cmd.read_pdbstr("""\ HEADER METAL BINDING PROTEIN 24-JAN-10 3LI6 \ TITLE CRYSTAL STRUCTURE AND TRIMER-MONOMER TRANSITION OF N-TERMINAL DOMAIN \ TITLE 2 OF EHCABP1 FROM ENTAMOEBA HISTOLYTICA \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: CALCIUM-BINDING PROTEIN; \ COMPND 3 CHAIN: A, D, G, J; \ COMPND 4 FRAGMENT: N-TERMINAL DOMAIN, RESIDUES 1-66; \ COMPND 5 SYNONYM: CALCIUM BINDING PROTEIN-1, CABP; \ COMPND 6 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: ENTAMOEBA HISTOLYTICA; \ SOURCE 3 ORGANISM_TAXID: 294381; \ SOURCE 4 STRAIN: HM-1:IMSS; \ SOURCE 5 GENE: EHCABP1; \ SOURCE 6 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 7 EXPRESSION_SYSTEM_TAXID: 469008; \ SOURCE 8 EXPRESSION_SYSTEM_STRAIN: BL21(DE3); \ SOURCE 9 EXPRESSION_SYSTEM_VECTOR_TYPE: PLASMID; \ SOURCE 10 EXPRESSION_SYSTEM_PLASMID: PET3C \ KEYWDS CALCIUM BINDING PROTEIN, CALCIUM SIGNALING PROTEIN, ASSEMBLED-DOMAIN, \ KEYWDS 2 FREE ENERGY, DYNAMIC BEHAVIOUR, CYTOSKELETON, METAL BINDING PROTEIN \ EXPDTA X-RAY DIFFRACTION \ AUTHOR S.KUMAR,E.AHMAD,S.KUMAR,M.S.MANSURI,R.H.KHAN,G.SAMUDRALA \ REVDAT 3 01-NOV-23 3LI6 1 REMARK LINK \ REVDAT 2 30-JUN-10 3LI6 1 JRNL \ REVDAT 1 02-FEB-10 3LI6 0 \ JRNL AUTH S.KUMAR,E.AHMAD,M.S.MANSURI,S.KUMAR,R.JAIN,R.H.KHAN, \ JRNL AUTH 2 S.GOURINATH \ JRNL TITL CRYSTAL STRUCTURE AND TRIMER-MONOMER TRANSITION OF \ JRNL TITL 2 N-TERMINAL DOMAIN OF EHCABP1 FROM ENTAMOEBA HISTOLYTICA \ JRNL REF BIOPHYS.J. V. 98 2933 2010 \ JRNL REFN ISSN 0006-3495 \ JRNL PMID 20550906 \ JRNL DOI 10.1016/J.BPJ.2010.03.048 \ REMARK 2 \ REMARK 2 RESOLUTION. 2.50 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : PHENIX 1.5_2 \ 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) : 2.50 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 22.49 \ REMARK 3 MIN(FOBS/SIGMA_FOBS) : 2.010 \ REMARK 3 COMPLETENESS FOR RANGE (%) : 98.8 \ REMARK 3 NUMBER OF REFLECTIONS : 10726 \ REMARK 3 \ REMARK 3 FIT TO DATA USED IN REFINEMENT. \ REMARK 3 R VALUE (WORKING + TEST SET) : 0.234 \ REMARK 3 R VALUE (WORKING SET) : 0.231 \ REMARK 3 FREE R VALUE : 0.287 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 4.800 \ REMARK 3 FREE R VALUE TEST SET COUNT : 515 \ 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 22.4910 - 3.9660 0.98 2521 139 0.1990 0.2340 \ REMARK 3 2 3.9660 - 3.1510 0.99 2569 103 0.2180 0.3180 \ REMARK 3 3 3.1510 - 2.7530 0.99 2540 143 0.2640 0.3630 \ REMARK 3 4 2.7530 - 2.5020 1.00 2581 130 0.2870 0.3250 \ 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 : 0.31 \ REMARK 3 B_SOL : 41.45 \ REMARK 3 \ REMARK 3 ERROR ESTIMATES. \ REMARK 3 COORDINATE ERROR (MAXIMUM-LIKELIHOOD BASED) : 0.410 \ REMARK 3 PHASE ERROR (DEGREES, MAXIMUM-LIKELIHOOD BASED) : NULL \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : 48.87 \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 52.09 \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : -3.67200 \ REMARK 3 B22 (A**2) : -3.67200 \ REMARK 3 B33 (A**2) : 7.34500 \ REMARK 3 B12 (A**2) : 0.00000 \ REMARK 3 B13 (A**2) : 0.00000 \ REMARK 3 B23 (A**2) : 0.00000 \ 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 : 0.010 2031 \ REMARK 3 ANGLE : 1.121 2715 \ REMARK 3 CHIRALITY : 0.067 291 \ REMARK 3 PLANARITY : 0.003 361 \ REMARK 3 DIHEDRAL : 19.312 741 \ REMARK 3 \ REMARK 3 TLS DETAILS \ REMARK 3 NUMBER OF TLS GROUPS : NULL \ 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 3LI6 COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY PDBJ ON 25-JAN-10. \ REMARK 100 THE DEPOSITION ID IS D_1000057307. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 13-APR-09 \ REMARK 200 TEMPERATURE (KELVIN) : 289 \ REMARK 200 PH : 3.6 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : N \ REMARK 200 RADIATION SOURCE : ROTATING ANODE \ REMARK 200 BEAMLINE : NULL \ REMARK 200 X-RAY GENERATOR MODEL : BRUKER AXS MICROSTAR \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 1.54179 \ REMARK 200 MONOCHROMATOR : GRAPHITE \ REMARK 200 OPTICS : MIRRORS \ REMARK 200 \ REMARK 200 DETECTOR TYPE : IMAGE PLATE \ REMARK 200 DETECTOR MANUFACTURER : MAR SCANNER 345 MM PLATE \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : AUTOMAR \ REMARK 200 DATA SCALING SOFTWARE : AUTOMAR \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 10746 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 2.500 \ 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 (%) : 99.0 \ REMARK 200 DATA REDUNDANCY : 3.700 \ REMARK 200 R MERGE (I) : NULL \ REMARK 200 R SYM (I) : 0.04060 \ REMARK 200 FOR THE DATA SET : 10.3000 \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : 2.50 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 2.59 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 99.0 \ REMARK 200 DATA REDUNDANCY IN SHELL : 3.70 \ REMARK 200 R MERGE FOR SHELL (I) : NULL \ REMARK 200 R SYM FOR SHELL (I) : 0.26100 \ REMARK 200 FOR SHELL : 10.30 \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: SINGLE WAVELENGTH \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: MOLECULAR REPLACEMENT \ REMARK 200 SOFTWARE USED: PHASER \ REMARK 200 STARTING MODEL: PDB ENTRY 2NXQ \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 55.28 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 2.75 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: 18% PEG 400, 0.05M NAOAC, 5MM CACL2, \ REMARK 280 10% ISOPROPANOL, PH 3.6, VAPOR DIFFUSION, HANGING DROP, \ REMARK 280 TEMPERATURE 289K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P 3 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -Y,X-Y,Z \ REMARK 290 3555 -X+Y,-X,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 -0.500000 -0.866025 0.000000 0.00000 \ REMARK 290 SMTRY2 2 0.866025 -0.500000 0.000000 0.00000 \ REMARK 290 SMTRY3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 3 -0.500000 0.866025 0.000000 0.00000 \ REMARK 290 SMTRY2 3 -0.866025 -0.500000 0.000000 0.00000 \ REMARK 290 SMTRY3 3 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 \ REMARK 290 REMARK: NULL \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1, 2, 3, 4 \ 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: TRIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TRIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 3570 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 13460 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -23.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A \ 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 350 BIOMT1 2 -0.500000 -0.866025 0.000000 0.00000 \ REMARK 350 BIOMT2 2 0.866025 -0.500000 0.000000 0.00000 \ REMARK 350 BIOMT3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 BIOMT1 3 -0.500000 0.866025 0.000000 0.00000 \ REMARK 350 BIOMT2 3 -0.866025 -0.500000 0.000000 0.00000 \ REMARK 350 BIOMT3 3 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 2 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: TRIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TRIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 3390 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 13880 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -25.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: D \ 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 350 BIOMT1 2 -0.500000 -0.866025 0.000000 -89.58300 \ REMARK 350 BIOMT2 2 0.866025 -0.500000 0.000000 0.00000 \ REMARK 350 BIOMT3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 BIOMT1 3 -0.500000 0.866025 0.000000 -44.79150 \ REMARK 350 BIOMT2 3 -0.866025 -0.500000 0.000000 -77.58115 \ REMARK 350 BIOMT3 3 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 3 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: TRIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TRIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 3400 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 13080 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -23.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: G \ 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 350 BIOMT1 2 -0.500000 -0.866025 0.000000 -89.58300 \ REMARK 350 BIOMT2 2 0.866025 -0.500000 0.000000 0.00000 \ REMARK 350 BIOMT3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 BIOMT1 3 -0.500000 0.866025 0.000000 -44.79150 \ REMARK 350 BIOMT2 3 -0.866025 -0.500000 0.000000 -77.58115 \ REMARK 350 BIOMT3 3 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 4 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: TRIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TRIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 3350 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 13420 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -23.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: J \ 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 350 BIOMT1 2 -0.500000 -0.866025 0.000000 0.00000 \ REMARK 350 BIOMT2 2 0.866025 -0.500000 0.000000 0.00000 \ REMARK 350 BIOMT3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 BIOMT1 3 -0.500000 0.866025 0.000000 0.00000 \ REMARK 350 BIOMT2 3 -0.866025 -0.500000 0.000000 0.00000 \ REMARK 350 BIOMT3 3 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 GLN A 66 \ REMARK 465 MET D 1 \ REMARK 465 MET G 1 \ REMARK 465 GLN G 66 \ REMARK 465 MET J 1 \ REMARK 465 GLN J 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 ILE A 65 CG1 CG2 CD1 \ REMARK 470 GLN D 66 CG CD OE1 NE2 \ REMARK 470 ILE J 65 CG1 CG2 CD1 \ 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 SER J 64 -163.68 -125.93 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 620 \ REMARK 620 METAL COORDINATION \ REMARK 620 (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN IDENTIFIER; \ REMARK 620 SSEQ=SEQUENCE NUMBER; I=INSERTION CODE): \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA A 149 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP A 10 OD1 \ REMARK 620 2 ASN A 12 OD1 75.0 \ REMARK 620 3 ASP A 14 OD1 81.1 73.2 \ REMARK 620 4 ALA A 16 O 83.0 141.9 73.1 \ REMARK 620 5 GLU A 21 OE2 88.0 81.0 153.7 129.4 \ REMARK 620 6 GLU A 21 OE1 106.6 129.8 156.8 86.0 49.5 \ REMARK 620 7 HOH A 71 O 164.1 104.1 83.5 89.0 107.6 86.3 \ REMARK 620 N 1 2 3 4 5 6 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA A 150 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP A 46 OD1 \ REMARK 620 2 ASP A 48 OD1 73.3 \ REMARK 620 3 ASN A 50 OD1 84.3 77.7 \ REMARK 620 4 GLU A 52 O 65.9 131.1 72.6 \ REMARK 620 5 GLU A 57 OE2 85.2 75.6 153.1 124.5 \ REMARK 620 6 GLU A 57 OE1 90.1 124.8 154.1 82.0 50.3 \ REMARK 620 7 HOH A 75 O 158.0 102.4 73.6 105.3 115.2 109.1 \ REMARK 620 N 1 2 3 4 5 6 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA D 149 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP D 10 OD1 \ REMARK 620 2 ASN D 12 OD1 73.8 \ REMARK 620 3 ASP D 14 OD1 85.2 66.5 \ REMARK 620 4 ALA D 16 O 86.9 136.6 73.7 \ REMARK 620 5 GLU D 21 OE2 89.0 86.5 152.9 132.5 \ REMARK 620 6 GLU D 21 OE1 103.4 136.9 156.4 84.8 50.4 \ REMARK 620 7 HOH D 82 O 162.2 96.5 77.1 90.4 105.6 93.9 \ REMARK 620 N 1 2 3 4 5 6 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA D 150 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP D 46 OD1 \ REMARK 620 2 ASP D 48 OD1 88.5 \ REMARK 620 3 ASN D 50 OD1 97.6 70.3 \ REMARK 620 4 GLU D 52 O 75.1 148.9 85.6 \ REMARK 620 5 GLU D 52 OE2 111.4 117.0 48.9 49.8 \ REMARK 620 6 GLU D 57 OE2 112.4 82.5 138.7 128.1 132.1 \ REMARK 620 7 GLU D 57 OE1 107.4 133.3 144.7 77.5 97.9 50.8 \ REMARK 620 8 HOH D 70 O 166.5 92.1 70.0 97.9 56.5 81.0 81.8 \ REMARK 620 N 1 2 3 4 5 6 7 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA G 149 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP G 10 OD1 \ REMARK 620 2 ASN G 12 OD1 78.8 \ REMARK 620 3 ASP G 14 OD1 85.7 70.3 \ REMARK 620 4 ALA G 16 O 87.1 141.0 72.5 \ REMARK 620 5 GLU G 21 OE2 84.8 95.8 164.5 119.1 \ REMARK 620 6 GLU G 21 OE1 102.0 144.6 144.9 73.8 49.7 \ REMARK 620 7 HOH G 81 O 172.2 104.3 88.6 86.1 101.9 79.8 \ REMARK 620 N 1 2 3 4 5 6 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA G 150 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP G 46 OD1 \ REMARK 620 2 ASP G 48 OD1 80.3 \ REMARK 620 3 ASN G 50 OD1 93.4 74.7 \ REMARK 620 4 GLU G 52 O 83.6 145.4 76.0 \ REMARK 620 5 GLU G 52 OE2 140.9 113.2 58.7 64.4 \ REMARK 620 6 GLU G 57 OE2 109.7 82.5 144.2 131.9 108.5 \ REMARK 620 7 GLU G 57 OE1 103.5 131.7 150.3 81.7 94.0 50.5 \ REMARK 620 8 HOH G 67 O 158.6 78.3 79.7 113.8 50.4 68.8 91.8 \ REMARK 620 N 1 2 3 4 5 6 7 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA J 149 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP J 10 OD1 \ REMARK 620 2 ASN J 12 OD1 76.8 \ REMARK 620 3 ASP J 14 OD1 86.6 80.9 \ REMARK 620 4 ALA J 16 O 92.6 152.8 73.4 \ REMARK 620 5 GLU J 21 OE2 84.5 76.4 156.9 128.1 \ REMARK 620 6 GLU J 21 OE1 100.3 125.5 153.6 80.7 49.4 \ REMARK 620 7 HOH J 81 O 171.5 107.5 86.9 80.3 103.5 83.3 \ REMARK 620 N 1 2 3 4 5 6 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CA J 150 CA \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 ASP J 46 OD1 \ REMARK 620 2 ASP J 48 OD1 82.3 \ REMARK 620 3 ASN J 50 OD1 100.8 77.0 \ REMARK 620 4 GLU J 52 O 85.1 149.9 78.8 \ REMARK 620 5 GLU J 57 OE2 94.4 82.0 152.1 126.2 \ REMARK 620 6 GLU J 57 OE1 93.8 131.7 149.7 76.3 50.0 \ REMARK 620 7 HOH J 82 O 167.4 85.5 79.7 107.3 80.5 91.6 \ REMARK 620 N 1 2 3 4 5 6 \ REMARK 800 \ REMARK 800 SITE \ REMARK 800 SITE_IDENTIFIER: AC1 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA A 149 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC2 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA A 150 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC3 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA D 149 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC4 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA D 150 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC5 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA G 149 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC6 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA G 150 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC7 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA J 149 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC8 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CA J 150 \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 2NXQ RELATED DB: PDB \ REMARK 900 FULL-LENGTH PROTEIN WITH C-TERMINAL HALF MISSING \ DBREF 3LI6 A 1 66 UNP P38505 CALBP_ENTHI 1 66 \ DBREF 3LI6 D 1 66 UNP P38505 CALBP_ENTHI 1 66 \ DBREF 3LI6 G 1 66 UNP P38505 CALBP_ENTHI 1 66 \ DBREF 3LI6 J 1 66 UNP P38505 CALBP_ENTHI 1 66 \ SEQRES 1 A 66 MET ALA GLU ALA LEU PHE LYS GLU ILE ASP VAL ASN GLY \ SEQRES 2 A 66 ASP GLY ALA VAL SER TYR GLU GLU VAL LYS ALA PHE VAL \ SEQRES 3 A 66 SER LYS LYS ARG ALA ILE LYS ASN GLU GLN LEU LEU GLN \ SEQRES 4 A 66 LEU ILE PHE LYS SER ILE ASP ALA ASP GLY ASN GLY GLU \ SEQRES 5 A 66 ILE ASP GLN ASN GLU PHE ALA LYS PHE TYR GLY SER ILE \ SEQRES 6 A 66 GLN \ SEQRES 1 D 66 MET ALA GLU ALA LEU PHE LYS GLU ILE ASP VAL ASN GLY \ SEQRES 2 D 66 ASP GLY ALA VAL SER TYR GLU GLU VAL LYS ALA PHE VAL \ SEQRES 3 D 66 SER LYS LYS ARG ALA ILE LYS ASN GLU GLN LEU LEU GLN \ SEQRES 4 D 66 LEU ILE PHE LYS SER ILE ASP ALA ASP GLY ASN GLY GLU \ SEQRES 5 D 66 ILE ASP GLN ASN GLU PHE ALA LYS PHE TYR GLY SER ILE \ SEQRES 6 D 66 GLN \ SEQRES 1 G 66 MET ALA GLU ALA LEU PHE LYS GLU ILE ASP VAL ASN GLY \ SEQRES 2 G 66 ASP GLY ALA VAL SER TYR GLU GLU VAL LYS ALA PHE VAL \ SEQRES 3 G 66 SER LYS LYS ARG ALA ILE LYS ASN GLU GLN LEU LEU GLN \ SEQRES 4 G 66 LEU ILE PHE LYS SER ILE ASP ALA ASP GLY ASN GLY GLU \ SEQRES 5 G 66 ILE ASP GLN ASN GLU PHE ALA LYS PHE TYR GLY SER ILE \ SEQRES 6 G 66 GLN \ SEQRES 1 J 66 MET ALA GLU ALA LEU PHE LYS GLU ILE ASP VAL ASN GLY \ SEQRES 2 J 66 ASP GLY ALA VAL SER TYR GLU GLU VAL LYS ALA PHE VAL \ SEQRES 3 J 66 SER LYS LYS ARG ALA ILE LYS ASN GLU GLN LEU LEU GLN \ SEQRES 4 J 66 LEU ILE PHE LYS SER ILE ASP ALA ASP GLY ASN GLY GLU \ SEQRES 5 J 66 ILE ASP GLN ASN GLU PHE ALA LYS PHE TYR GLY SER ILE \ SEQRES 6 J 66 GLN \ HET CA A 149 1 \ HET CA A 150 1 \ HET CA D 149 1 \ HET CA D 150 1 \ HET CA G 149 1 \ HET CA G 150 1 \ HET CA J 149 1 \ HET CA J 150 1 \ HETNAM CA CALCIUM ION \ FORMUL 5 CA 8(CA 2+) \ FORMUL 13 HOH *64(H2 O) \ HELIX 1 1 GLU A 3 ASP A 10 1 8 \ HELIX 2 2 SER A 18 ASP A 46 1 29 \ HELIX 3 3 ASP A 54 GLY A 63 1 10 \ HELIX 4 4 GLU D 3 ASP D 10 1 8 \ HELIX 5 5 SER D 18 ASP D 46 1 29 \ HELIX 6 6 ASP D 54 GLY D 63 1 10 \ HELIX 7 7 GLU G 3 ASP G 10 1 8 \ HELIX 8 8 SER G 18 ASP G 46 1 29 \ HELIX 9 9 ASP G 54 GLY G 63 1 10 \ HELIX 10 10 GLU J 3 ASP J 10 1 8 \ HELIX 11 11 SER J 18 ASP J 46 1 29 \ HELIX 12 12 ASP J 54 GLY J 63 1 10 \ LINK OD1 ASP A 10 CA CA A 149 1555 1555 2.50 \ LINK OD1 ASN A 12 CA CA A 149 1555 1555 2.49 \ LINK OD1 ASP A 14 CA CA A 149 1555 1555 2.47 \ LINK O ALA A 16 CA CA A 149 1555 1555 2.43 \ LINK OE2 GLU A 21 CA CA A 149 1555 1555 2.58 \ LINK OE1 GLU A 21 CA CA A 149 1555 1555 2.66 \ LINK OD1 ASP A 46 CA CA A 150 1555 1555 2.72 \ LINK OD1 ASP A 48 CA CA A 150 1555 1555 2.52 \ LINK OD1 ASN A 50 CA CA A 150 1555 1555 2.63 \ LINK O GLU A 52 CA CA A 150 1555 1555 2.56 \ LINK OE2 GLU A 57 CA CA A 150 1555 1555 2.56 \ LINK OE1 GLU A 57 CA CA A 150 1555 1555 2.58 \ LINK O HOH A 71 CA CA A 149 1555 1555 2.66 \ LINK O HOH A 75 CA CA A 150 1555 1555 2.92 \ LINK OD1 ASP D 10 CA CA D 149 1555 1555 2.47 \ LINK OD1 ASN D 12 CA CA D 149 1555 1555 2.60 \ LINK OD1 ASP D 14 CA CA D 149 1555 1555 2.42 \ LINK O ALA D 16 CA CA D 149 1555 1555 2.39 \ LINK OE2 GLU D 21 CA CA D 149 1555 1555 2.57 \ LINK OE1 GLU D 21 CA CA D 149 1555 1555 2.61 \ LINK OD1 ASP D 46 CA CA D 150 1555 1555 2.50 \ LINK OD1 ASP D 48 CA CA D 150 1555 1555 2.79 \ LINK OD1 ASN D 50 CA CA D 150 1555 1555 2.52 \ LINK O GLU D 52 CA CA D 150 1555 1555 2.44 \ LINK OE2 GLU D 52 CA CA D 150 1555 1555 3.14 \ LINK OE2 GLU D 57 CA CA D 150 1555 1555 2.52 \ LINK OE1 GLU D 57 CA CA D 150 1555 1555 2.58 \ LINK O HOH D 70 CA CA D 150 1555 1555 2.50 \ LINK O HOH D 82 CA CA D 149 1555 1555 2.53 \ LINK OD1 ASP G 10 CA CA G 149 1555 1555 2.45 \ LINK OD1 ASN G 12 CA CA G 149 1555 1555 2.65 \ LINK OD1 ASP G 14 CA CA G 149 1555 1555 2.48 \ LINK O ALA G 16 CA CA G 149 1555 1555 2.41 \ LINK OE2 GLU G 21 CA CA G 149 1555 1555 2.61 \ LINK OE1 GLU G 21 CA CA G 149 1555 1555 2.62 \ LINK OD1 ASP G 46 CA CA G 150 1555 1555 2.57 \ LINK OD1 ASP G 48 CA CA G 150 1555 1555 2.83 \ LINK OD1 ASN G 50 CA CA G 150 1555 1555 2.63 \ LINK O GLU G 52 CA CA G 150 1555 1555 2.50 \ LINK OE2 GLU G 52 CA CA G 150 1555 1555 3.00 \ LINK OE2 GLU G 57 CA CA G 150 1555 1555 2.54 \ LINK OE1 GLU G 57 CA CA G 150 1555 1555 2.58 \ LINK O HOH G 67 CA CA G 150 1555 1555 2.60 \ LINK O HOH G 81 CA CA G 149 1555 1555 2.48 \ LINK OD1 ASP J 10 CA CA J 149 1555 1555 2.54 \ LINK OD1 ASN J 12 CA CA J 149 1555 1555 2.37 \ LINK OD1 ASP J 14 CA CA J 149 1555 1555 2.50 \ LINK O ALA J 16 CA CA J 149 1555 1555 2.31 \ LINK OE2 GLU J 21 CA CA J 149 1555 1555 2.62 \ LINK OE1 GLU J 21 CA CA J 149 1555 1555 2.67 \ LINK OD1 ASP J 46 CA CA J 150 1555 1555 2.55 \ LINK OD1 ASP J 48 CA CA J 150 1555 1555 2.64 \ LINK OD1 ASN J 50 CA CA J 150 1555 1555 2.56 \ LINK O GLU J 52 CA CA J 150 1555 1555 2.49 \ LINK OE2 GLU J 57 CA CA J 150 1555 1555 2.59 \ LINK OE1 GLU J 57 CA CA J 150 1555 1555 2.59 \ LINK O HOH J 81 CA CA J 149 1555 1555 2.56 \ LINK O HOH J 82 CA CA J 150 1555 1555 2.60 \ CISPEP 1 GLY J 63 SER J 64 0 8.66 \ CISPEP 2 SER J 64 ILE J 65 0 1.23 \ SITE 1 AC1 6 ASP A 10 ASN A 12 ASP A 14 ALA A 16 \ SITE 2 AC1 6 GLU A 21 HOH A 71 \ SITE 1 AC2 7 ASP A 46 ASP A 48 ASN A 50 GLU A 52 \ SITE 2 AC2 7 ASP A 54 GLU A 57 HOH A 75 \ SITE 1 AC3 6 ASP D 10 ASN D 12 ASP D 14 ALA D 16 \ SITE 2 AC3 6 GLU D 21 HOH D 82 \ SITE 1 AC4 6 ASP D 46 ASP D 48 ASN D 50 GLU D 52 \ SITE 2 AC4 6 GLU D 57 HOH D 70 \ SITE 1 AC5 6 ASP G 10 ASN G 12 ASP G 14 ALA G 16 \ SITE 2 AC5 6 GLU G 21 HOH G 81 \ SITE 1 AC6 6 ASP G 46 ASP G 48 ASN G 50 GLU G 52 \ SITE 2 AC6 6 GLU G 57 HOH G 67 \ SITE 1 AC7 6 ASP J 10 ASN J 12 ASP J 14 ALA J 16 \ SITE 2 AC7 6 GLU J 21 HOH J 81 \ SITE 1 AC8 6 ASP J 46 ASP J 48 ASN J 50 GLU J 52 \ SITE 2 AC8 6 GLU J 57 HOH J 82 \ CRYST1 89.583 89.583 35.049 90.00 90.00 120.00 P 3 12 \ 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 0.011163 0.006445 0.000000 0.00000 \ SCALE2 0.000000 0.012890 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.028531 0.00000 \ TER 500 ILE A 65 \ TER 1008 GLN D 66 \ TER 1511 ILE G 65 \ ATOM 1512 N ALA J 2 31.137 -10.576 17.671 1.00 64.79 N \ ATOM 1513 CA ALA J 2 31.312 -9.152 17.963 1.00 63.94 C \ ATOM 1514 C ALA J 2 30.591 -8.262 16.950 1.00 61.78 C \ ATOM 1515 O ALA J 2 30.610 -8.531 15.738 1.00 52.33 O \ ATOM 1516 CB ALA J 2 32.798 -8.789 18.014 1.00 59.53 C \ ATOM 1517 N GLU J 3 29.968 -7.203 17.466 1.00 61.60 N \ ATOM 1518 CA GLU J 3 29.297 -6.183 16.650 1.00 55.00 C \ ATOM 1519 C GLU J 3 28.105 -6.740 15.851 1.00 53.42 C \ ATOM 1520 O GLU J 3 27.707 -6.166 14.834 1.00 54.25 O \ ATOM 1521 CB GLU J 3 30.307 -5.495 15.717 1.00 53.40 C \ ATOM 1522 CG GLU J 3 31.519 -4.891 16.448 1.00 57.12 C \ ATOM 1523 CD GLU J 3 31.139 -3.732 17.381 1.00 67.08 C \ ATOM 1524 OE1 GLU J 3 30.019 -3.180 17.231 1.00 63.20 O \ ATOM 1525 OE2 GLU J 3 31.960 -3.365 18.260 1.00 66.78 O \ ATOM 1526 N ALA J 4 27.525 -7.845 16.311 1.00 49.88 N \ ATOM 1527 CA ALA J 4 26.516 -8.530 15.506 1.00 48.52 C \ ATOM 1528 C ALA J 4 25.132 -7.879 15.563 1.00 47.21 C \ ATOM 1529 O ALA J 4 24.465 -7.770 14.533 1.00 46.26 O \ ATOM 1530 CB ALA J 4 26.437 -9.993 15.865 1.00 43.75 C \ ATOM 1531 N LEU J 5 24.697 -7.468 16.755 1.00 44.51 N \ ATOM 1532 CA LEU J 5 23.497 -6.636 16.868 1.00 46.96 C \ ATOM 1533 C LEU J 5 23.667 -5.316 16.104 1.00 45.88 C \ ATOM 1534 O LEU J 5 22.766 -4.904 15.372 1.00 43.55 O \ ATOM 1535 CB LEU J 5 23.125 -6.340 18.332 1.00 39.40 C \ ATOM 1536 CG LEU J 5 21.837 -5.515 18.426 1.00 45.88 C \ ATOM 1537 CD1 LEU J 5 20.715 -6.171 17.628 1.00 46.60 C \ ATOM 1538 CD2 LEU J 5 21.410 -5.280 19.857 1.00 45.17 C \ ATOM 1539 N PHE J 6 24.821 -4.667 16.289 1.00 43.63 N \ ATOM 1540 CA PHE J 6 25.113 -3.399 15.623 1.00 42.53 C \ ATOM 1541 C PHE J 6 24.958 -3.553 14.119 1.00 42.60 C \ ATOM 1542 O PHE J 6 24.443 -2.660 13.441 1.00 37.86 O \ ATOM 1543 CB PHE J 6 26.528 -2.893 15.951 1.00 37.23 C \ ATOM 1544 CG PHE J 6 26.850 -1.582 15.301 1.00 38.61 C \ ATOM 1545 CD1 PHE J 6 27.424 -1.538 14.037 1.00 41.93 C \ ATOM 1546 CD2 PHE J 6 26.533 -0.385 15.934 1.00 39.08 C \ ATOM 1547 CE1 PHE J 6 27.692 -0.318 13.421 1.00 41.32 C \ ATOM 1548 CE2 PHE J 6 26.797 0.830 15.336 1.00 39.72 C \ ATOM 1549 CZ PHE J 6 27.383 0.868 14.077 1.00 41.00 C \ ATOM 1550 N LYS J 7 25.407 -4.689 13.598 1.00 43.07 N \ ATOM 1551 CA LYS J 7 25.284 -4.963 12.177 1.00 44.05 C \ ATOM 1552 C LYS J 7 23.832 -5.208 11.790 1.00 43.60 C \ ATOM 1553 O LYS J 7 23.437 -4.978 10.647 1.00 43.49 O \ ATOM 1554 CB LYS J 7 26.146 -6.156 11.795 1.00 42.97 C \ ATOM 1555 CG LYS J 7 27.627 -5.842 11.816 1.00 43.88 C \ ATOM 1556 CD LYS J 7 28.426 -7.089 11.524 1.00 45.10 C \ ATOM 1557 CE LYS J 7 27.702 -7.953 10.493 1.00 44.78 C \ ATOM 1558 NZ LYS J 7 28.073 -7.651 9.083 1.00 44.84 N \ ATOM 1559 N GLU J 8 23.038 -5.668 12.748 1.00 41.05 N \ ATOM 1560 CA GLU J 8 21.641 -5.992 12.483 1.00 46.40 C \ ATOM 1561 C GLU J 8 20.800 -4.703 12.343 1.00 46.94 C \ ATOM 1562 O GLU J 8 19.951 -4.580 11.456 1.00 46.07 O \ ATOM 1563 CB GLU J 8 21.108 -6.918 13.583 1.00 45.07 C \ ATOM 1564 CG GLU J 8 19.590 -7.047 13.623 1.00 55.89 C \ ATOM 1565 CD GLU J 8 19.087 -8.045 14.678 1.00 58.38 C \ ATOM 1566 OE1 GLU J 8 19.909 -8.743 15.321 1.00 56.66 O \ ATOM 1567 OE2 GLU J 8 17.851 -8.133 14.853 1.00 62.47 O \ ATOM 1568 N ILE J 9 21.063 -3.736 13.210 1.00 43.44 N \ ATOM 1569 CA ILE J 9 20.412 -2.437 13.127 1.00 39.58 C \ ATOM 1570 C ILE J 9 20.954 -1.616 11.959 1.00 41.41 C \ ATOM 1571 O ILE J 9 20.221 -0.846 11.339 1.00 40.24 O \ ATOM 1572 CB ILE J 9 20.610 -1.660 14.434 1.00 36.43 C \ ATOM 1573 CG1 ILE J 9 20.083 -2.497 15.602 1.00 40.34 C \ ATOM 1574 CG2 ILE J 9 19.924 -0.310 14.352 1.00 35.99 C \ ATOM 1575 CD1 ILE J 9 20.621 -2.093 16.922 1.00 42.40 C \ ATOM 1576 N ASP J 10 22.242 -1.776 11.673 1.00 42.90 N \ ATOM 1577 CA ASP J 10 22.887 -1.009 10.624 1.00 40.17 C \ ATOM 1578 C ASP J 10 22.512 -1.606 9.276 1.00 43.80 C \ ATOM 1579 O ASP J 10 23.306 -2.307 8.651 1.00 46.97 O \ ATOM 1580 CB ASP J 10 24.393 -1.026 10.813 1.00 40.30 C \ ATOM 1581 CG ASP J 10 25.126 -0.365 9.666 1.00 45.10 C \ ATOM 1582 OD1 ASP J 10 24.426 0.333 8.907 1.00 43.11 O \ ATOM 1583 OD2 ASP J 10 26.375 -0.552 9.524 1.00 42.64 O \ ATOM 1584 N VAL J 11 21.299 -1.316 8.828 1.00 41.60 N \ ATOM 1585 CA VAL J 11 20.734 -1.968 7.648 1.00 45.55 C \ ATOM 1586 C VAL J 11 21.447 -1.687 6.306 1.00 46.74 C \ ATOM 1587 O VAL J 11 21.547 -2.580 5.463 1.00 46.81 O \ ATOM 1588 CB VAL J 11 19.226 -1.686 7.545 1.00 45.35 C \ ATOM 1589 CG1 VAL J 11 18.742 -1.789 6.104 1.00 44.70 C \ ATOM 1590 CG2 VAL J 11 18.479 -2.638 8.440 1.00 40.54 C \ ATOM 1591 N ASN J 12 21.947 -0.472 6.100 1.00 38.59 N \ ATOM 1592 CA ASN J 12 22.665 -0.169 4.863 1.00 43.15 C \ ATOM 1593 C ASN J 12 24.172 -0.503 4.946 1.00 48.68 C \ ATOM 1594 O ASN J 12 24.905 -0.391 3.957 1.00 48.03 O \ ATOM 1595 CB ASN J 12 22.442 1.298 4.445 1.00 38.71 C \ ATOM 1596 CG ASN J 12 23.133 2.292 5.381 1.00 49.05 C \ ATOM 1597 OD1 ASN J 12 23.700 1.913 6.400 1.00 52.45 O \ ATOM 1598 ND2 ASN J 12 23.094 3.563 5.026 1.00 47.02 N \ ATOM 1599 N GLY J 13 24.625 -0.890 6.143 1.00 46.29 N \ ATOM 1600 CA GLY J 13 25.984 -1.354 6.359 1.00 44.57 C \ ATOM 1601 C GLY J 13 27.096 -0.331 6.185 1.00 44.94 C \ ATOM 1602 O GLY J 13 28.227 -0.680 5.844 1.00 42.25 O \ ATOM 1603 N ASP J 14 26.782 0.934 6.435 1.00 45.96 N \ ATOM 1604 CA ASP J 14 27.768 1.999 6.321 1.00 43.71 C \ ATOM 1605 C ASP J 14 28.561 2.201 7.620 1.00 46.45 C \ ATOM 1606 O ASP J 14 29.357 3.147 7.730 1.00 46.32 O \ ATOM 1607 CB ASP J 14 27.097 3.311 5.888 1.00 43.57 C \ ATOM 1608 CG ASP J 14 26.245 3.926 6.992 1.00 49.66 C \ ATOM 1609 OD1 ASP J 14 26.060 3.247 8.022 1.00 49.45 O \ ATOM 1610 OD2 ASP J 14 25.777 5.081 6.840 1.00 49.39 O \ ATOM 1611 N GLY J 15 28.338 1.324 8.602 1.00 47.30 N \ ATOM 1612 CA GLY J 15 29.079 1.356 9.863 1.00 44.35 C \ ATOM 1613 C GLY J 15 28.618 2.425 10.836 1.00 42.76 C \ ATOM 1614 O GLY J 15 29.320 2.774 11.789 1.00 39.31 O \ ATOM 1615 N ALA J 16 27.417 2.941 10.585 1.00 47.30 N \ ATOM 1616 CA ALA J 16 26.838 4.016 11.383 1.00 47.75 C \ ATOM 1617 C ALA J 16 25.373 3.729 11.534 1.00 38.70 C \ ATOM 1618 O ALA J 16 24.722 3.411 10.564 1.00 38.39 O \ ATOM 1619 CB ALA J 16 27.036 5.354 10.701 1.00 43.38 C \ ATOM 1620 N VAL J 17 24.861 3.813 12.753 1.00 40.40 N \ ATOM 1621 CA VAL J 17 23.438 3.606 12.984 1.00 40.45 C \ ATOM 1622 C VAL J 17 22.719 4.964 12.969 1.00 43.27 C \ ATOM 1623 O VAL J 17 23.005 5.866 13.785 1.00 42.44 O \ ATOM 1624 CB VAL J 17 23.173 2.821 14.278 1.00 37.04 C \ ATOM 1625 CG1 VAL J 17 21.727 2.929 14.669 1.00 39.49 C \ ATOM 1626 CG2 VAL J 17 23.559 1.359 14.096 1.00 36.70 C \ ATOM 1627 N SER J 18 21.827 5.116 11.992 1.00 41.38 N \ ATOM 1628 CA SER J 18 21.095 6.368 11.787 1.00 43.66 C \ ATOM 1629 C SER J 18 19.818 6.361 12.609 1.00 40.81 C \ ATOM 1630 O SER J 18 19.417 5.325 13.139 1.00 42.56 O \ ATOM 1631 CB SER J 18 20.727 6.527 10.312 1.00 39.60 C \ ATOM 1632 OG SER J 18 19.708 5.599 9.943 1.00 40.12 O \ ATOM 1633 N TYR J 19 19.158 7.504 12.694 1.00 42.97 N \ ATOM 1634 CA TYR J 19 17.871 7.554 13.373 1.00 41.42 C \ ATOM 1635 C TYR J 19 16.820 6.681 12.665 1.00 41.17 C \ ATOM 1636 O TYR J 19 15.991 6.039 13.305 1.00 43.27 O \ ATOM 1637 CB TYR J 19 17.364 8.990 13.505 1.00 41.83 C \ ATOM 1638 CG TYR J 19 15.945 9.013 13.999 1.00 46.92 C \ ATOM 1639 CD1 TYR J 19 15.664 8.904 15.354 1.00 46.39 C \ ATOM 1640 CD2 TYR J 19 14.880 9.077 13.107 1.00 44.35 C \ ATOM 1641 CE1 TYR J 19 14.371 8.897 15.806 1.00 48.35 C \ ATOM 1642 CE2 TYR J 19 13.578 9.063 13.550 1.00 43.42 C \ ATOM 1643 CZ TYR J 19 13.327 8.975 14.898 1.00 48.37 C \ ATOM 1644 OH TYR J 19 12.024 8.966 15.343 1.00 50.75 O \ ATOM 1645 N GLU J 20 16.851 6.647 11.346 1.00 38.99 N \ ATOM 1646 CA GLU J 20 15.885 5.838 10.631 1.00 42.87 C \ ATOM 1647 C GLU J 20 16.020 4.348 10.984 1.00 42.97 C \ ATOM 1648 O GLU J 20 15.019 3.660 11.170 1.00 43.72 O \ ATOM 1649 CB GLU J 20 16.035 6.042 9.123 1.00 49.32 C \ ATOM 1650 CG GLU J 20 15.134 5.134 8.283 1.00 57.06 C \ ATOM 1651 CD GLU J 20 15.680 4.871 6.879 1.00 63.19 C \ ATOM 1652 OE1 GLU J 20 16.899 4.650 6.745 1.00 67.76 O \ ATOM 1653 OE2 GLU J 20 14.893 4.872 5.906 1.00 61.52 O \ ATOM 1654 N GLU J 21 17.257 3.859 11.069 1.00 42.44 N \ ATOM 1655 CA GLU J 21 17.511 2.440 11.291 1.00 38.53 C \ ATOM 1656 C GLU J 21 17.096 2.054 12.688 1.00 42.73 C \ ATOM 1657 O GLU J 21 16.605 0.951 12.925 1.00 42.26 O \ ATOM 1658 CB GLU J 21 18.979 2.128 11.099 1.00 39.69 C \ ATOM 1659 CG GLU J 21 19.366 2.019 9.644 1.00 43.44 C \ ATOM 1660 CD GLU J 21 20.855 2.183 9.397 1.00 42.53 C \ ATOM 1661 OE1 GLU J 21 21.563 2.792 10.239 1.00 39.84 O \ ATOM 1662 OE2 GLU J 21 21.298 1.712 8.329 1.00 42.30 O \ ATOM 1663 N VAL J 22 17.313 2.972 13.620 1.00 39.11 N \ ATOM 1664 CA VAL J 22 16.855 2.777 14.976 1.00 37.89 C \ ATOM 1665 C VAL J 22 15.344 2.643 14.983 1.00 42.64 C \ ATOM 1666 O VAL J 22 14.781 1.705 15.557 1.00 44.19 O \ ATOM 1667 CB VAL J 22 17.211 3.986 15.823 1.00 44.47 C \ ATOM 1668 CG1 VAL J 22 16.509 3.902 17.182 1.00 38.49 C \ ATOM 1669 CG2 VAL J 22 18.741 4.122 15.950 1.00 36.24 C \ ATOM 1670 N LYS J 23 14.684 3.605 14.345 1.00 45.71 N \ ATOM 1671 CA LYS J 23 13.235 3.599 14.253 1.00 42.83 C \ ATOM 1672 C LYS J 23 12.780 2.255 13.728 1.00 44.77 C \ ATOM 1673 O LYS J 23 11.912 1.609 14.310 1.00 48.74 O \ ATOM 1674 CB LYS J 23 12.767 4.706 13.317 1.00 45.98 C \ ATOM 1675 CG LYS J 23 11.275 4.899 13.320 1.00 48.54 C \ ATOM 1676 CD LYS J 23 10.889 5.977 12.339 1.00 55.41 C \ ATOM 1677 CE LYS J 23 9.397 6.277 12.400 1.00 64.19 C \ ATOM 1678 NZ LYS J 23 9.018 7.418 11.501 1.00 63.43 N \ ATOM 1679 N ALA J 24 13.396 1.832 12.629 1.00 42.77 N \ ATOM 1680 CA ALA J 24 12.972 0.643 11.922 1.00 39.94 C \ ATOM 1681 C ALA J 24 13.221 -0.583 12.764 1.00 45.56 C \ ATOM 1682 O ALA J 24 12.505 -1.576 12.653 1.00 49.90 O \ ATOM 1683 CB ALA J 24 13.703 0.531 10.621 1.00 40.66 C \ ATOM 1684 N PHE J 25 14.249 -0.519 13.600 1.00 43.26 N \ ATOM 1685 CA PHE J 25 14.628 -1.660 14.404 1.00 41.66 C \ ATOM 1686 C PHE J 25 13.658 -1.833 15.552 1.00 46.03 C \ ATOM 1687 O PHE J 25 13.290 -2.958 15.900 1.00 45.55 O \ ATOM 1688 CB PHE J 25 16.037 -1.484 14.935 1.00 38.39 C \ ATOM 1689 CG PHE J 25 16.453 -2.537 15.902 1.00 43.07 C \ ATOM 1690 CD1 PHE J 25 16.463 -2.279 17.268 1.00 43.00 C \ ATOM 1691 CD2 PHE J 25 16.860 -3.788 15.451 1.00 49.19 C \ ATOM 1692 CE1 PHE J 25 16.871 -3.253 18.173 1.00 47.63 C \ ATOM 1693 CE2 PHE J 25 17.265 -4.781 16.352 1.00 51.06 C \ ATOM 1694 CZ PHE J 25 17.269 -4.514 17.714 1.00 47.12 C \ ATOM 1695 N VAL J 26 13.234 -0.717 16.135 1.00 44.29 N \ ATOM 1696 CA VAL J 26 12.307 -0.763 17.261 1.00 46.58 C \ ATOM 1697 C VAL J 26 10.926 -1.302 16.862 1.00 46.88 C \ ATOM 1698 O VAL J 26 10.252 -1.952 17.653 1.00 51.54 O \ ATOM 1699 CB VAL J 26 12.196 0.618 17.971 1.00 48.59 C \ ATOM 1700 CG1 VAL J 26 11.018 0.654 18.911 1.00 48.30 C \ ATOM 1701 CG2 VAL J 26 13.466 0.924 18.724 1.00 44.24 C \ ATOM 1702 N SER J 27 10.511 -1.058 15.628 1.00 48.14 N \ ATOM 1703 CA SER J 27 9.248 -1.619 15.156 1.00 51.62 C \ ATOM 1704 C SER J 27 9.398 -3.114 14.916 1.00 51.46 C \ ATOM 1705 O SER J 27 8.522 -3.907 15.272 1.00 54.12 O \ ATOM 1706 CB SER J 27 8.794 -0.933 13.872 1.00 50.92 C \ ATOM 1707 OG SER J 27 9.033 0.461 13.959 1.00 63.24 O \ ATOM 1708 N LYS J 28 10.515 -3.492 14.306 1.00 48.97 N \ ATOM 1709 CA LYS J 28 10.810 -4.889 14.071 1.00 47.82 C \ ATOM 1710 C LYS J 28 10.796 -5.662 15.386 1.00 54.52 C \ ATOM 1711 O LYS J 28 10.286 -6.790 15.456 1.00 53.18 O \ ATOM 1712 CB LYS J 28 12.166 -5.034 13.394 1.00 49.38 C \ ATOM 1713 CG LYS J 28 12.426 -6.425 12.859 1.00 53.22 C \ ATOM 1714 CD LYS J 28 13.741 -6.474 12.114 1.00 52.46 C \ ATOM 1715 CE LYS J 28 14.877 -6.049 13.021 1.00 54.66 C \ ATOM 1716 NZ LYS J 28 14.909 -6.836 14.291 1.00 57.63 N \ ATOM 1717 N LYS J 29 11.361 -5.051 16.425 1.00 52.58 N \ ATOM 1718 CA LYS J 29 11.341 -5.646 17.754 1.00 47.51 C \ ATOM 1719 C LYS J 29 9.901 -5.813 18.231 1.00 49.68 C \ ATOM 1720 O LYS J 29 9.492 -6.914 18.596 1.00 52.95 O \ ATOM 1721 CB LYS J 29 12.156 -4.808 18.753 1.00 55.64 C \ ATOM 1722 CG LYS J 29 13.602 -5.275 18.954 1.00 54.75 C \ ATOM 1723 CD LYS J 29 14.404 -4.307 19.841 1.00 62.09 C \ ATOM 1724 CE LYS J 29 13.884 -4.222 21.280 1.00 68.60 C \ ATOM 1725 NZ LYS J 29 14.258 -2.917 21.929 1.00 72.04 N \ ATOM 1726 N ARG J 30 9.126 -4.730 18.220 1.00 50.55 N \ ATOM 1727 CA ARG J 30 7.737 -4.804 18.681 1.00 51.52 C \ ATOM 1728 C ARG J 30 7.001 -5.979 18.031 1.00 53.18 C \ ATOM 1729 O ARG J 30 6.400 -6.805 18.718 1.00 54.08 O \ ATOM 1730 CB ARG J 30 6.964 -3.510 18.384 1.00 57.51 C \ ATOM 1731 CG ARG J 30 7.444 -2.272 19.119 1.00 59.34 C \ ATOM 1732 CD ARG J 30 6.368 -1.160 19.167 1.00 65.32 C \ ATOM 1733 NE ARG J 30 6.963 0.162 19.384 1.00 70.21 N \ ATOM 1734 CZ ARG J 30 7.582 0.536 20.506 1.00 72.05 C \ ATOM 1735 NH1 ARG J 30 7.683 -0.314 21.526 1.00 69.42 N \ ATOM 1736 NH2 ARG J 30 8.110 1.755 20.609 1.00 65.34 N \ ATOM 1737 N ALA J 31 7.051 -6.047 16.702 1.00 49.47 N \ ATOM 1738 CA ALA J 31 6.314 -7.065 15.958 1.00 51.84 C \ ATOM 1739 C ALA J 31 6.788 -8.485 16.245 1.00 51.87 C \ ATOM 1740 O ALA J 31 5.977 -9.398 16.287 1.00 55.39 O \ ATOM 1741 CB ALA J 31 6.365 -6.786 14.462 1.00 47.45 C \ ATOM 1742 N ILE J 32 8.091 -8.681 16.416 1.00 50.65 N \ ATOM 1743 CA ILE J 32 8.621 -10.006 16.721 1.00 52.61 C \ ATOM 1744 C ILE J 32 8.114 -10.446 18.087 1.00 55.53 C \ ATOM 1745 O ILE J 32 7.783 -11.605 18.290 1.00 54.21 O \ ATOM 1746 CB ILE J 32 10.178 -10.022 16.748 1.00 59.88 C \ ATOM 1747 CG1 ILE J 32 10.772 -10.091 15.336 1.00 55.21 C \ ATOM 1748 CG2 ILE J 32 10.701 -11.195 17.581 1.00 52.76 C \ ATOM 1749 CD1 ILE J 32 12.295 -9.867 15.318 1.00 48.72 C \ ATOM 1750 N LYS J 33 8.067 -9.511 19.030 1.00 54.06 N \ ATOM 1751 CA LYS J 33 7.639 -9.842 20.376 1.00 53.95 C \ ATOM 1752 C LYS J 33 6.126 -10.102 20.409 1.00 57.64 C \ ATOM 1753 O LYS J 33 5.631 -10.908 21.205 1.00 57.79 O \ ATOM 1754 CB LYS J 33 8.032 -8.730 21.342 1.00 55.14 C \ ATOM 1755 CG LYS J 33 7.851 -9.092 22.812 1.00 61.25 C \ ATOM 1756 CD LYS J 33 6.648 -8.393 23.444 1.00 61.15 C \ ATOM 1757 CE LYS J 33 7.022 -7.848 24.822 1.00 60.97 C \ ATOM 1758 NZ LYS J 33 7.702 -8.896 25.624 1.00 63.20 N \ ATOM 1759 N ASN J 34 5.400 -9.419 19.532 1.00 55.89 N \ ATOM 1760 CA ASN J 34 3.976 -9.660 19.359 1.00 53.91 C \ ATOM 1761 C ASN J 34 3.730 -11.017 18.684 1.00 56.03 C \ ATOM 1762 O ASN J 34 2.793 -11.732 19.033 1.00 49.73 O \ ATOM 1763 CB ASN J 34 3.363 -8.539 18.532 1.00 50.74 C \ ATOM 1764 CG ASN J 34 1.886 -8.353 18.812 1.00 74.27 C \ ATOM 1765 OD1 ASN J 34 1.506 -7.497 19.618 1.00 77.75 O \ ATOM 1766 ND2 ASN J 34 1.038 -9.159 18.154 1.00 68.49 N \ ATOM 1767 N GLU J 35 4.581 -11.356 17.716 1.00 54.47 N \ ATOM 1768 CA GLU J 35 4.545 -12.646 17.039 1.00 46.18 C \ ATOM 1769 C GLU J 35 4.778 -13.772 18.007 1.00 48.45 C \ ATOM 1770 O GLU J 35 4.322 -14.883 17.782 1.00 54.86 O \ ATOM 1771 CB GLU J 35 5.647 -12.722 15.984 1.00 51.72 C \ ATOM 1772 CG GLU J 35 5.246 -12.277 14.595 1.00 59.61 C \ ATOM 1773 CD GLU J 35 4.157 -13.146 13.992 1.00 65.14 C \ ATOM 1774 OE1 GLU J 35 4.428 -14.344 13.718 1.00 62.87 O \ ATOM 1775 OE2 GLU J 35 3.034 -12.624 13.790 1.00 59.33 O \ ATOM 1776 N GLN J 36 5.517 -13.498 19.074 1.00 53.57 N \ ATOM 1777 CA GLN J 36 5.913 -14.550 20.014 1.00 55.21 C \ ATOM 1778 C GLN J 36 4.911 -14.770 21.160 1.00 51.97 C \ ATOM 1779 O GLN J 36 4.630 -15.906 21.549 1.00 50.88 O \ ATOM 1780 CB GLN J 36 7.337 -14.303 20.534 1.00 54.39 C \ ATOM 1781 CG GLN J 36 8.383 -14.228 19.413 1.00 60.27 C \ ATOM 1782 CD GLN J 36 9.780 -14.591 19.883 1.00 68.23 C \ ATOM 1783 OE1 GLN J 36 10.617 -13.719 20.114 1.00 65.97 O \ ATOM 1784 NE2 GLN J 36 10.038 -15.889 20.024 1.00 73.76 N \ ATOM 1785 N LEU J 37 4.373 -13.678 21.691 1.00 54.54 N \ ATOM 1786 CA LEU J 37 3.281 -13.761 22.647 1.00 51.56 C \ ATOM 1787 C LEU J 37 2.103 -14.495 21.994 1.00 55.56 C \ ATOM 1788 O LEU J 37 1.609 -15.499 22.520 1.00 56.62 O \ ATOM 1789 CB LEU J 37 2.863 -12.361 23.101 1.00 54.78 C \ ATOM 1790 CG LEU J 37 1.747 -12.275 24.148 1.00 62.81 C \ ATOM 1791 CD1 LEU J 37 2.360 -12.420 25.536 1.00 58.13 C \ ATOM 1792 CD2 LEU J 37 0.936 -10.975 24.026 1.00 54.58 C \ ATOM 1793 N LEU J 38 1.688 -13.999 20.832 1.00 51.67 N \ ATOM 1794 CA LEU J 38 0.564 -14.549 20.092 1.00 51.54 C \ ATOM 1795 C LEU J 38 0.791 -16.009 19.710 1.00 57.07 C \ ATOM 1796 O LEU J 38 -0.151 -16.813 19.694 1.00 58.09 O \ ATOM 1797 CB LEU J 38 0.342 -13.721 18.828 1.00 54.31 C \ ATOM 1798 CG LEU J 38 -1.058 -13.572 18.225 1.00 56.09 C \ ATOM 1799 CD1 LEU J 38 -1.204 -12.172 17.642 1.00 51.18 C \ ATOM 1800 CD2 LEU J 38 -1.327 -14.634 17.164 1.00 51.07 C \ ATOM 1801 N GLN J 39 2.035 -16.356 19.383 1.00 52.36 N \ ATOM 1802 CA GLN J 39 2.330 -17.702 18.913 1.00 49.53 C \ ATOM 1803 C GLN J 39 2.269 -18.672 20.081 1.00 54.82 C \ ATOM 1804 O GLN J 39 1.935 -19.855 19.912 1.00 56.22 O \ ATOM 1805 CB GLN J 39 3.702 -17.753 18.237 1.00 52.16 C \ ATOM 1806 CG GLN J 39 4.087 -19.132 17.669 1.00 56.44 C \ ATOM 1807 CD GLN J 39 3.564 -19.369 16.254 1.00 53.57 C \ ATOM 1808 OE1 GLN J 39 3.665 -18.490 15.393 1.00 56.65 O \ ATOM 1809 NE2 GLN J 39 3.010 -20.559 16.006 1.00 49.51 N \ ATOM 1810 N LEU J 40 2.583 -18.154 21.266 1.00 54.28 N \ ATOM 1811 CA LEU J 40 2.617 -18.949 22.496 1.00 59.23 C \ ATOM 1812 C LEU J 40 1.202 -19.271 23.009 1.00 57.94 C \ ATOM 1813 O LEU J 40 0.930 -20.390 23.464 1.00 59.71 O \ ATOM 1814 CB LEU J 40 3.447 -18.225 23.572 1.00 61.85 C \ ATOM 1815 CG LEU J 40 3.939 -19.041 24.776 1.00 61.03 C \ ATOM 1816 CD1 LEU J 40 4.563 -20.354 24.328 1.00 62.83 C \ ATOM 1817 CD2 LEU J 40 4.906 -18.246 25.632 1.00 54.77 C \ ATOM 1818 N ILE J 41 0.317 -18.281 22.935 1.00 55.10 N \ ATOM 1819 CA ILE J 41 -1.104 -18.458 23.215 1.00 52.15 C \ ATOM 1820 C ILE J 41 -1.727 -19.447 22.241 1.00 53.50 C \ ATOM 1821 O ILE J 41 -2.528 -20.287 22.631 1.00 55.45 O \ ATOM 1822 CB ILE J 41 -1.861 -17.125 23.043 1.00 59.91 C \ ATOM 1823 CG1 ILE J 41 -1.282 -16.041 23.958 1.00 59.54 C \ ATOM 1824 CG2 ILE J 41 -3.374 -17.312 23.256 1.00 60.37 C \ ATOM 1825 CD1 ILE J 41 -1.994 -14.686 23.828 1.00 65.08 C \ ATOM 1826 N PHE J 42 -1.387 -19.333 20.959 1.00 52.83 N \ ATOM 1827 CA PHE J 42 -1.895 -20.288 19.983 1.00 54.16 C \ ATOM 1828 C PHE J 42 -1.406 -21.670 20.350 1.00 54.71 C \ ATOM 1829 O PHE J 42 -2.153 -22.645 20.324 1.00 53.04 O \ ATOM 1830 CB PHE J 42 -1.409 -19.959 18.578 1.00 49.35 C \ ATOM 1831 CG PHE J 42 -1.931 -20.892 17.517 1.00 43.26 C \ ATOM 1832 CD1 PHE J 42 -3.050 -20.555 16.766 1.00 40.83 C \ ATOM 1833 CD2 PHE J 42 -1.300 -22.096 17.261 1.00 45.14 C \ ATOM 1834 CE1 PHE J 42 -3.536 -21.410 15.781 1.00 41.40 C \ ATOM 1835 CE2 PHE J 42 -1.781 -22.955 16.279 1.00 44.89 C \ ATOM 1836 CZ PHE J 42 -2.895 -22.608 15.537 1.00 40.42 C \ ATOM 1837 N LYS J 43 -0.130 -21.748 20.681 1.00 54.43 N \ ATOM 1838 CA LYS J 43 0.465 -23.027 20.996 1.00 60.21 C \ ATOM 1839 C LYS J 43 -0.257 -23.636 22.198 1.00 59.74 C \ ATOM 1840 O LYS J 43 -0.278 -24.857 22.363 1.00 57.37 O \ ATOM 1841 CB LYS J 43 1.957 -22.855 21.291 1.00 61.78 C \ ATOM 1842 CG LYS J 43 2.775 -24.090 20.982 1.00 67.95 C \ ATOM 1843 CD LYS J 43 4.051 -24.136 21.815 1.00 79.26 C \ ATOM 1844 CE LYS J 43 3.748 -24.488 23.274 1.00 75.19 C \ ATOM 1845 NZ LYS J 43 5.003 -24.623 24.084 1.00 72.93 N \ ATOM 1846 N SER J 44 -0.843 -22.769 23.027 1.00 57.05 N \ ATOM 1847 CA SER J 44 -1.461 -23.174 24.289 1.00 56.13 C \ ATOM 1848 C SER J 44 -2.899 -23.654 24.074 1.00 64.58 C \ ATOM 1849 O SER J 44 -3.359 -24.630 24.703 1.00 60.72 O \ ATOM 1850 CB SER J 44 -1.429 -22.007 25.277 1.00 56.17 C \ ATOM 1851 OG SER J 44 -2.363 -22.174 26.328 1.00 59.97 O \ ATOM 1852 N ILE J 45 -3.609 -22.965 23.183 1.00 56.01 N \ ATOM 1853 CA ILE J 45 -4.937 -23.408 22.801 1.00 53.83 C \ ATOM 1854 C ILE J 45 -4.857 -24.666 21.934 1.00 53.68 C \ ATOM 1855 O ILE J 45 -5.673 -25.572 22.067 1.00 52.90 O \ ATOM 1856 CB ILE J 45 -5.726 -22.307 22.072 1.00 54.54 C \ ATOM 1857 CG1 ILE J 45 -5.860 -21.061 22.954 1.00 51.13 C \ ATOM 1858 CG2 ILE J 45 -7.101 -22.819 21.678 1.00 50.64 C \ ATOM 1859 CD1 ILE J 45 -6.395 -19.834 22.211 1.00 47.27 C \ ATOM 1860 N ASP J 46 -3.859 -24.727 21.059 1.00 55.92 N \ ATOM 1861 CA ASP J 46 -3.682 -25.877 20.174 1.00 53.96 C \ ATOM 1862 C ASP J 46 -3.232 -27.144 20.933 1.00 62.81 C \ ATOM 1863 O ASP J 46 -2.166 -27.702 20.657 1.00 61.73 O \ ATOM 1864 CB ASP J 46 -2.692 -25.536 19.055 1.00 55.99 C \ ATOM 1865 CG ASP J 46 -2.508 -26.678 18.073 1.00 58.96 C \ ATOM 1866 OD1 ASP J 46 -3.236 -27.676 18.195 1.00 60.06 O \ ATOM 1867 OD2 ASP J 46 -1.636 -26.587 17.183 1.00 59.98 O \ ATOM 1868 N ALA J 47 -4.062 -27.596 21.875 1.00 64.12 N \ ATOM 1869 CA ALA J 47 -3.735 -28.715 22.764 1.00 59.90 C \ ATOM 1870 C ALA J 47 -3.007 -29.862 22.076 1.00 66.87 C \ ATOM 1871 O ALA J 47 -1.883 -30.195 22.447 1.00 73.70 O \ ATOM 1872 CB ALA J 47 -4.992 -29.236 23.449 1.00 55.95 C \ ATOM 1873 N ASP J 48 -3.647 -30.476 21.088 1.00 62.23 N \ ATOM 1874 CA ASP J 48 -3.077 -31.650 20.434 1.00 62.45 C \ ATOM 1875 C ASP J 48 -1.889 -31.315 19.518 1.00 66.37 C \ ATOM 1876 O ASP J 48 -1.340 -32.192 18.848 1.00 70.53 O \ ATOM 1877 CB ASP J 48 -4.161 -32.432 19.685 1.00 60.98 C \ ATOM 1878 CG ASP J 48 -4.377 -31.942 18.267 1.00 62.55 C \ ATOM 1879 OD1 ASP J 48 -3.635 -31.051 17.812 1.00 63.14 O \ ATOM 1880 OD2 ASP J 48 -5.294 -32.463 17.593 1.00 67.02 O \ ATOM 1881 N GLY J 49 -1.511 -30.042 19.484 1.00 61.50 N \ ATOM 1882 CA GLY J 49 -0.321 -29.610 18.777 1.00 61.03 C \ ATOM 1883 C GLY J 49 -0.224 -29.913 17.295 1.00 59.89 C \ ATOM 1884 O GLY J 49 0.869 -29.857 16.739 1.00 63.87 O \ ATOM 1885 N ASN J 50 -1.352 -30.201 16.649 1.00 61.72 N \ ATOM 1886 CA ASN J 50 -1.360 -30.528 15.219 1.00 59.96 C \ ATOM 1887 C ASN J 50 -1.411 -29.307 14.280 1.00 60.23 C \ ATOM 1888 O ASN J 50 -1.655 -29.450 13.073 1.00 57.64 O \ ATOM 1889 CB ASN J 50 -2.473 -31.536 14.884 1.00 59.42 C \ ATOM 1890 CG ASN J 50 -3.817 -30.874 14.642 1.00 59.09 C \ ATOM 1891 OD1 ASN J 50 -3.994 -29.690 14.898 1.00 57.84 O \ ATOM 1892 ND2 ASN J 50 -4.770 -31.645 14.141 1.00 58.45 N \ ATOM 1893 N GLY J 51 -1.189 -28.116 14.837 1.00 55.27 N \ ATOM 1894 CA GLY J 51 -1.005 -26.916 14.033 1.00 60.14 C \ ATOM 1895 C GLY J 51 -2.235 -26.079 13.688 1.00 64.93 C \ ATOM 1896 O GLY J 51 -2.126 -25.011 13.062 1.00 59.57 O \ ATOM 1897 N GLU J 52 -3.410 -26.551 14.087 1.00 57.10 N \ ATOM 1898 CA GLU J 52 -4.634 -25.847 13.761 1.00 54.33 C \ ATOM 1899 C GLU J 52 -5.564 -25.994 14.945 1.00 53.34 C \ ATOM 1900 O GLU J 52 -5.439 -26.943 15.696 1.00 57.09 O \ ATOM 1901 CB GLU J 52 -5.239 -26.453 12.510 1.00 54.71 C \ ATOM 1902 CG GLU J 52 -5.467 -27.939 12.637 1.00 61.85 C \ ATOM 1903 CD GLU J 52 -6.831 -28.255 13.236 1.00 66.60 C \ ATOM 1904 OE1 GLU J 52 -7.766 -27.471 12.942 1.00 64.02 O \ ATOM 1905 OE2 GLU J 52 -6.971 -29.266 13.988 1.00 66.54 O \ ATOM 1906 N ILE J 53 -6.475 -25.055 15.143 1.00 48.83 N \ ATOM 1907 CA ILE J 53 -7.387 -25.152 16.286 1.00 46.30 C \ ATOM 1908 C ILE J 53 -8.756 -25.647 15.832 1.00 45.36 C \ ATOM 1909 O ILE J 53 -9.435 -24.978 15.055 1.00 46.43 O \ ATOM 1910 CB ILE J 53 -7.479 -23.803 17.025 1.00 41.89 C \ ATOM 1911 CG1 ILE J 53 -6.115 -23.445 17.610 1.00 44.83 C \ ATOM 1912 CG2 ILE J 53 -8.491 -23.845 18.126 1.00 39.43 C \ ATOM 1913 CD1 ILE J 53 -6.053 -22.093 18.302 1.00 40.46 C \ ATOM 1914 N ASP J 54 -9.143 -26.838 16.272 1.00 45.17 N \ ATOM 1915 CA ASP J 54 -10.436 -27.388 15.884 1.00 46.25 C \ ATOM 1916 C ASP J 54 -11.494 -26.914 16.864 1.00 44.44 C \ ATOM 1917 O ASP J 54 -11.185 -26.190 17.810 1.00 47.12 O \ ATOM 1918 CB ASP J 54 -10.389 -28.918 15.795 1.00 49.48 C \ ATOM 1919 CG ASP J 54 -10.126 -29.589 17.135 1.00 51.28 C \ ATOM 1920 OD1 ASP J 54 -10.786 -29.265 18.141 1.00 51.59 O \ ATOM 1921 OD2 ASP J 54 -9.258 -30.474 17.178 1.00 59.16 O \ ATOM 1922 N GLN J 55 -12.739 -27.316 16.652 1.00 46.21 N \ ATOM 1923 CA GLN J 55 -13.843 -26.743 17.411 1.00 44.78 C \ ATOM 1924 C GLN J 55 -13.845 -27.142 18.883 1.00 47.81 C \ ATOM 1925 O GLN J 55 -14.295 -26.362 19.733 1.00 49.06 O \ ATOM 1926 CB GLN J 55 -15.184 -27.060 16.751 1.00 48.07 C \ ATOM 1927 CG GLN J 55 -15.301 -26.524 15.332 1.00 47.86 C \ ATOM 1928 CD GLN J 55 -16.703 -26.638 14.806 1.00 46.34 C \ ATOM 1929 OE1 GLN J 55 -17.305 -27.703 14.866 1.00 51.62 O \ ATOM 1930 NE2 GLN J 55 -17.242 -25.539 14.299 1.00 45.61 N \ ATOM 1931 N ASN J 56 -13.340 -28.337 19.187 1.00 45.02 N \ ATOM 1932 CA ASN J 56 -13.221 -28.791 20.582 1.00 51.65 C \ ATOM 1933 C ASN J 56 -12.176 -28.024 21.390 1.00 52.12 C \ ATOM 1934 O ASN J 56 -12.424 -27.637 22.543 1.00 50.56 O \ ATOM 1935 CB ASN J 56 -12.917 -30.291 20.644 1.00 56.92 C \ ATOM 1936 CG ASN J 56 -14.037 -31.128 20.069 1.00 65.17 C \ ATOM 1937 OD1 ASN J 56 -15.215 -30.747 20.135 1.00 65.28 O \ ATOM 1938 ND2 ASN J 56 -13.684 -32.273 19.491 1.00 68.80 N \ ATOM 1939 N GLU J 57 -11.006 -27.821 20.776 1.00 50.74 N \ ATOM 1940 CA GLU J 57 -9.950 -26.969 21.329 1.00 46.53 C \ ATOM 1941 C GLU J 57 -10.435 -25.538 21.501 1.00 46.16 C \ ATOM 1942 O GLU J 57 -10.212 -24.920 22.534 1.00 47.25 O \ ATOM 1943 CB GLU J 57 -8.709 -27.020 20.445 1.00 47.39 C \ ATOM 1944 CG GLU J 57 -8.210 -28.448 20.235 1.00 53.06 C \ ATOM 1945 CD GLU J 57 -7.093 -28.559 19.220 1.00 54.16 C \ ATOM 1946 OE1 GLU J 57 -6.991 -27.692 18.322 1.00 54.18 O \ ATOM 1947 OE2 GLU J 57 -6.324 -29.530 19.312 1.00 54.18 O \ ATOM 1948 N PHE J 58 -11.122 -25.013 20.500 1.00 41.99 N \ ATOM 1949 CA PHE J 58 -11.644 -23.677 20.643 1.00 42.19 C \ ATOM 1950 C PHE J 58 -12.654 -23.611 21.789 1.00 49.98 C \ ATOM 1951 O PHE J 58 -12.596 -22.708 22.624 1.00 50.84 O \ ATOM 1952 CB PHE J 58 -12.272 -23.192 19.338 1.00 40.99 C \ ATOM 1953 CG PHE J 58 -12.747 -21.779 19.414 1.00 43.67 C \ ATOM 1954 CD1 PHE J 58 -11.836 -20.735 19.434 1.00 47.70 C \ ATOM 1955 CD2 PHE J 58 -14.096 -21.488 19.517 1.00 45.74 C \ ATOM 1956 CE1 PHE J 58 -12.259 -19.435 19.528 1.00 42.45 C \ ATOM 1957 CE2 PHE J 58 -14.522 -20.187 19.613 1.00 40.78 C \ ATOM 1958 CZ PHE J 58 -13.600 -19.163 19.620 1.00 44.91 C \ ATOM 1959 N ALA J 59 -13.581 -24.567 21.825 1.00 49.97 N \ ATOM 1960 CA ALA J 59 -14.646 -24.568 22.818 1.00 51.71 C \ ATOM 1961 C ALA J 59 -14.080 -24.625 24.243 1.00 48.02 C \ ATOM 1962 O ALA J 59 -14.455 -23.824 25.106 1.00 46.66 O \ ATOM 1963 CB ALA J 59 -15.625 -25.737 22.549 1.00 51.77 C \ ATOM 1964 N LYS J 60 -13.178 -25.572 24.478 1.00 46.66 N \ ATOM 1965 CA LYS J 60 -12.498 -25.673 25.757 1.00 50.68 C \ ATOM 1966 C LYS J 60 -11.970 -24.315 26.162 1.00 51.42 C \ ATOM 1967 O LYS J 60 -12.229 -23.855 27.269 1.00 52.96 O \ ATOM 1968 CB LYS J 60 -11.337 -26.673 25.681 1.00 56.96 C \ ATOM 1969 CG LYS J 60 -11.780 -28.122 25.482 1.00 64.72 C \ ATOM 1970 CD LYS J 60 -11.073 -29.087 26.435 1.00 69.56 C \ ATOM 1971 CE LYS J 60 -11.776 -30.451 26.475 1.00 72.07 C \ ATOM 1972 NZ LYS J 60 -12.021 -31.014 25.103 1.00 70.79 N \ ATOM 1973 N PHE J 61 -11.228 -23.680 25.258 1.00 48.99 N \ ATOM 1974 CA PHE J 61 -10.585 -22.401 25.553 1.00 51.99 C \ ATOM 1975 C PHE J 61 -11.606 -21.349 25.908 1.00 52.85 C \ ATOM 1976 O PHE J 61 -11.507 -20.662 26.937 1.00 57.73 O \ ATOM 1977 CB PHE J 61 -9.726 -21.924 24.370 1.00 48.99 C \ ATOM 1978 CG PHE J 61 -9.464 -20.441 24.370 1.00 48.88 C \ ATOM 1979 CD1 PHE J 61 -8.467 -19.887 25.169 1.00 53.43 C \ ATOM 1980 CD2 PHE J 61 -10.222 -19.588 23.565 1.00 50.59 C \ ATOM 1981 CE1 PHE J 61 -8.229 -18.490 25.163 1.00 51.62 C \ ATOM 1982 CE2 PHE J 61 -9.992 -18.202 23.552 1.00 49.58 C \ ATOM 1983 CZ PHE J 61 -8.998 -17.656 24.351 1.00 50.02 C \ ATOM 1984 N TYR J 62 -12.600 -21.233 25.051 1.00 51.60 N \ ATOM 1985 CA TYR J 62 -13.538 -20.126 25.124 1.00 55.45 C \ ATOM 1986 C TYR J 62 -14.380 -20.082 26.441 1.00 58.00 C \ ATOM 1987 O TYR J 62 -15.003 -19.058 26.761 1.00 53.65 O \ ATOM 1988 CB TYR J 62 -14.365 -20.115 23.842 1.00 52.34 C \ ATOM 1989 CG TYR J 62 -15.314 -18.976 23.718 1.00 55.12 C \ ATOM 1990 CD1 TYR J 62 -14.881 -17.665 23.857 1.00 55.35 C \ ATOM 1991 CD2 TYR J 62 -16.651 -19.208 23.436 1.00 58.85 C \ ATOM 1992 CE1 TYR J 62 -15.774 -16.610 23.736 1.00 57.17 C \ ATOM 1993 CE2 TYR J 62 -17.553 -18.171 23.308 1.00 59.38 C \ ATOM 1994 CZ TYR J 62 -17.116 -16.873 23.456 1.00 65.91 C \ ATOM 1995 OH TYR J 62 -18.033 -15.846 23.322 1.00 68.70 O \ ATOM 1996 N GLY J 63 -14.386 -21.189 27.197 1.00 60.14 N \ ATOM 1997 CA GLY J 63 -14.679 -21.155 28.632 1.00 57.51 C \ ATOM 1998 C GLY J 63 -13.362 -21.171 29.422 1.00 61.71 C \ ATOM 1999 O GLY J 63 -12.769 -22.240 29.615 1.00 61.03 O \ ATOM 2000 N SER J 64 -12.868 -20.016 29.890 1.00 64.30 N \ ATOM 2001 CA SER J 64 -13.564 -18.724 29.874 1.00 62.00 C \ ATOM 2002 C SER J 64 -12.668 -17.661 29.175 1.00 65.49 C \ ATOM 2003 O SER J 64 -11.702 -18.039 28.430 1.00 65.99 O \ ATOM 2004 CB SER J 64 -13.872 -18.375 31.338 1.00 64.61 C \ ATOM 2005 OG SER J 64 -14.196 -19.615 32.062 1.00 64.54 O \ ATOM 2006 N ILE J 65 -12.956 -16.359 29.341 1.00 64.52 N \ ATOM 2007 CA ILE J 65 -14.062 -15.870 30.172 1.00 64.20 C \ ATOM 2008 C ILE J 65 -15.390 -16.486 29.780 1.00 61.12 C \ ATOM 2009 O ILE J 65 -16.429 -15.774 29.879 1.00 64.32 O \ ATOM 2010 CB ILE J 65 -14.161 -14.301 30.075 1.00 67.38 C \ TER 2011 ILE J 65 \ HETATM 2018 CA CA J 149 23.684 2.745 8.616 1.00 43.27 CA \ HETATM 2019 CA CA J 150 -5.120 -28.990 17.084 1.00 58.39 CA \ HETATM 2066 O HOH J 67 -18.551 -19.325 26.610 1.00 54.47 O \ HETATM 2067 O HOH J 68 17.118 -0.925 11.327 1.00 38.08 O \ HETATM 2068 O HOH J 69 16.222 -3.565 11.686 1.00 49.70 O \ HETATM 2069 O HOH J 70 10.365 1.067 9.638 1.00 47.80 O \ HETATM 2070 O HOH J 71 -9.985 -32.178 19.454 1.00 52.14 O \ HETATM 2071 O HOH J 72 10.746 -1.787 10.251 1.00 45.28 O \ HETATM 2072 O HOH J 73 8.396 10.067 9.681 1.00 45.05 O \ HETATM 2073 O HOH J 74 11.840 3.486 9.694 1.00 49.16 O \ HETATM 2074 O HOH J 75 8.901 8.593 7.342 1.00 51.87 O \ HETATM 2075 O HOH J 76 20.825 -5.555 8.661 1.00 42.93 O \ HETATM 2076 O HOH J 77 18.107 8.877 9.646 1.00 43.36 O \ HETATM 2077 O HOH J 79 -1.484 -27.994 10.147 1.00 68.55 O \ HETATM 2078 O HOH J 80 20.787 -4.587 4.733 1.00 52.36 O \ HETATM 2079 O HOH J 81 23.263 5.270 8.487 1.00 50.99 O \ HETATM 2080 O HOH J 82 -6.816 -30.772 16.235 1.00 53.86 O \ HETATM 2081 O HOH J 84 8.740 -3.885 11.328 1.00 42.95 O \ HETATM 2082 O HOH J 85 -15.100 -12.081 31.361 1.00 70.80 O \ HETATM 2083 O HOH J 86 -17.118 -17.397 27.460 1.00 59.52 O \ CONECT 71 2012 \ CONECT 86 2012 \ CONECT 98 2012 \ CONECT 107 2012 \ CONECT 150 2012 \ CONECT 151 2012 \ CONECT 355 2013 \ CONECT 368 2013 \ CONECT 380 2013 \ CONECT 389 2013 \ CONECT 435 2013 \ CONECT 436 2013 \ CONECT 571 2014 \ CONECT 586 2014 \ CONECT 598 2014 \ CONECT 607 2014 \ CONECT 650 2014 \ CONECT 651 2014 \ CONECT 855 2015 \ CONECT 868 2015 \ CONECT 880 2015 \ CONECT 889 2015 \ CONECT 894 2015 \ CONECT 935 2015 \ CONECT 936 2015 \ CONECT 1079 2016 \ CONECT 1094 2016 \ CONECT 1106 2016 \ CONECT 1115 2016 \ CONECT 1158 2016 \ CONECT 1159 2016 \ CONECT 1363 2017 \ CONECT 1376 2017 \ CONECT 1388 2017 \ CONECT 1397 2017 \ CONECT 1402 2017 \ CONECT 1443 2017 \ CONECT 1444 2017 \ CONECT 1582 2018 \ CONECT 1597 2018 \ CONECT 1609 2018 \ CONECT 1618 2018 \ CONECT 1661 2018 \ CONECT 1662 2018 \ CONECT 1866 2019 \ CONECT 1879 2019 \ CONECT 1891 2019 \ CONECT 1900 2019 \ CONECT 1946 2019 \ CONECT 1947 2019 \ CONECT 2012 71 86 98 107 \ CONECT 2012 150 151 2024 \ CONECT 2013 355 368 380 389 \ CONECT 2013 435 436 2028 \ CONECT 2014 571 586 598 607 \ CONECT 2014 650 651 2045 \ CONECT 2015 855 868 880 889 \ CONECT 2015 894 935 936 2033 \ CONECT 2016 1079 1094 1106 1115 \ CONECT 2016 1158 1159 2063 \ CONECT 2017 1363 1376 1388 1397 \ CONECT 2017 1402 1443 1444 2049 \ CONECT 2018 1582 1597 1609 1618 \ CONECT 2018 1661 1662 2079 \ CONECT 2019 1866 1879 1891 1900 \ CONECT 2019 1946 1947 2080 \ CONECT 2024 2012 \ CONECT 2028 2013 \ CONECT 2033 2015 \ CONECT 2045 2014 \ CONECT 2049 2017 \ CONECT 2063 2016 \ CONECT 2079 2018 \ CONECT 2080 2019 \ MASTER 432 0 8 12 0 0 16 6 2079 4 74 24 \ END \ """, "3li6chainJ") cmd.hide("all") cmd.color('grey70', "3li6chainJ") cmd.show('cartoon', "3li6chainJ") cmd.center("3li6chainJ", state=0, origin=1) cmd.zoom("3li6chainJ", animate=-1) cmd.select("e3li6J1", "c. J & i. 2-65") cmd.color("red", "e3li6J1") cmd.disable("e3li6J1")