38 -5.709 11.852 4.799 1.00 23.52 C \ ANISOU 288 CD LYS L 38 2241 4424 2268 237 -438 266 C \ ATOM 289 CE LYS L 38 -5.799 11.850 6.323 1.00 20.46 C \ ANISOU 289 CE LYS L 38 2089 3445 2238 146 -202 159 C \ ATOM 290 NZ LYS L 38 -5.302 10.545 6.751 1.00 20.82 N \ ANISOU 290 NZ LYS L 38 2290 3417 2201 164 245 75 N \ ATOM 291 N CYS L 39 -9.528 14.203 4.081 1.00 9.18 N \ ANISOU 291 N CYS L 39 923 1217 1346 -241 -182 26 N \ ATOM 292 CA CYS L 39 -9.704 15.251 5.067 1.00 9.09 C \ ANISOU 292 CA CYS L 39 922 1283 1246 -222 -142 64 C \ ATOM 293 C CYS L 39 -9.291 14.755 6.436 1.00 10.15 C \ ANISOU 293 C CYS L 39 1193 1292 1369 -235 -129 69 C \ ATOM 294 O CYS L 39 -9.371 13.559 6.731 1.00 12.32 O \ ANISOU 294 O CYS L 39 1746 1496 1439 -317 -270 184 O \ ATOM 295 CB CYS L 39 -11.167 15.690 5.144 1.00 9.88 C \ ANISOU 295 CB CYS L 39 915 1372 1465 -190 -125 90 C \ ATOM 296 SG CYS L 39 -11.921 16.192 3.573 1.00 9.69 S \ ANISOU 296 SG CYS L 39 901 1279 1501 -302 -209 62 S \ ATOM 297 N TYR L 40 -8.848 15.670 7.293 1.00 10.29 N \ ANISOU 297 N TYR L 40 1168 1481 1257 -99 -252 22 N \ ATOM 298 CA TYR L 40 -8.496 15.318 8.688 1.00 11.71 C \ ANISOU 298 CA TYR L 40 1322 1679 1447 22 -298 -60 C \ ATOM 299 C TYR L 40 -8.924 16.428 9.604 1.00 11.27 C \ ANISOU 299 C TYR L 40 1176 1672 1434 -180 -361 32 C \ ATOM 300 O TYR L 40 -9.130 17.546 9.111 1.00 12.24 O \ ANISOU 300 O TYR L 40 1386 1722 1542 -87 -110 -164 O \ ATOM 301 CB TYR L 40 -7.004 15.040 8.850 1.00 13.00 C \ ANISOU 301 CB TYR L 40 1294 1824 1819 126 -368 13 C \ ATOM 302 CG TYR L 40 -6.166 16.232 8.496 1.00 12.12 C \ ANISOU 302 CG TYR L 40 1213 1811 1579 378 -344 -181 C \ ATOM 303 CD1 TYR L 40 -5.776 16.456 7.183 1.00 13.28 C \ ANISOU 303 CD1 TYR L 40 1054 2254 1738 253 -170 -56 C \ ATOM 304 CD2 TYR L 40 -5.782 17.150 9.474 1.00 13.04 C \ ANISOU 304 CD2 TYR L 40 1348 1901 1705 90 -365 -261 C \ ATOM 305 CE1 TYR L 40 -5.056 17.557 6.809 1.00 14.61 C \ ANISOU 305 CE1 TYR L 40 1271 2397 1881 449 -133 -1 C \ ATOM 306 CE2 TYR L 40 -5.042 18.286 9.129 1.00 13.42 C \ ANISOU 306 CE2 TYR L 40 1150 1940 2006 38 -198 -285 C \ ATOM 307 CZ TYR L 40 -4.705 18.498 7.785 1.00 14.88 C \ ANISOU 307 CZ TYR L 40 1199 1970 2484 88 37 162 C \ ATOM 308 OH TYR L 40 -3.998 19.614 7.423 1.00 18.92 O \ ANISOU 308 OH TYR L 40 1443 2417 3328 23 11 86 O \ ATOM 309 OXT TYR L 40 -9.086 16.168 10.819 1.00 13.72 O \ ANISOU 309 OXT TYR L 40 1828 1923 1459 -3 -179 -10 O \ TER 310 TYR L 40 \ HETATM 311 O HOH L 41 -12.189 11.661 -3.022 1.00 9.12 O \ ANISOU 311 O HOH L 41 485 1428 1551 -456 -249 -43 O \ HETATM 312 O HOH L 42 -1.075 15.283 -1.614 1.00 10.41 O \ ANISOU 312 O HOH L 42 872 1227 1855 -269 -93 251 O \ HETATM 313 O HOH L 43 -6.310 6.844 -4.968 1.00 11.61 O \ ANISOU 313 O HOH L 43 1060 1155 2196 -428 -178 103 O \ HETATM 314 O HOH L 44 -13.358 23.433 8.765 1.00 11.52 O \ ANISOU 314 O HOH L 44 1132 1628 1614 -468 -180 -180 O \ HETATM 315 O HOH L 45 -16.602 20.925 -2.200 1.00 12.90 O \ ANISOU 315 O HOH L 45 1179 1208 2514 -106 -366 -135 O \ HETATM 316 O HOH L 46 -20.366 21.557 5.084 1.00 15.85 O \ ANISOU 316 O HOH L 46 1123 1368 3532 -208 -253 360 O \ HETATM 317 O HOH L 47 -11.204 19.528 16.442 1.00 12.97 O \ ANISOU 317 O HOH L 47 1456 1340 2133 -271 -174 29 O \ HETATM 318 O HOH L 48 -7.081 17.898 -10.510 1.00 14.61 O \ ANISOU 318 O HOH L 48 1574 2274 1703 -133 -241 203 O \ HETATM 319 O HOH L 49 -2.876 11.515 -12.443 1.00 14.61 O \ ANISOU 319 O HOH L 49 1436 2077 2035 -506 -10 -690 O \ HETATM 320 O HOH L 50 -3.372 22.737 -5.815 1.00 16.00 O \ ANISOU 320 O HOH L 50 1449 2338 2290 -565 71 -252 O \ HETATM 321 O HOH L 51 -14.534 14.697 1.312 1.00 16.10 O \ ANISOU 321 O HOH L 51 1567 1605 2945 -575 -537 469 O \ HETATM 322 O HOH L 52 -6.148 10.455 -13.979 1.00 15.16 O \ ANISOU 322 O HOH L 52 1722 2026 2009 -511 -94 -211 O \ HETATM 323 O HOH L 53 -9.383 13.639 11.812 1.00 16.15 O \ ANISOU 323 O HOH L 53 1893 2127 2114 -144 -348 171 O \ HETATM 324 O HOH L 54 -8.978 24.245 9.570 1.00 16.77 O \ ANISOU 324 O HOH L 54 2017 1927 2426 -359 -275 -292 O \ HETATM 325 O HOH L 55 -3.458 19.624 4.682 1.00 19.85 O \ ANISOU 325 O HOH L 55 1655 2394 3490 -895 -239 -218 O \ HETATM 326 O HOH L 56 -1.329 21.011 -6.094 1.00 20.51 O \ ANISOU 326 O HOH L 56 2611 2180 3000 -1783 -321 -661 O \ HETATM 327 O HOH L 57 -8.702 24.764 -7.747 1.00 17.72 O \ ANISOU 327 O HOH L 57 2383 2045 2303 -270 -47 161 O \ HETATM 328 O HOH L 58 -6.958 11.040 9.401 1.00 19.60 O \ ANISOU 328 O HOH L 58 1964 2832 2650 -311 -308 598 O \ HETATM 329 O HOH L 59 -2.016 16.565 -14.849 1.00 22.17 O \ ANISOU 329 O HOH L 59 2025 3600 2799 157 48 1245 O \ HETATM 330 O HOH L 60 -11.962 16.560 -9.293 1.00 26.75 O \ ANISOU 330 O HOH L 60 2696 4613 2853 -1557 -325 -411 O \ HETATM 331 O HOH L 61 -15.241 15.811 -6.951 1.00 31.99 O \ ANISOU 331 O HOH L 61 2614 5291 4247 101 -949 -581 O \ HETATM 332 O HOH L 62 -5.613 25.174 -6.820 0.50 12.35 O \ ANISOU 332 O HOH L 62 1422 1243 2026 -329 -747 60 O \ HETATM 333 O HOH L 63 -19.110 19.283 8.406 0.50 12.10 O \ ANISOU 333 O HOH L 63 1001 2141 1452 -805 -246 107 O \ HETATM 334 O HOH L 64 -1.473 19.943 2.484 0.50 12.93 O \ CONECT 25 235 \ CONECT 111 281 \ CONECT 145 296 \ CONECT 235 25 \ CONECT 281 111 \ CONECT 296 145 \ MASTER 275 0 0 1 2 0 0 6 326 1 6 4 \ END \ """, "3e7rchainL") cmd.hide("all") cmd.color('grey70', "3e7rchainL") cmd.show('cartoon', "3e7rchainL") cmd.center("3e7rchainL", state=0, origin=1) cmd.zoom("3e7rchainL", animate=-1) cmd.select("e3e7rL1", "c. L & i. 1-40") cmd.color("red", "e3e7rL1") cmd.disable("e3e7rL1")