cmd.read_pdbstr("""\ HEADER DE NOVO PROTEIN 27-MAR-03 1OVV \ TITLE CRYSTAL STRUCTURE OF FOUR-HELIX BUNDLE MODEL DI-CO(II)-DF1-L13A (FORM \ TITLE 2 II) \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: FOUR-HELIX BUNDLE MODEL DI-CO(II)-DF1-L13A (FORM II); \ COMPND 3 CHAIN: A, B, C, D, E, F; \ COMPND 4 SYNONYM: DI-CO(II)-DF1-L13A (FORM II); \ COMPND 5 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 SYNTHETIC: YES; \ SOURCE 3 OTHER_DETAILS: THIS PROTEIN WAS CHEMICALLY SYNTHESIZED. \ KEYWDS ALPHA-HELICAL BUNDLE, PROTEIN DESIGN, DE NOVO PROTEIN \ EXPDTA X-RAY DIFFRACTION \ AUTHOR L.DI COSTANZO,S.GEREMIA \ REVDAT 7 20-NOV-24 1OVV 1 REMARK LINK \ REVDAT 6 20-NOV-19 1OVV 1 LINK \ REVDAT 5 13-JUL-11 1OVV 1 VERSN \ REVDAT 4 09-JUN-09 1OVV 1 REVDAT \ REVDAT 3 24-FEB-09 1OVV 1 VERSN \ REVDAT 2 20-JAN-09 1OVV 1 JRNL \ REVDAT 1 06-APR-04 1OVV 0 \ JRNL AUTH S.GEREMIA,L.DI COSTANZO,L.RANDACCIO,D.E.ENGEL,A.LOMBARDI, \ JRNL AUTH 2 F.NASTRI,W.F.DEGRADO \ JRNL TITL RESPONSE OF A DESIGNED METALLOPROTEIN TO CHANGES IN METAL \ JRNL TITL 2 ION COORDINATION, EXOGENOUS LIGANDS, AND ACTIVE SITE VOLUME \ JRNL TITL 3 DETERMINED BY X-RAY CRYSTALLOGRAPHY. \ JRNL REF J.AM.CHEM.SOC. V. 127 17266 2005 \ JRNL REFN ISSN 0002-7863 \ JRNL PMID 16332076 \ JRNL DOI 10.1021/JA054199X \ REMARK 1 \ REMARK 1 REFERENCE 1 \ REMARK 1 AUTH W.F.DEGRADO,L.DI COSTANZO,S.GEREMIA,A.LOMBARDI,V.PAVONE, \ REMARK 1 AUTH 2 L.RANDACCIO \ REMARK 1 TITL SLIDING HELIX INDUCED CHANGE OF COORDINATION GEOMET MODEL \ REMARK 1 TITL 2 DI-MN(II) PROTEIN \ REMARK 1 REF ANGEW.CHEM.INT.ED.ENGL. V. 42 417 2003 \ REMARK 1 REFN ISSN 1433-7851 \ REMARK 1 DOI 10.1002/ANIE.200390127 \ REMARK 1 REFERENCE 2 \ REMARK 1 AUTH L.DI COSTANZO,H.WADE,S.GEREMIA,L.RANDACCIO,V.PAVONE, \ REMARK 1 AUTH 2 W.F.DEGRADO,A.LOMBARDI \ REMARK 1 TITL TOWARD THE DE NOVO DESIGN OF A CATALYTICALLY ACTIVE \ REMARK 1 TITL 2 HELIX-BUNDLE: A SUBSTRATE ACCESSIBLE CARBOXYLATE-BR \ REMARK 1 TITL 3 DINUCLEAR METAL CENTER \ REMARK 1 REF J.AM.CHEM.SOC. V. 123 12749 2001 \ REMARK 1 REFN ISSN 0002-7863 \ REMARK 1 DOI 10.1021/JA010506X \ REMARK 1 REFERENCE 3 \ REMARK 1 AUTH A.LOMBARDI,C.M.SUMMA,S.GEREMIA,L.RANDACCIO,V.PAVONE, \ REMARK 1 AUTH 2 W.F.DEGRADO \ REMARK 1 TITL RETROSTRUCTURAL ANALYSIS OF METALLOPROTEINS: APPLICATION TO \ REMARK 1 TITL 2 THE DESIGN OF A MINIMAL MODEL FOR DIIRON PROTEINS \ REMARK 1 REF PROC.NATL.ACAD.SCI.USA V. 97 6298 2000 \ REMARK 1 REFN ISSN 0027-8424 \ REMARK 1 DOI 10.1073/PNAS.97.12.6298 \ REMARK 2 \ REMARK 2 RESOLUTION. 2.90 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : REFMAC 5.1 \ REMARK 3 AUTHORS : MURSHUDOV,SKUBAK,LEBEDEV,PANNU,STEINER, \ REMARK 3 : NICHOLLS,WINN,LONG,VAGIN \ REMARK 3 \ REMARK 3 REFINEMENT TARGET : NULL \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 2.90 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 15.00 \ REMARK 3 DATA CUTOFF (SIGMA(F)) : NULL \ REMARK 3 COMPLETENESS FOR RANGE (%) : 96.3 \ REMARK 3 NUMBER OF REFLECTIONS : 6492 \ 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) : 0.269 \ REMARK 3 R VALUE (WORKING SET) : 0.267 \ REMARK 3 FREE R VALUE : 0.320 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 4.800 \ REMARK 3 FREE R VALUE TEST SET COUNT : 309 \ REMARK 3 \ REMARK 3 FIT IN THE HIGHEST RESOLUTION BIN. \ REMARK 3 TOTAL NUMBER OF BINS USED : NULL \ REMARK 3 BIN RESOLUTION RANGE HIGH (A) : NULL \ REMARK 3 BIN RESOLUTION RANGE LOW (A) : NULL \ REMARK 3 REFLECTION IN BIN (WORKING SET) : NULL \ REMARK 3 BIN COMPLETENESS (WORKING+TEST) (%) : NULL \ REMARK 3 BIN R VALUE (WORKING SET) : NULL \ REMARK 3 BIN FREE R VALUE SET COUNT : NULL \ REMARK 3 BIN FREE R VALUE : NULL \ REMARK 3 \ REMARK 3 NUMBER OF NON-HYDROGEN ATOMS USED IN REFINEMENT. \ REMARK 3 PROTEIN ATOMS : 2478 \ REMARK 3 NUCLEIC ACID ATOMS : 0 \ REMARK 3 HETEROGEN ATOMS : 7 \ REMARK 3 SOLVENT ATOMS : 7 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : 68.00 \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 61.70 \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : -3.24000 \ REMARK 3 B22 (A**2) : -10.30000 \ REMARK 3 B33 (A**2) : 13.54000 \ 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 ESTIMATED OVERALL COORDINATE ERROR. \ REMARK 3 ESU BASED ON R VALUE (A): NULL \ REMARK 3 ESU BASED ON FREE R VALUE (A): 0.611 \ REMARK 3 ESU BASED ON MAXIMUM LIKELIHOOD (A): 0.588 \ REMARK 3 ESU FOR B VALUES BASED ON MAXIMUM LIKELIHOOD (A**2): 31.395 \ REMARK 3 \ REMARK 3 CORRELATION COEFFICIENTS. \ REMARK 3 CORRELATION COEFFICIENT FO-FC : 0.923 \ REMARK 3 CORRELATION COEFFICIENT FO-FC FREE : 0.903 \ REMARK 3 \ REMARK 3 RMS DEVIATIONS FROM IDEAL VALUES COUNT RMS WEIGHT \ REMARK 3 BOND LENGTHS REFINED ATOMS (A): 2550 ; 0.028 ; 0.022 \ REMARK 3 BOND LENGTHS OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 BOND ANGLES REFINED ATOMS (DEGREES): 3408 ; 2.502 ; 2.034 \ REMARK 3 BOND ANGLES OTHERS (DEGREES): NULL ; NULL ; NULL \ REMARK 3 TORSION ANGLES, PERIOD 1 (DEGREES): 282 ; 7.507 ; 3.000 \ REMARK 3 TORSION ANGLES, PERIOD 2 (DEGREES): 536 ;25.086 ;15.000 \ REMARK 3 TORSION ANGLES, PERIOD 3 (DEGREES): NULL ; NULL ; NULL \ REMARK 3 TORSION ANGLES, PERIOD 4 (DEGREES): NULL ; NULL ; NULL \ REMARK 3 CHIRAL-CENTER RESTRAINTS (A**3): 390 ; 0.156 ; 0.200 \ REMARK 3 GENERAL PLANES REFINED ATOMS (A): 1788 ; 0.006 ; 0.020 \ REMARK 3 GENERAL PLANES OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED CONTACTS REFINED ATOMS (A): 1667 ; 0.354 ; 0.300 \ REMARK 3 NON-BONDED CONTACTS OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED TORSION REFINED ATOMS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED TORSION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 H-BOND (X...Y) REFINED ATOMS (A): 180 ; 0.250 ; 0.500 \ 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): 84 ; 0.337 ; 0.300 \ REMARK 3 SYMMETRY VDW OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY H-BOND REFINED ATOMS (A): 5 ; 0.395 ; 0.500 \ 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): 1458 ; 2.169 ; 1.500 \ REMARK 3 MAIN-CHAIN BOND OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 MAIN-CHAIN ANGLE REFINED ATOMS (A**2): 2346 ; 4.087 ; 2.000 \ REMARK 3 MAIN-CHAIN ANGLE OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SIDE-CHAIN BOND REFINED ATOMS (A**2): 1086 ; 6.679 ; 3.000 \ REMARK 3 SIDE-CHAIN BOND OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SIDE-CHAIN ANGLE REFINED ATOMS (A**2): 1044 ;10.530 ; 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): NULL ; NULL ; NULL \ REMARK 3 SPHERICITY; FREE ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SPHERICITY; BONDED ATOMS (A**2): NULL ; NULL ; NULL \ 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 : BABINET MODEL WITH MASK \ REMARK 3 PARAMETERS FOR MASK CALCULATION \ REMARK 3 VDW PROBE RADIUS : 1.40 \ REMARK 3 ION PROBE RADIUS : 0.80 \ REMARK 3 SHRINKAGE RADIUS : 0.80 \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: NULL \ REMARK 4 \ REMARK 4 1OVV COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 28-MAR-03. \ REMARK 100 THE DEPOSITION ID IS D_1000018717. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 30-SEP-02 \ REMARK 200 TEMPERATURE (KELVIN) : 100.0 \ REMARK 200 PH : 7.50 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : ELETTRA \ REMARK 200 BEAMLINE : 5.2R \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 1.200 \ REMARK 200 MONOCHROMATOR : SI(111) \ REMARK 200 OPTICS : MIRROR \ REMARK 200 \ REMARK 200 DETECTOR TYPE : IMAGE PLATE \ REMARK 200 DETECTOR MANUFACTURER : MARRESEARCH \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : MOSFLM \ REMARK 200 DATA SCALING SOFTWARE : SCALA, CCP4 (SCALA) \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 6492 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 2.900 \ REMARK 200 RESOLUTION RANGE LOW (A) : 33.300 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : NULL \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 96.8 \ REMARK 200 DATA REDUNDANCY : 5.700 \ REMARK 200 R MERGE (I) : 0.10900 \ REMARK 200 R SYM (I) : 0.10900 \ REMARK 200 FOR THE DATA SET : 11.2000 \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : 2.90 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 3.06 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 89.0 \ REMARK 200 DATA REDUNDANCY IN SHELL : 5.40 \ REMARK 200 R MERGE FOR SHELL (I) : 0.57300 \ REMARK 200 R SYM FOR SHELL (I) : 0.57300 \ REMARK 200 FOR SHELL : 3.100 \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: 1.200 \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: UNCONVENTIANAL METHOD \ REMARK 200 USING THE GROUP-SUBGROUP RELATION \ REMARK 200 SOFTWARE USED: NULL \ REMARK 200 STARTING MODEL: NULL \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 39.74 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 2.03 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: PEG 400, TRIS-HCL, PH 7.50, VAPOR \ REMARK 280 DIFFUSION, HANGING DROP, TEMPERATURE 298K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P 21 21 21 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -X+1/2,-Y,Z+1/2 \ REMARK 290 3555 -X,Y+1/2,-Z+1/2 \ REMARK 290 4555 X+1/2,-Y+1/2,-Z \ REMARK 290 \ REMARK 290 WHERE NNN -> OPERATOR NUMBER \ REMARK 290 MMM -> TRANSLATION VECTOR \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY TRANSFORMATIONS \ REMARK 290 THE FOLLOWING TRANSFORMATIONS OPERATE ON THE ATOM/HETATM \ REMARK 290 RECORDS IN THIS ENTRY TO PRODUCE CRYSTALLOGRAPHICALLY \ REMARK 290 RELATED MOLECULES. \ REMARK 290 SMTRY1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 2 -1.000000 0.000000 0.000000 18.46000 \ REMARK 290 SMTRY2 2 0.000000 -1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 2 0.000000 0.000000 1.000000 48.31000 \ REMARK 290 SMTRY1 3 -1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 3 0.000000 1.000000 0.000000 40.02500 \ REMARK 290 SMTRY3 3 0.000000 0.000000 -1.000000 48.31000 \ REMARK 290 SMTRY1 4 1.000000 0.000000 0.000000 18.46000 \ REMARK 290 SMTRY2 4 0.000000 -1.000000 0.000000 40.02500 \ REMARK 290 SMTRY3 4 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: DIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: DIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 2630 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 5830 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -45.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B \ 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 \ REMARK 350 BIOMOLECULE: 2 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: DIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: DIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 2730 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 6150 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -49.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: C, 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 \ REMARK 350 BIOMOLECULE: 3 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: DIMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: DIMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 2760 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 5850 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -45.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: E, F \ 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 \ REMARK 350 BIOMOLECULE: 4 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: HEXAMERIC \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, C, D, E, F \ 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 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 LEU A 9 CB - CG - CD1 ANGL. DEV. = -10.4 DEGREES \ REMARK 500 LEU E 6 CA - CB - CG ANGL. DEV. = -14.1 DEGREES \ REMARK 500 LEU F 6 CB - CG - CD2 ANGL. DEV. = -11.2 DEGREES \ REMARK 500 ASP F 35 CB - CG - OD2 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 LEU A 47 -159.04 -80.46 \ REMARK 500 LEU C 7 -38.12 -39.52 \ REMARK 500 LEU C 47 2.76 -57.29 \ REMARK 500 VAL E 24 109.55 -167.34 \ REMARK 500 LYS E 25 48.53 -72.08 \ REMARK 500 GLU F 22 -37.48 -39.24 \ REMARK 500 PRO F 27 -38.54 -35.92 \ REMARK 500 LEU F 47 -162.34 -78.45 \ 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 CO A 101 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU A 10 OE1 \ REMARK 620 2 GLU A 10 OE2 68.3 \ REMARK 620 3 GLU A 36 OE1 73.1 134.5 \ REMARK 620 4 HIS A 39 ND1 119.6 94.6 125.6 \ REMARK 620 5 GLU B 36 OE2 128.9 87.6 98.7 106.2 \ REMARK 620 N 1 2 3 4 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CO B 102 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU A 36 OE2 \ REMARK 620 2 GLU B 10 OE1 139.4 \ REMARK 620 3 GLU B 10 OE2 104.9 67.6 \ REMARK 620 4 GLU B 36 OE1 125.7 68.9 128.8 \ REMARK 620 5 HIS B 39 ND1 71.7 143.5 88.5 112.5 \ REMARK 620 N 1 2 3 4 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CO C 107 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU A 37 OE1 \ REMARK 620 2 GLU A 37 OE2 52.1 \ REMARK 620 3 GLU C 19 OE1 50.6 84.9 \ REMARK 620 N 1 2 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CO C 103 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU C 10 OE1 \ REMARK 620 2 GLU C 10 OE2 65.6 \ REMARK 620 3 GLU C 36 OE1 68.0 124.4 \ REMARK 620 4 HIS C 39 ND1 112.7 95.2 76.1 \ REMARK 620 5 GLU D 36 OE2 142.1 110.8 124.5 105.3 \ REMARK 620 N 1 2 3 4 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CO D 104 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU C 36 OE2 \ REMARK 620 2 GLU D 10 OE1 162.8 \ REMARK 620 3 GLU D 10 OE2 104.1 60.4 \ REMARK 620 4 GLU D 36 OE1 119.0 78.2 132.0 \ REMARK 620 5 GLU D 36 OE2 78.4 114.4 164.1 54.7 \ REMARK 620 6 HIS D 39 ND1 84.8 102.2 92.1 73.0 103.8 \ REMARK 620 N 1 2 3 4 5 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CO E 105 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU E 10 OE1 \ REMARK 620 2 GLU E 10 OE2 63.9 \ REMARK 620 3 GLU E 36 OE1 78.9 142.4 \ REMARK 620 4 HIS E 39 ND1 124.2 108.3 87.6 \ REMARK 620 5 GLU F 36 OE2 124.5 98.6 107.2 111.2 \ REMARK 620 N 1 2 3 4 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 CO F 106 CO \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 GLU E 36 OE2 \ REMARK 620 2 GLU F 10 OE1 120.8 \ REMARK 620 3 GLU F 10 OE2 101.8 71.7 \ REMARK 620 4 GLU F 36 OE1 109.1 72.2 141.0 \ REMARK 620 5 HIS F 39 ND1 109.8 129.0 104.9 86.8 \ REMARK 620 N 1 2 3 4 \ REMARK 800 \ REMARK 800 SITE \ REMARK 800 SITE_IDENTIFIER: AC1 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO A 101 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC2 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO B 102 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC3 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO C 103 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC4 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO D 104 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC5 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO E 105 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC6 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO F 106 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC7 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CO C 107 \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 1EC5 RELATED DB: PDB \ REMARK 900 DI-ZN-DF1-L13 \ REMARK 900 RELATED ID: 1JM0 RELATED DB: PDB \ REMARK 900 DI-MN(II)-DF1-L13A-FI \ REMARK 900 RELATED ID: 1JMB RELATED DB: PDB \ REMARK 900 DI-MN(II)-DF1-L13A-FII \ REMARK 900 RELATED ID: 1LT1 RELATED DB: PDB \ REMARK 900 DI-MN(II)-DF1-L13G \ REMARK 900 RELATED ID: 1OVR RELATED DB: PDB \ REMARK 900 CRYSTAL STRUCTURE OF FOUR-HELIX BUNDLE MODEL DI-MN(II)-DF1-L13 \ REMARK 900 RELATED ID: 1OVU RELATED DB: PDB \ REMARK 900 CRYSTAL STRUCTURE OF FOUR-HELIX BUNDLE MODEL DI-CO(II)-DF1-L13A \ REMARK 900 (FORM I) \ DBREF 1OVV A 0 49 PDB 1OVV 1OVV 0 49 \ DBREF 1OVV B 0 49 PDB 1OVV 1OVV 0 49 \ DBREF 1OVV C 0 49 PDB 1OVV 1OVV 0 49 \ DBREF 1OVV D 0 49 PDB 1OVV 1OVV 0 49 \ DBREF 1OVV E 0 49 PDB 1OVV 1OVV 0 49 \ DBREF 1OVV F 0 49 PDB 1OVV 1OVV 0 49 \ SEQRES 1 A 50 ACE ASP TYR LEU ARG GLU LEU LEU LYS LEU GLU LEU GLN \ SEQRES 2 A 50 ALA ILE LYS GLN TYR ARG GLU ALA LEU GLU TYR VAL LYS \ SEQRES 3 A 50 LEU PRO VAL LEU ALA LYS ILE LEU GLU ASP GLU GLU LYS \ SEQRES 4 A 50 HIS ILE GLU TRP LEU GLU THR ILE LEU GLY NH2 \ SEQRES 1 B 50 ACE ASP TYR LEU ARG GLU LEU LEU LYS LEU GLU LEU GLN \ SEQRES 2 B 50 ALA ILE LYS GLN TYR ARG GLU ALA LEU GLU TYR VAL LYS \ SEQRES 3 B 50 LEU PRO VAL LEU ALA LYS ILE LEU GLU ASP GLU GLU LYS \ SEQRES 4 B 50 HIS ILE GLU TRP LEU GLU THR ILE LEU GLY NH2 \ SEQRES 1 C 50 ACE ASP TYR LEU ARG GLU LEU LEU LYS LEU GLU LEU GLN \ SEQRES 2 C 50 ALA ILE LYS GLN TYR ARG GLU ALA LEU GLU TYR VAL LYS \ SEQRES 3 C 50 LEU PRO VAL LEU ALA LYS ILE LEU GLU ASP GLU GLU LYS \ SEQRES 4 C 50 HIS ILE GLU TRP LEU GLU THR ILE LEU GLY NH2 \ SEQRES 1 D 50 ACE ASP TYR LEU ARG GLU LEU LEU LYS LEU GLU LEU GLN \ SEQRES 2 D 50 ALA ILE LYS GLN TYR ARG GLU ALA LEU GLU TYR VAL LYS \ SEQRES 3 D 50 LEU PRO VAL LEU ALA LYS ILE LEU GLU ASP GLU GLU LYS \ SEQRES 4 D 50 HIS ILE GLU TRP LEU GLU THR ILE LEU GLY NH2 \ SEQRES 1 E 50 ACE ASP TYR LEU ARG GLU LEU LEU LYS LEU GLU LEU GLN \ SEQRES 2 E 50 ALA ILE LYS GLN TYR ARG GLU ALA LEU GLU TYR VAL LYS \ SEQRES 3 E 50 LEU PRO VAL LEU ALA LYS ILE LEU GLU ASP GLU GLU LYS \ SEQRES 4 E 50 HIS ILE GLU TRP LEU GLU THR ILE LEU GLY NH2 \ SEQRES 1 F 50 ACE ASP TYR LEU ARG GLU LEU LEU LYS LEU GLU LEU GLN \ SEQRES 2 F 50 ALA ILE LYS GLN TYR ARG GLU ALA LEU GLU TYR VAL LYS \ SEQRES 3 F 50 LEU PRO VAL LEU ALA LYS ILE LEU GLU ASP GLU GLU LYS \ SEQRES 4 F 50 HIS ILE GLU TRP LEU GLU THR ILE LEU GLY NH2 \ HET ACE A 0 3 \ HET NH2 A 49 1 \ HET ACE B 0 3 \ HET NH2 B 49 1 \ HET ACE C 0 3 \ HET NH2 C 49 1 \ HET ACE D 0 3 \ HET NH2 D 49 1 \ HET ACE E 0 3 \ HET NH2 E 49 1 \ HET ACE F 0 3 \ HET NH2 F 49 1 \ HET CO A 101 1 \ HET CO B 102 1 \ HET CO C 103 1 \ HET CO C 107 1 \ HET CO D 104 1 \ HET CO E 105 1 \ HET CO F 106 1 \ HETNAM ACE ACETYL GROUP \ HETNAM NH2 AMINO GROUP \ HETNAM CO COBALT (II) ION \ FORMUL 1 ACE 6(C2 H4 O) \ FORMUL 1 NH2 6(H2 N) \ FORMUL 7 CO 7(CO 2+) \ FORMUL 14 HOH *7(H2 O) \ HELIX 1 1 ASP A 1 LYS A 25 1 25 \ HELIX 2 2 LEU A 26 LEU A 47 1 22 \ HELIX 3 3 ASP B 1 VAL B 24 1 24 \ HELIX 4 4 LEU B 26 LEU B 47 1 22 \ HELIX 5 5 ASP C 1 VAL C 24 1 24 \ HELIX 6 6 LEU C 26 LEU C 47 1 22 \ HELIX 7 7 ASP D 1 VAL D 24 1 24 \ HELIX 8 8 LEU D 26 GLY D 48 1 23 \ HELIX 9 9 ASP E 1 VAL E 24 1 24 \ HELIX 10 10 LEU E 26 GLY E 48 1 23 \ HELIX 11 11 ASP F 1 VAL F 24 1 24 \ HELIX 12 12 LEU F 26 LEU F 47 1 22 \ LINK C ACE A 0 N ASP A 1 1555 1555 1.33 \ LINK C GLY A 48 N NH2 A 49 1555 1555 1.35 \ LINK C ACE B 0 N ASP B 1 1555 1555 1.33 \ LINK C GLY B 48 N NH2 B 49 1555 1555 1.33 \ LINK C ACE C 0 N ASP C 1 1555 1555 1.33 \ LINK C GLY C 48 N NH2 C 49 1555 1555 1.31 \ LINK C ACE D 0 N ASP D 1 1555 1555 1.33 \ LINK C GLY D 48 N NH2 D 49 1555 1555 1.33 \ LINK C ACE E 0 N ASP E 1 1555 1555 1.32 \ LINK C GLY E 48 N NH2 E 49 1555 1555 1.33 \ LINK C ACE F 0 N ASP F 1 1555 1555 1.33 \ LINK C GLY F 48 N NH2 F 49 1555 1555 1.35 \ LINK OE1 GLU A 10 CO CO A 101 1555 1555 2.04 \ LINK OE2 GLU A 10 CO CO A 101 1555 1555 1.80 \ LINK OE1 GLU A 36 CO CO A 101 1555 1555 1.84 \ LINK OE2 GLU A 36 CO CO B 102 1555 1555 2.08 \ LINK OE1 GLU A 37 CO CO C 107 1555 3444 2.21 \ LINK OE2 GLU A 37 CO CO C 107 1555 3444 2.68 \ LINK ND1 HIS A 39 CO CO A 101 1555 1555 1.79 \ LINK CO CO A 101 OE2 GLU B 36 1555 1555 1.95 \ LINK OE1 GLU B 10 CO CO B 102 1555 1555 2.11 \ LINK OE2 GLU B 10 CO CO B 102 1555 1555 1.82 \ LINK OE1 GLU B 36 CO CO B 102 1555 1555 1.75 \ LINK ND1 HIS B 39 CO CO B 102 1555 1555 2.10 \ LINK OE1 GLU C 10 CO CO C 103 1555 1555 1.98 \ LINK OE2 GLU C 10 CO CO C 103 1555 1555 2.12 \ LINK OE1 GLU C 19 CO CO C 107 1555 1555 2.20 \ LINK OE1 GLU C 36 CO CO C 103 1555 1555 1.96 \ LINK OE2 GLU C 36 CO CO D 104 1555 1555 1.87 \ LINK ND1 HIS C 39 CO CO C 103 1555 1555 1.89 \ LINK CO CO C 103 OE2 GLU D 36 1555 1555 1.83 \ LINK OE1 GLU D 10 CO CO D 104 1555 1555 1.93 \ LINK OE2 GLU D 10 CO CO D 104 1555 1555 2.33 \ LINK OE1 GLU D 36 CO CO D 104 1555 1555 1.93 \ LINK OE2 GLU D 36 CO CO D 104 1555 1555 2.72 \ LINK ND1 HIS D 39 CO CO D 104 1555 1555 2.14 \ LINK OE1 GLU E 10 CO CO E 105 1555 1555 1.77 \ LINK OE2 GLU E 10 CO CO E 105 1555 1555 2.22 \ LINK OE1 GLU E 36 CO CO E 105 1555 1555 1.70 \ LINK OE2 GLU E 36 CO CO F 106 1555 1555 1.76 \ LINK ND1 HIS E 39 CO CO E 105 1555 1555 1.79 \ LINK CO CO E 105 OE2 GLU F 36 1555 1555 1.89 \ LINK OE1 GLU F 10 CO CO F 106 1555 1555 1.94 \ LINK OE2 GLU F 10 CO CO F 106 1555 1555 1.73 \ LINK OE1 GLU F 36 CO CO F 106 1555 1555 1.80 \ LINK ND1 HIS F 39 CO CO F 106 1555 1555 1.82 \ SITE 1 AC1 4 GLU A 10 GLU A 36 HIS A 39 GLU B 36 \ SITE 1 AC2 4 GLU A 36 GLU B 10 GLU B 36 HIS B 39 \ SITE 1 AC3 5 GLU C 10 GLU C 36 HIS C 39 GLU D 36 \ SITE 2 AC3 5 CO D 104 \ SITE 1 AC4 5 GLU C 36 CO C 103 GLU D 10 GLU D 36 \ SITE 2 AC4 5 HIS D 39 \ SITE 1 AC5 4 GLU E 10 GLU E 36 HIS E 39 GLU F 36 \ SITE 1 AC6 4 GLU E 36 GLU F 10 GLU F 36 HIS F 39 \ SITE 1 AC7 2 GLU A 37 GLU C 19 \ CRYST1 36.920 80.050 96.620 90.00 90.00 90.00 P 21 21 21 24 \ 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 0.027086 0.000000 0.000000 0.00000 \ SCALE2 0.000000 0.012492 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.010350 0.00000 \ TER 414 NH2 A 49 \ TER 828 NH2 B 49 \ TER 1242 NH2 C 49 \ TER 1656 NH2 D 49 \ HETATM 1657 C ACE E 0 13.500 23.356 -34.651 1.00 85.14 C \ HETATM 1658 O ACE E 0 13.928 24.391 -35.186 1.00 85.90 O \ HETATM 1659 CH3 ACE E 0 12.882 22.228 -35.416 1.00 84.45 C \ ATOM 1660 N ASP E 1 13.441 23.234 -33.334 1.00 83.98 N \ ATOM 1661 CA ASP E 1 13.552 24.425 -32.524 1.00 82.77 C \ ATOM 1662 C ASP E 1 12.592 25.507 -32.974 1.00 82.31 C \ ATOM 1663 O ASP E 1 11.738 25.956 -32.190 1.00 84.63 O \ ATOM 1664 CB ASP E 1 14.964 24.940 -32.544 1.00 83.02 C \ ATOM 1665 CG ASP E 1 15.768 24.344 -31.447 1.00 86.18 C \ ATOM 1666 OD1 ASP E 1 16.096 25.077 -30.496 1.00 89.28 O \ ATOM 1667 OD2 ASP E 1 16.064 23.132 -31.424 1.00 89.35 O \ ATOM 1668 N TYR E 2 12.677 25.935 -34.225 1.00 77.65 N \ ATOM 1669 CA TYR E 2 11.634 26.845 -34.637 1.00 73.19 C \ ATOM 1670 C TYR E 2 10.282 26.227 -34.367 1.00 69.30 C \ ATOM 1671 O TYR E 2 9.351 26.917 -33.954 1.00 70.89 O \ ATOM 1672 CB TYR E 2 11.786 27.339 -36.069 1.00 74.99 C \ ATOM 1673 CG TYR E 2 11.458 26.360 -37.158 1.00 74.16 C \ ATOM 1674 CD1 TYR E 2 10.282 26.464 -37.864 1.00 71.75 C \ ATOM 1675 CD2 TYR E 2 12.359 25.372 -37.515 1.00 74.97 C \ ATOM 1676 CE1 TYR E 2 9.991 25.581 -38.877 1.00 81.41 C \ ATOM 1677 CE2 TYR E 2 12.092 24.493 -38.530 1.00 77.20 C \ ATOM 1678 CZ TYR E 2 10.905 24.593 -39.220 1.00 84.44 C \ ATOM 1679 OH TYR E 2 10.621 23.704 -40.253 1.00 87.85 O \ ATOM 1680 N LEU E 3 10.169 24.926 -34.566 1.00 63.34 N \ ATOM 1681 CA LEU E 3 8.886 24.291 -34.340 1.00 59.22 C \ ATOM 1682 C LEU E 3 8.579 24.277 -32.897 1.00 58.43 C \ ATOM 1683 O LEU E 3 7.418 24.295 -32.493 1.00 53.71 O \ ATOM 1684 CB LEU E 3 8.947 22.852 -34.755 1.00 58.22 C \ ATOM 1685 CG LEU E 3 8.841 22.825 -36.253 1.00 51.89 C \ ATOM 1686 CD1 LEU E 3 8.102 21.559 -36.562 1.00 45.24 C \ ATOM 1687 CD2 LEU E 3 8.041 24.029 -36.638 1.00 38.75 C \ ATOM 1688 N ARG E 4 9.648 24.185 -32.116 1.00 59.33 N \ ATOM 1689 CA ARG E 4 9.499 24.078 -30.679 1.00 59.96 C \ ATOM 1690 C ARG E 4 9.058 25.380 -30.042 1.00 58.24 C \ ATOM 1691 O ARG E 4 8.233 25.385 -29.140 1.00 55.17 O \ ATOM 1692 CB ARG E 4 10.751 23.520 -30.045 1.00 59.73 C \ ATOM 1693 CG ARG E 4 10.656 22.027 -29.766 1.00 66.90 C \ ATOM 1694 CD ARG E 4 11.996 21.294 -29.781 1.00 80.75 C \ ATOM 1695 NE ARG E 4 12.305 20.796 -31.120 1.00 90.57 N \ ATOM 1696 CZ ARG E 4 11.858 19.638 -31.590 1.00 94.57 C \ ATOM 1697 NH1 ARG E 4 11.101 18.876 -30.812 1.00101.07 N \ ATOM 1698 NH2 ARG E 4 12.155 19.237 -32.825 1.00 92.97 N \ ATOM 1699 N GLU E 5 9.575 26.485 -30.550 1.00 58.18 N \ ATOM 1700 CA GLU E 5 9.199 27.779 -30.016 1.00 60.76 C \ ATOM 1701 C GLU E 5 7.754 28.014 -30.331 1.00 60.77 C \ ATOM 1702 O GLU E 5 7.032 28.695 -29.600 1.00 62.21 O \ ATOM 1703 CB GLU E 5 10.001 28.908 -30.667 1.00 62.79 C \ ATOM 1704 CG GLU E 5 11.422 29.095 -30.140 1.00 69.93 C \ ATOM 1705 CD GLU E 5 11.474 29.689 -28.728 1.00 84.47 C \ ATOM 1706 OE1 GLU E 5 10.750 30.688 -28.435 1.00 85.66 O \ ATOM 1707 OE2 GLU E 5 12.249 29.150 -27.896 1.00 88.85 O \ ATOM 1708 N LEU E 6 7.311 27.487 -31.455 1.00 60.79 N \ ATOM 1709 CA LEU E 6 5.927 27.677 -31.785 1.00 58.22 C \ ATOM 1710 C LEU E 6 5.174 27.025 -30.689 1.00 57.19 C \ ATOM 1711 O LEU E 6 4.268 27.603 -30.089 1.00 58.07 O \ ATOM 1712 CB LEU E 6 5.661 27.149 -33.138 1.00 58.49 C \ ATOM 1713 CG LEU E 6 6.409 28.144 -33.993 1.00 57.19 C \ ATOM 1714 CD1 LEU E 6 6.302 27.789 -35.449 1.00 60.80 C \ ATOM 1715 CD2 LEU E 6 5.846 29.529 -33.729 1.00 57.07 C \ ATOM 1716 N LEU E 7 5.583 25.793 -30.393 1.00 54.43 N \ ATOM 1717 CA LEU E 7 4.974 25.084 -29.286 1.00 51.28 C \ ATOM 1718 C LEU E 7 4.916 25.981 -28.035 1.00 52.79 C \ ATOM 1719 O LEU E 7 3.847 26.230 -27.501 1.00 54.09 O \ ATOM 1720 CB LEU E 7 5.623 23.717 -29.063 1.00 48.59 C \ ATOM 1721 CG LEU E 7 5.300 22.968 -27.774 1.00 38.66 C \ ATOM 1722 CD1 LEU E 7 4.029 23.409 -27.186 1.00 30.87 C \ ATOM 1723 CD2 LEU E 7 5.318 21.499 -27.902 1.00 21.86 C \ ATOM 1724 N LYS E 8 6.036 26.542 -27.608 1.00 54.93 N \ ATOM 1725 CA LYS E 8 6.037 27.395 -26.407 1.00 56.73 C \ ATOM 1726 C LYS E 8 5.088 28.595 -26.521 1.00 56.17 C \ ATOM 1727 O LYS E 8 4.612 29.164 -25.519 1.00 59.27 O \ ATOM 1728 CB LYS E 8 7.460 27.868 -26.108 1.00 56.71 C \ ATOM 1729 CG LYS E 8 8.499 26.758 -26.304 1.00 58.70 C \ ATOM 1730 CD LYS E 8 9.912 27.321 -26.394 1.00 65.40 C \ ATOM 1731 CE LYS E 8 10.780 26.864 -25.221 1.00 69.43 C \ ATOM 1732 NZ LYS E 8 11.255 28.050 -24.422 1.00 68.67 N \ ATOM 1733 N LEU E 9 4.803 28.967 -27.757 1.00 52.80 N \ ATOM 1734 CA LEU E 9 3.936 30.089 -27.975 1.00 50.58 C \ ATOM 1735 C LEU E 9 2.566 29.709 -27.596 1.00 48.19 C \ ATOM 1736 O LEU E 9 1.860 30.493 -27.035 1.00 49.46 O \ ATOM 1737 CB LEU E 9 3.958 30.543 -29.426 1.00 52.40 C \ ATOM 1738 CG LEU E 9 4.790 31.805 -29.467 1.00 50.22 C \ ATOM 1739 CD1 LEU E 9 4.849 32.338 -30.833 1.00 60.97 C \ ATOM 1740 CD2 LEU E 9 4.068 32.755 -28.624 1.00 50.05 C \ ATOM 1741 N GLU E 10 2.135 28.517 -27.921 1.00 47.09 N \ ATOM 1742 CA GLU E 10 0.709 28.299 -27.732 1.00 46.67 C \ ATOM 1743 C GLU E 10 0.441 28.035 -26.274 1.00 45.69 C \ ATOM 1744 O GLU E 10 -0.656 28.269 -25.783 1.00 45.55 O \ ATOM 1745 CB GLU E 10 0.155 27.208 -28.653 1.00 47.58 C \ ATOM 1746 CG GLU E 10 0.466 27.438 -30.147 1.00 52.19 C \ ATOM 1747 CD GLU E 10 -0.516 28.348 -30.853 1.00 45.97 C \ ATOM 1748 OE1 GLU E 10 -1.489 28.779 -30.235 1.00 49.88 O \ ATOM 1749 OE2 GLU E 10 -0.314 28.646 -32.026 1.00 52.46 O \ ATOM 1750 N LEU E 11 1.469 27.576 -25.571 1.00 46.79 N \ ATOM 1751 CA LEU E 11 1.330 27.291 -24.158 1.00 45.30 C \ ATOM 1752 C LEU E 11 1.096 28.607 -23.494 1.00 45.55 C \ ATOM 1753 O LEU E 11 0.266 28.756 -22.599 1.00 49.22 O \ ATOM 1754 CB LEU E 11 2.590 26.699 -23.603 1.00 44.04 C \ ATOM 1755 CG LEU E 11 2.317 26.257 -22.179 1.00 43.74 C \ ATOM 1756 CD1 LEU E 11 1.325 25.152 -22.197 1.00 33.52 C \ ATOM 1757 CD2 LEU E 11 3.603 25.795 -21.482 1.00 45.18 C \ ATOM 1758 N GLN E 12 1.807 29.594 -23.967 1.00 43.40 N \ ATOM 1759 CA GLN E 12 1.595 30.901 -23.428 1.00 43.81 C \ ATOM 1760 C GLN E 12 0.218 31.425 -23.886 1.00 44.02 C \ ATOM 1761 O GLN E 12 -0.543 32.045 -23.129 1.00 43.73 O \ ATOM 1762 CB GLN E 12 2.759 31.774 -23.847 1.00 43.35 C \ ATOM 1763 CG GLN E 12 2.850 33.113 -23.141 1.00 53.54 C \ ATOM 1764 CD GLN E 12 3.205 33.044 -21.652 1.00 50.87 C \ ATOM 1765 OE1 GLN E 12 4.086 32.307 -21.243 1.00 42.62 O \ ATOM 1766 NE2 GLN E 12 2.499 33.841 -20.846 1.00 57.89 N \ ATOM 1767 N ALA E 13 -0.180 31.158 -25.113 1.00 44.92 N \ ATOM 1768 CA ALA E 13 -1.461 31.743 -25.449 1.00 42.21 C \ ATOM 1769 C ALA E 13 -2.510 31.111 -24.571 1.00 43.38 C \ ATOM 1770 O ALA E 13 -3.401 31.794 -24.086 1.00 45.16 O \ ATOM 1771 CB ALA E 13 -1.806 31.577 -26.883 1.00 42.26 C \ ATOM 1772 N ILE E 14 -2.424 29.796 -24.367 1.00 44.00 N \ ATOM 1773 CA ILE E 14 -3.422 29.181 -23.526 1.00 44.15 C \ ATOM 1774 C ILE E 14 -3.238 29.561 -22.064 1.00 45.06 C \ ATOM 1775 O ILE E 14 -4.231 29.709 -21.362 1.00 45.94 O \ ATOM 1776 CB ILE E 14 -3.556 27.681 -23.691 1.00 46.35 C \ ATOM 1777 CG1 ILE E 14 -3.201 26.998 -22.379 1.00 50.31 C \ ATOM 1778 CG2 ILE E 14 -2.737 27.114 -24.872 1.00 44.64 C \ ATOM 1779 CD1 ILE E 14 -3.686 25.548 -22.286 1.00 52.05 C \ ATOM 1780 N LYS E 15 -2.018 29.784 -21.575 1.00 43.30 N \ ATOM 1781 CA LYS E 15 -1.987 30.442 -20.275 1.00 45.11 C \ ATOM 1782 C LYS E 15 -2.847 31.689 -20.330 1.00 48.01 C \ ATOM 1783 O LYS E 15 -3.819 31.778 -19.588 1.00 51.22 O \ ATOM 1784 CB LYS E 15 -0.609 30.812 -19.807 1.00 43.85 C \ ATOM 1785 CG LYS E 15 0.199 29.625 -19.322 1.00 53.08 C \ ATOM 1786 CD LYS E 15 1.672 30.003 -19.163 1.00 55.90 C \ ATOM 1787 CE LYS E 15 2.565 28.801 -18.797 1.00 56.77 C \ ATOM 1788 NZ LYS E 15 3.594 29.148 -17.696 1.00 55.75 N \ ATOM 1789 N GLN E 16 -2.525 32.637 -21.214 1.00 47.21 N \ ATOM 1790 CA GLN E 16 -3.211 33.931 -21.215 1.00 46.98 C \ ATOM 1791 C GLN E 16 -4.711 33.927 -21.517 1.00 46.93 C \ ATOM 1792 O GLN E 16 -5.477 34.692 -20.946 1.00 49.07 O \ ATOM 1793 CB GLN E 16 -2.512 34.927 -22.131 1.00 46.63 C \ ATOM 1794 CG GLN E 16 -1.180 35.324 -21.603 1.00 52.53 C \ ATOM 1795 CD GLN E 16 -0.551 36.415 -22.407 1.00 51.50 C \ ATOM 1796 OE1 GLN E 16 0.611 36.324 -22.787 1.00 48.15 O \ ATOM 1797 NE2 GLN E 16 -1.308 37.452 -22.663 1.00 54.94 N \ ATOM 1798 N TYR E 17 -5.178 33.121 -22.437 1.00 47.59 N \ ATOM 1799 CA TYR E 17 -6.603 33.241 -22.675 1.00 47.04 C \ ATOM 1800 C TYR E 17 -7.319 32.732 -21.426 1.00 48.85 C \ ATOM 1801 O TYR E 17 -8.286 33.319 -20.974 1.00 49.53 O \ ATOM 1802 CB TYR E 17 -7.028 32.502 -23.937 1.00 44.98 C \ ATOM 1803 CG TYR E 17 -6.729 33.256 -25.195 1.00 41.90 C \ ATOM 1804 CD1 TYR E 17 -5.597 32.974 -25.953 1.00 40.06 C \ ATOM 1805 CD2 TYR E 17 -7.569 34.258 -25.630 1.00 42.79 C \ ATOM 1806 CE1 TYR E 17 -5.332 33.650 -27.126 1.00 37.34 C \ ATOM 1807 CE2 TYR E 17 -7.300 34.940 -26.781 1.00 41.48 C \ ATOM 1808 CZ TYR E 17 -6.182 34.622 -27.521 1.00 38.78 C \ ATOM 1809 OH TYR E 17 -5.894 35.306 -28.649 1.00 45.79 O \ ATOM 1810 N ARG E 18 -6.842 31.652 -20.823 1.00 50.27 N \ ATOM 1811 CA ARG E 18 -7.438 31.319 -19.544 1.00 49.72 C \ ATOM 1812 C ARG E 18 -7.431 32.487 -18.595 1.00 48.62 C \ ATOM 1813 O ARG E 18 -8.428 32.786 -17.994 1.00 51.58 O \ ATOM 1814 CB ARG E 18 -6.810 30.130 -18.858 1.00 48.77 C \ ATOM 1815 CG ARG E 18 -7.677 29.696 -17.682 1.00 48.45 C \ ATOM 1816 CD ARG E 18 -9.109 29.305 -18.053 1.00 38.99 C \ ATOM 1817 NE ARG E 18 -9.124 28.033 -18.802 1.00 33.02 N \ ATOM 1818 CZ ARG E 18 -10.209 27.502 -19.342 1.00 37.90 C \ ATOM 1819 NH1 ARG E 18 -11.390 28.135 -19.275 1.00 39.64 N \ ATOM 1820 NH2 ARG E 18 -10.124 26.336 -19.953 1.00 42.31 N \ ATOM 1821 N GLU E 19 -6.315 33.163 -18.445 1.00 47.91 N \ ATOM 1822 CA GLU E 19 -6.313 34.278 -17.517 1.00 48.21 C \ ATOM 1823 C GLU E 19 -7.455 35.147 -17.945 1.00 48.56 C \ ATOM 1824 O GLU E 19 -8.335 35.482 -17.133 1.00 49.11 O \ ATOM 1825 CB GLU E 19 -5.000 35.083 -17.567 1.00 49.13 C \ ATOM 1826 CG GLU E 19 -4.786 36.025 -16.388 1.00 51.02 C \ ATOM 1827 CD GLU E 19 -3.389 36.657 -16.307 1.00 57.02 C \ ATOM 1828 OE1 GLU E 19 -2.725 36.928 -17.328 1.00 61.89 O \ ATOM 1829 OE2 GLU E 19 -2.942 36.925 -15.185 1.00 60.40 O \ ATOM 1830 N ALA E 20 -7.446 35.487 -19.241 1.00 48.61 N \ ATOM 1831 CA ALA E 20 -8.363 36.480 -19.821 1.00 44.11 C \ ATOM 1832 C ALA E 20 -9.767 35.988 -19.665 1.00 41.87 C \ ATOM 1833 O ALA E 20 -10.682 36.763 -19.510 1.00 42.04 O \ ATOM 1834 CB ALA E 20 -8.031 36.748 -21.310 1.00 41.76 C \ ATOM 1835 N LEU E 21 -9.962 34.690 -19.685 1.00 44.33 N \ ATOM 1836 CA LEU E 21 -11.317 34.225 -19.462 1.00 49.56 C \ ATOM 1837 C LEU E 21 -11.794 34.430 -18.011 1.00 51.97 C \ ATOM 1838 O LEU E 21 -12.995 34.525 -17.800 1.00 54.46 O \ ATOM 1839 CB LEU E 21 -11.560 32.796 -19.961 1.00 48.83 C \ ATOM 1840 CG LEU E 21 -12.096 32.502 -21.375 1.00 49.71 C \ ATOM 1841 CD1 LEU E 21 -12.649 31.086 -21.478 1.00 45.29 C \ ATOM 1842 CD2 LEU E 21 -13.133 33.485 -21.792 1.00 46.02 C \ ATOM 1843 N GLU E 22 -10.879 34.543 -17.035 1.00 53.41 N \ ATOM 1844 CA GLU E 22 -11.273 34.886 -15.654 1.00 56.19 C \ ATOM 1845 C GLU E 22 -11.663 36.330 -15.366 1.00 58.04 C \ ATOM 1846 O GLU E 22 -12.340 36.579 -14.391 1.00 60.95 O \ ATOM 1847 CB GLU E 22 -10.236 34.475 -14.628 1.00 55.90 C \ ATOM 1848 CG GLU E 22 -10.844 33.973 -13.329 1.00 62.17 C \ ATOM 1849 CD GLU E 22 -11.381 32.549 -13.471 1.00 75.69 C \ ATOM 1850 OE1 GLU E 22 -10.625 31.660 -13.962 1.00 76.50 O \ ATOM 1851 OE2 GLU E 22 -12.566 32.316 -13.113 1.00 76.17 O \ ATOM 1852 N TYR E 23 -11.213 37.292 -16.156 1.00 59.13 N \ ATOM 1853 CA TYR E 23 -11.635 38.652 -15.919 1.00 61.31 C \ ATOM 1854 C TYR E 23 -13.002 38.815 -16.530 1.00 64.03 C \ ATOM 1855 O TYR E 23 -13.762 39.684 -16.110 1.00 66.92 O \ ATOM 1856 CB TYR E 23 -10.715 39.684 -16.590 1.00 62.26 C \ ATOM 1857 CG TYR E 23 -9.397 40.005 -15.903 1.00 64.94 C \ ATOM 1858 CD1 TYR E 23 -9.344 40.754 -14.737 1.00 66.32 C \ ATOM 1859 CD2 TYR E 23 -8.200 39.580 -16.449 1.00 72.61 C \ ATOM 1860 CE1 TYR E 23 -8.129 41.046 -14.115 1.00 71.70 C \ ATOM 1861 CE2 TYR E 23 -6.978 39.870 -15.845 1.00 77.28 C \ ATOM 1862 CZ TYR E 23 -6.940 40.604 -14.680 1.00 77.89 C \ ATOM 1863 OH TYR E 23 -5.713 40.889 -14.096 1.00 75.55 O \ ATOM 1864 N VAL E 24 -13.326 38.018 -17.546 1.00 65.37 N \ ATOM 1865 CA VAL E 24 -14.485 38.371 -18.370 1.00 64.84 C \ ATOM 1866 C VAL E 24 -14.964 37.265 -19.307 1.00 65.99 C \ ATOM 1867 O VAL E 24 -14.313 36.953 -20.304 1.00 68.05 O \ ATOM 1868 CB VAL E 24 -14.162 39.564 -19.222 1.00 61.71 C \ ATOM 1869 CG1 VAL E 24 -13.253 39.140 -20.294 1.00 58.11 C \ ATOM 1870 CG2 VAL E 24 -15.403 40.081 -19.807 1.00 66.18 C \ ATOM 1871 N LYS E 25 -16.121 36.696 -19.003 1.00 64.30 N \ ATOM 1872 CA LYS E 25 -16.556 35.503 -19.697 1.00 62.23 C \ ATOM 1873 C LYS E 25 -17.001 35.720 -21.152 1.00 59.80 C \ ATOM 1874 O LYS E 25 -18.050 35.267 -21.587 1.00 59.47 O \ ATOM 1875 CB LYS E 25 -17.622 34.812 -18.856 1.00 62.72 C \ ATOM 1876 CG LYS E 25 -17.013 33.998 -17.701 1.00 65.30 C \ ATOM 1877 CD LYS E 25 -16.007 32.973 -18.202 1.00 63.27 C \ ATOM 1878 CE LYS E 25 -16.616 31.555 -18.245 1.00 69.55 C \ ATOM 1879 NZ LYS E 25 -16.496 30.811 -19.552 1.00 70.61 N \ ATOM 1880 N LEU E 26 -16.212 36.417 -21.934 1.00 58.09 N \ ATOM 1881 CA LEU E 26 -16.710 36.688 -23.270 1.00 58.45 C \ ATOM 1882 C LEU E 26 -16.660 35.400 -24.019 1.00 58.32 C \ ATOM 1883 O LEU E 26 -15.624 34.767 -24.069 1.00 61.32 O \ ATOM 1884 CB LEU E 26 -15.822 37.687 -23.991 1.00 57.25 C \ ATOM 1885 CG LEU E 26 -15.711 38.904 -23.108 1.00 56.52 C \ ATOM 1886 CD1 LEU E 26 -14.952 40.032 -23.784 1.00 45.79 C \ ATOM 1887 CD2 LEU E 26 -17.138 39.276 -22.749 1.00 55.57 C \ ATOM 1888 N PRO E 27 -17.759 34.977 -24.604 1.00 58.16 N \ ATOM 1889 CA PRO E 27 -17.718 33.812 -25.491 1.00 57.11 C \ ATOM 1890 C PRO E 27 -16.514 33.730 -26.435 1.00 56.55 C \ ATOM 1891 O PRO E 27 -16.056 32.622 -26.694 1.00 55.56 O \ ATOM 1892 CB PRO E 27 -19.026 33.922 -26.260 1.00 58.27 C \ ATOM 1893 CG PRO E 27 -19.946 34.492 -25.257 1.00 58.43 C \ ATOM 1894 CD PRO E 27 -19.125 35.484 -24.437 1.00 60.04 C \ ATOM 1895 N VAL E 28 -15.988 34.844 -26.934 1.00 54.93 N \ ATOM 1896 CA VAL E 28 -15.003 34.712 -27.998 1.00 50.55 C \ ATOM 1897 C VAL E 28 -13.675 34.149 -27.550 1.00 50.55 C \ ATOM 1898 O VAL E 28 -13.121 33.341 -28.270 1.00 52.49 O \ ATOM 1899 CB VAL E 28 -14.837 35.959 -28.797 1.00 50.71 C \ ATOM 1900 CG1 VAL E 28 -14.010 36.949 -28.005 1.00 49.74 C \ ATOM 1901 CG2 VAL E 28 -14.224 35.629 -30.182 1.00 51.70 C \ ATOM 1902 N LEU E 29 -13.158 34.554 -26.386 1.00 48.73 N \ ATOM 1903 CA LEU E 29 -11.924 33.967 -25.811 1.00 48.28 C \ ATOM 1904 C LEU E 29 -12.052 32.413 -25.478 1.00 47.74 C \ ATOM 1905 O LEU E 29 -11.139 31.549 -25.696 1.00 41.40 O \ ATOM 1906 CB LEU E 29 -11.463 34.806 -24.598 1.00 48.35 C \ ATOM 1907 CG LEU E 29 -11.594 36.350 -24.647 1.00 48.77 C \ ATOM 1908 CD1 LEU E 29 -11.617 36.996 -23.273 1.00 39.48 C \ ATOM 1909 CD2 LEU E 29 -10.557 37.090 -25.507 1.00 48.59 C \ ATOM 1910 N ALA E 30 -13.204 32.023 -24.970 1.00 49.30 N \ ATOM 1911 CA ALA E 30 -13.319 30.576 -24.825 1.00 50.08 C \ ATOM 1912 C ALA E 30 -13.003 29.989 -26.192 1.00 49.23 C \ ATOM 1913 O ALA E 30 -12.250 29.043 -26.291 1.00 51.11 O \ ATOM 1914 CB ALA E 30 -14.671 30.143 -24.339 1.00 48.69 C \ ATOM 1915 N LYS E 31 -13.538 30.582 -27.251 1.00 48.74 N \ ATOM 1916 CA LYS E 31 -13.443 30.004 -28.590 1.00 48.44 C \ ATOM 1917 C LYS E 31 -12.037 30.136 -29.099 1.00 47.63 C \ ATOM 1918 O LYS E 31 -11.490 29.185 -29.636 1.00 50.64 O \ ATOM 1919 CB LYS E 31 -14.378 30.710 -29.563 1.00 50.99 C \ ATOM 1920 CG LYS E 31 -14.743 29.917 -30.823 1.00 58.86 C \ ATOM 1921 CD LYS E 31 -16.279 29.798 -30.988 1.00 72.21 C \ ATOM 1922 CE LYS E 31 -16.882 30.914 -31.853 1.00 76.90 C \ ATOM 1923 NZ LYS E 31 -17.366 30.336 -33.126 1.00 77.81 N \ ATOM 1924 N ILE E 32 -11.400 31.284 -28.915 1.00 45.23 N \ ATOM 1925 CA ILE E 32 -9.968 31.309 -29.184 1.00 40.72 C \ ATOM 1926 C ILE E 32 -9.320 30.322 -28.270 1.00 43.13 C \ ATOM 1927 O ILE E 32 -8.471 29.550 -28.685 1.00 45.32 O \ ATOM 1928 CB ILE E 32 -9.415 32.664 -28.974 1.00 39.79 C \ ATOM 1929 CG1 ILE E 32 -9.737 33.493 -30.202 1.00 39.52 C \ ATOM 1930 CG2 ILE E 32 -7.902 32.651 -28.684 1.00 37.30 C \ ATOM 1931 CD1 ILE E 32 -10.557 34.713 -29.882 1.00 39.24 C \ ATOM 1932 N LEU E 33 -9.742 30.300 -27.010 1.00 46.58 N \ ATOM 1933 CA LEU E 33 -9.080 29.404 -26.077 1.00 45.81 C \ ATOM 1934 C LEU E 33 -8.937 28.012 -26.665 1.00 48.59 C \ ATOM 1935 O LEU E 33 -7.829 27.497 -26.723 1.00 49.83 O \ ATOM 1936 CB LEU E 33 -9.737 29.441 -24.695 1.00 43.12 C \ ATOM 1937 CG LEU E 33 -9.156 28.461 -23.670 1.00 38.57 C \ ATOM 1938 CD1 LEU E 33 -7.730 28.368 -23.820 1.00 28.98 C \ ATOM 1939 CD2 LEU E 33 -9.493 28.773 -22.244 1.00 38.64 C \ ATOM 1940 N GLU E 34 -10.037 27.453 -27.165 1.00 51.28 N \ ATOM 1941 CA GLU E 34 -10.037 26.092 -27.698 1.00 56.52 C \ ATOM 1942 C GLU E 34 -9.238 26.021 -28.997 1.00 58.23 C \ ATOM 1943 O GLU E 34 -8.673 24.970 -29.308 1.00 62.11 O \ ATOM 1944 CB GLU E 34 -11.456 25.526 -27.940 1.00 58.57 C \ ATOM 1945 CG GLU E 34 -12.310 25.175 -26.713 1.00 62.68 C \ ATOM 1946 CD GLU E 34 -11.784 23.981 -25.902 1.00 75.68 C \ ATOM 1947 OE1 GLU E 34 -11.395 24.215 -24.731 1.00 79.33 O \ ATOM 1948 OE2 GLU E 34 -11.767 22.813 -26.402 1.00 73.51 O \ ATOM 1949 N ASP E 35 -9.165 27.096 -29.777 1.00 56.81 N \ ATOM 1950 CA ASP E 35 -8.284 27.006 -30.946 1.00 55.20 C \ ATOM 1951 C ASP E 35 -6.927 26.738 -30.388 1.00 55.15 C \ ATOM 1952 O ASP E 35 -6.170 25.925 -30.901 1.00 58.17 O \ ATOM 1953 CB ASP E 35 -8.172 28.320 -31.714 1.00 54.35 C \ ATOM 1954 CG ASP E 35 -9.165 28.430 -32.845 1.00 52.81 C \ ATOM 1955 OD1 ASP E 35 -10.088 27.566 -32.942 1.00 35.69 O \ ATOM 1956 OD2 ASP E 35 -9.078 29.381 -33.660 1.00 49.21 O \ ATOM 1957 N GLU E 36 -6.585 27.463 -29.345 1.00 54.11 N \ ATOM 1958 CA GLU E 36 -5.216 27.428 -28.938 1.00 54.24 C \ ATOM 1959 C GLU E 36 -4.994 26.105 -28.233 1.00 54.84 C \ ATOM 1960 O GLU E 36 -3.889 25.721 -27.953 1.00 57.12 O \ ATOM 1961 CB GLU E 36 -4.888 28.621 -28.053 1.00 54.84 C \ ATOM 1962 CG GLU E 36 -4.996 29.999 -28.711 1.00 54.56 C \ ATOM 1963 CD GLU E 36 -4.116 30.170 -29.948 1.00 53.61 C \ ATOM 1964 OE1 GLU E 36 -3.653 29.144 -30.468 1.00 56.12 O \ ATOM 1965 OE2 GLU E 36 -3.915 31.306 -30.437 1.00 44.88 O \ ATOM 1966 N GLU E 37 -6.057 25.390 -27.930 1.00 54.91 N \ ATOM 1967 CA GLU E 37 -5.881 24.134 -27.246 1.00 52.85 C \ ATOM 1968 C GLU E 37 -5.610 23.163 -28.392 1.00 55.29 C \ ATOM 1969 O GLU E 37 -4.794 22.251 -28.285 1.00 56.73 O \ ATOM 1970 CB GLU E 37 -7.133 23.806 -26.432 1.00 52.07 C \ ATOM 1971 CG GLU E 37 -7.177 24.459 -25.051 1.00 45.28 C \ ATOM 1972 CD GLU E 37 -8.454 24.123 -24.296 1.00 52.25 C \ ATOM 1973 OE1 GLU E 37 -9.333 23.421 -24.884 1.00 44.92 O \ ATOM 1974 OE2 GLU E 37 -8.576 24.548 -23.108 1.00 48.50 O \ ATOM 1975 N LYS E 38 -6.248 23.411 -29.527 1.00 56.67 N \ ATOM 1976 CA LYS E 38 -6.089 22.558 -30.694 1.00 56.03 C \ ATOM 1977 C LYS E 38 -4.733 22.791 -31.354 1.00 56.66 C \ ATOM 1978 O LYS E 38 -4.190 21.905 -32.020 1.00 56.12 O \ ATOM 1979 CB LYS E 38 -7.221 22.827 -31.668 1.00 57.46 C \ ATOM 1980 CG LYS E 38 -6.937 22.437 -33.091 1.00 60.77 C \ ATOM 1981 CD LYS E 38 -8.222 22.473 -33.903 1.00 69.34 C \ ATOM 1982 CE LYS E 38 -8.372 23.837 -34.599 1.00 76.28 C \ ATOM 1983 NZ LYS E 38 -9.223 23.816 -35.828 1.00 80.22 N \ ATOM 1984 N HIS E 39 -4.159 23.974 -31.163 1.00 55.88 N \ ATOM 1985 CA HIS E 39 -2.894 24.234 -31.814 1.00 55.47 C \ ATOM 1986 C HIS E 39 -1.786 23.546 -31.129 1.00 55.48 C \ ATOM 1987 O HIS E 39 -0.914 23.023 -31.789 1.00 60.46 O \ ATOM 1988 CB HIS E 39 -2.536 25.699 -31.809 1.00 58.43 C \ ATOM 1989 CG HIS E 39 -3.467 26.542 -32.602 1.00 54.58 C \ ATOM 1990 ND1 HIS E 39 -3.448 27.915 -32.537 1.00 42.16 N \ ATOM 1991 CD2 HIS E 39 -4.462 26.207 -33.452 1.00 49.85 C \ ATOM 1992 CE1 HIS E 39 -4.373 28.392 -33.345 1.00 51.37 C \ ATOM 1993 NE2 HIS E 39 -5.017 27.376 -33.894 1.00 50.22 N \ ATOM 1994 N ILE E 40 -1.759 23.593 -29.808 1.00 53.49 N \ ATOM 1995 CA ILE E 40 -0.645 22.980 -29.099 1.00 51.91 C \ ATOM 1996 C ILE E 40 -0.769 21.488 -29.314 1.00 50.84 C \ ATOM 1997 O ILE E 40 0.225 20.792 -29.390 1.00 48.61 O \ ATOM 1998 CB ILE E 40 -0.700 23.298 -27.608 1.00 51.88 C \ ATOM 1999 CG1 ILE E 40 0.531 22.772 -26.883 1.00 51.86 C \ ATOM 2000 CG2 ILE E 40 -1.833 22.588 -27.021 1.00 56.43 C \ ATOM 2001 CD1 ILE E 40 1.239 23.808 -26.071 1.00 53.42 C \ ATOM 2002 N GLU E 41 -1.987 20.980 -29.442 1.00 51.91 N \ ATOM 2003 CA GLU E 41 -2.096 19.537 -29.660 1.00 54.43 C \ ATOM 2004 C GLU E 41 -1.727 19.144 -31.043 1.00 53.47 C \ ATOM 2005 O GLU E 41 -1.263 18.043 -31.256 1.00 56.83 O \ ATOM 2006 CB GLU E 41 -3.437 18.927 -29.312 1.00 55.29 C \ ATOM 2007 CG GLU E 41 -3.469 17.463 -29.649 1.00 59.27 C \ ATOM 2008 CD GLU E 41 -4.619 17.166 -30.556 1.00 76.55 C \ ATOM 2009 OE1 GLU E 41 -5.793 17.366 -30.125 1.00 82.19 O \ ATOM 2010 OE2 GLU E 41 -4.342 16.758 -31.702 1.00 83.09 O \ ATOM 2011 N TRP E 42 -1.892 20.031 -32.000 1.00 51.70 N \ ATOM 2012 CA TRP E 42 -1.325 19.712 -33.294 1.00 50.56 C \ ATOM 2013 C TRP E 42 0.208 19.723 -33.220 1.00 50.31 C \ ATOM 2014 O TRP E 42 0.869 18.749 -33.586 1.00 53.93 O \ ATOM 2015 CB TRP E 42 -1.783 20.715 -34.351 1.00 53.44 C \ ATOM 2016 CG TRP E 42 -3.183 20.586 -34.847 1.00 47.43 C \ ATOM 2017 CD1 TRP E 42 -3.965 19.500 -34.775 1.00 44.75 C \ ATOM 2018 CD2 TRP E 42 -3.952 21.598 -35.494 1.00 41.96 C \ ATOM 2019 NE1 TRP E 42 -5.197 19.773 -35.320 1.00 50.64 N \ ATOM 2020 CE2 TRP E 42 -5.203 21.058 -35.778 1.00 47.60 C \ ATOM 2021 CE3 TRP E 42 -3.706 22.913 -35.859 1.00 45.02 C \ ATOM 2022 CZ2 TRP E 42 -6.202 21.774 -36.423 1.00 50.41 C \ ATOM 2023 CZ3 TRP E 42 -4.709 23.637 -36.496 1.00 40.66 C \ ATOM 2024 CH2 TRP E 42 -5.930 23.066 -36.775 1.00 46.03 C \ ATOM 2025 N LEU E 43 0.796 20.822 -32.808 1.00 45.20 N \ ATOM 2026 CA LEU E 43 2.229 20.834 -32.758 1.00 42.45 C \ ATOM 2027 C LEU E 43 2.729 19.676 -31.976 1.00 45.40 C \ ATOM 2028 O LEU E 43 3.681 19.031 -32.382 1.00 46.13 O \ ATOM 2029 CB LEU E 43 2.690 22.078 -32.124 1.00 41.39 C \ ATOM 2030 CG LEU E 43 2.079 23.180 -32.931 1.00 40.15 C \ ATOM 2031 CD1 LEU E 43 2.328 24.538 -32.299 1.00 42.17 C \ ATOM 2032 CD2 LEU E 43 2.589 23.139 -34.364 1.00 49.92 C \ ATOM 2033 N GLU E 44 2.129 19.371 -30.861 1.00 50.39 N \ ATOM 2034 CA GLU E 44 2.744 18.391 -29.968 1.00 55.72 C \ ATOM 2035 C GLU E 44 2.684 17.062 -30.731 1.00 56.94 C \ ATOM 2036 O GLU E 44 3.684 16.348 -30.842 1.00 59.42 O \ ATOM 2037 CB GLU E 44 2.121 18.383 -28.550 1.00 55.45 C \ ATOM 2038 CG GLU E 44 2.378 17.135 -27.703 1.00 69.26 C \ ATOM 2039 CD GLU E 44 3.848 16.907 -27.251 1.00 90.54 C \ ATOM 2040 OE1 GLU E 44 4.671 17.869 -27.241 1.00 94.65 O \ ATOM 2041 OE2 GLU E 44 4.193 15.739 -26.877 1.00 95.48 O \ ATOM 2042 N THR E 45 1.550 16.761 -31.340 1.00 56.16 N \ ATOM 2043 CA THR E 45 1.531 15.639 -32.261 1.00 56.03 C \ ATOM 2044 C THR E 45 2.762 15.638 -33.170 1.00 56.81 C \ ATOM 2045 O THR E 45 3.435 14.625 -33.330 1.00 58.97 O \ ATOM 2046 CB THR E 45 0.316 15.713 -33.181 1.00 56.43 C \ ATOM 2047 OG1 THR E 45 -0.862 15.279 -32.503 1.00 52.24 O \ ATOM 2048 CG2 THR E 45 0.458 14.716 -34.280 1.00 55.70 C \ ATOM 2049 N ILE E 46 3.049 16.726 -33.854 1.00 56.04 N \ ATOM 2050 CA ILE E 46 4.038 16.519 -34.883 1.00 56.46 C \ ATOM 2051 C ILE E 46 5.322 16.527 -34.187 1.00 57.32 C \ ATOM 2052 O ILE E 46 6.265 15.916 -34.638 1.00 60.66 O \ ATOM 2053 CB ILE E 46 4.069 17.613 -35.912 1.00 57.78 C \ ATOM 2054 CG1 ILE E 46 3.033 17.370 -36.990 1.00 54.26 C \ ATOM 2055 CG2 ILE E 46 5.419 17.694 -36.503 1.00 56.09 C \ ATOM 2056 CD1 ILE E 46 1.877 18.193 -36.741 1.00 58.29 C \ ATOM 2057 N LEU E 47 5.361 17.227 -33.067 1.00 58.82 N \ ATOM 2058 CA LEU E 47 6.628 17.415 -32.359 1.00 63.44 C \ ATOM 2059 C LEU E 47 7.049 16.307 -31.425 1.00 64.23 C \ ATOM 2060 O LEU E 47 8.234 16.059 -31.246 1.00 60.09 O \ ATOM 2061 CB LEU E 47 6.656 18.734 -31.604 1.00 61.02 C \ ATOM 2062 CG LEU E 47 7.029 19.711 -32.677 1.00 65.80 C \ ATOM 2063 CD1 LEU E 47 7.379 21.040 -32.061 1.00 78.27 C \ ATOM 2064 CD2 LEU E 47 8.178 19.136 -33.502 1.00 64.93 C \ ATOM 2065 N GLY E 48 6.059 15.696 -30.793 1.00 68.95 N \ ATOM 2066 CA GLY E 48 6.303 14.750 -29.725 1.00 75.32 C \ ATOM 2067 C GLY E 48 6.726 13.474 -30.392 1.00 77.76 C \ ATOM 2068 O GLY E 48 7.585 13.522 -31.270 1.00 80.66 O \ HETATM 2069 N NH2 E 49 6.101 12.367 -30.003 1.00 79.14 N \ TER 2070 NH2 E 49 \ TER 2484 NH2 F 49 \ HETATM 2490 CO CO E 105 -2.455 29.126 -31.677 1.00 51.36 CO \ CONECT 1 2 3 4 \ CONECT 2 1 \ CONECT 3 1 \ CONECT 4 1 \ CONECT 92 2485 \ CONECT 93 2485 \ CONECT 308 2485 \ CONECT 309 2486 \ CONECT 334 2485 \ CONECT 411 413 \ CONECT 413 411 \ CONECT 415 416 417 418 \ CONECT 416 415 \ CONECT 417 415 \ CONECT 418 415 \ CONECT 506 2486 \ CONECT 507 2486 \ CONECT 722 2486 \ CONECT 723 2485 \ CONECT 748 2486 \ CONECT 825 827 \ CONECT 827 825 \ CONECT 829 830 831 832 \ CONECT 830 829 \ CONECT 831 829 \ CONECT 832 829 \ CONECT 920 2487 \ CONECT 921 2487 \ CONECT 1000 2488 \ CONECT 1136 2487 \ CONECT 1137 2489 \ CONECT 1162 2487 \ CONECT 1239 1241 \ CONECT 1241 1239 \ CONECT 1243 1244 1245 1246 \ CONECT 1244 1243 \ CONECT 1245 1243 \ CONECT 1246 1243 \ CONECT 1334 2489 \ CONECT 1335 2489 \ CONECT 1550 2489 \ CONECT 1551 2487 2489 \ CONECT 1576 2489 \ CONECT 1653 1655 \ CONECT 1655 1653 \ CONECT 1657 1658 1659 1660 \ CONECT 1658 1657 \ CONECT 1659 1657 \ CONECT 1660 1657 \ CONECT 1748 2490 \ CONECT 1749 2490 \ CONECT 1964 2490 \ CONECT 1965 2491 \ CONECT 1990 2490 \ CONECT 2067 2069 \ CONECT 2069 2067 \ CONECT 2071 2072 2073 2074 \ CONECT 2072 2071 \ CONECT 2073 2071 \ CONECT 2074 2071 \ CONECT 2162 2491 \ CONECT 2163 2491 \ CONECT 2378 2491 \ CONECT 2379 2490 \ CONECT 2404 2491 \ CONECT 2481 2483 \ CONECT 2483 2481 \ CONECT 2485 92 93 308 334 \ CONECT 2485 723 \ CONECT 2486 309 506 507 722 \ CONECT 2486 748 \ CONECT 2487 920 921 1136 1162 \ CONECT 2487 1551 \ CONECT 2488 1000 \ CONECT 2489 1137 1334 1335 1550 \ CONECT 2489 1551 1576 \ CONECT 2490 1748 1749 1964 1990 \ CONECT 2490 2379 \ CONECT 2491 1965 2162 2163 2378 \ CONECT 2491 2404 \ MASTER 460 0 19 12 0 0 9 6 2492 6 80 24 \ END \ """, "1ovvchainE") cmd.hide("all") cmd.color('grey70', "1ovvchainE") cmd.show('cartoon', "1ovvchainE") cmd.center("1ovvchainE", state=0, origin=1) cmd.zoom("1ovvchainE", animate=-1) cmd.select("e1ovvE1", "c. E & i. 0-49") cmd.color("red", "e1ovvE1") cmd.disable("e1ovvE1")