cmd.read_pdbstr("""\ HEADER HORMONE 26-APR-11 3ROV \ TITLE INSULIN'S BIOSYNTHESIS AND ACTIVITY HAVE OPPOSING STRUCTURAL \ TITLE 2 REQUIREMENTS: A NEW FACTOR IN NEONATAL DIABETES MELLITUS \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: INSULIN; \ COMPND 3 CHAIN: A, C, E, G, I, K; \ COMPND 4 SYNONYM: INSULIN A CHAIN; \ COMPND 5 ENGINEERED: YES; \ COMPND 6 MOL_ID: 2; \ COMPND 7 MOLECULE: INSULIN; \ COMPND 8 CHAIN: B, D, F, H, J, L; \ COMPND 9 SYNONYM: INSULIN B CHAIN; \ COMPND 10 ENGINEERED: YES; \ COMPND 11 MUTATION: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 SYNTHETIC: YES; \ SOURCE 3 ORGANISM_SCIENTIFIC: HOMO SAPIENS; \ SOURCE 4 ORGANISM_COMMON: HUMAN; \ SOURCE 5 ORGANISM_TAXID: 9606; \ SOURCE 6 OTHER_DETAILS: THIS SEQUENCE OCCURS NATURALLY IN HUMANS; \ SOURCE 7 MOL_ID: 2; \ SOURCE 8 SYNTHETIC: YES; \ SOURCE 9 ORGANISM_SCIENTIFIC: HOMO SAPIENS; \ SOURCE 10 ORGANISM_COMMON: HUMAN; \ SOURCE 11 ORGANISM_TAXID: 9606 \ KEYWDS ZINC-BINDING SITE, LONG-ACTING INSULIN ANALOG, RECEPTOR BINDING \ KEYWDS 2 PROTEIN ENGINEERING, GLOBAL HEALTH, INSULIN FIBRILLATION, \ KEYWDS 3 STABILIZING, HORMONE \ EXPDTA X-RAY DIFFRACTION \ AUTHOR M.A.WEISS,Z.L.WAN,E.J.DODSON,M.LIU,B.XU,Q.X.HUA,M.TURKENBURG, \ AUTHOR 2 J.WHITTINGHAM,S.H.NAKAGAWA,K.HUANG,S.Q.HU,W.H.JIA,S.H.WANG,J.BRANGE, \ AUTHOR 3 J.WHITTAKER,P.ARVAN,P.G.KATSOYANNIS,G.G.DODSON \ REVDAT 4 20-NOV-24 3ROV 1 REMARK \ REVDAT 3 13-SEP-23 3ROV 1 REMARK SEQADV LINK \ REVDAT 2 08-NOV-17 3ROV 1 REMARK \ REVDAT 1 02-MAY-12 3ROV 0 \ JRNL AUTH M.A.WEISS,Z.L.WAN,E.J.DODSON,M.LIU,B.XU,Q.X.HUA, \ JRNL AUTH 2 M.TURKENBURG,J.WHITTINGHAM,S.H.NAKAGAWA,K.HUANG,S.Q.HU, \ JRNL AUTH 3 W.H.JIA,S.H.WANG,J.BRANGE,J.WHITTAKER,P.ARVAN, \ JRNL AUTH 4 P.G.KATSOYANNIS,G.G.DODSON \ JRNL TITL INSULIN'S BIOSYNTHESIS AND ACTIVITY HAVE OPPOSING STRUCTURAL \ JRNL TITL 2 REQUIREMENTS: A NEW FACTOR IN NEONATAL DIABETES MELLITUS \ JRNL REF TO BE PUBLISHED \ JRNL REFN \ REMARK 1 \ REMARK 1 REFERENCE 1 \ REMARK 1 AUTH Z.L.WAN,K.HUANG,B.XU,S.Q.HU,S.WANG,Y.C.CHU,P.G.KATSOYANNIS, \ REMARK 1 AUTH 2 M.A.WEISS \ REMARK 1 TITL DIABETES-ASSOCIATED MUTATIONS IN HUMAN INSULIN: CRYSTAL \ REMARK 1 TITL 2 STRUCTURE AND PHOTO-CROSS-LINKING STUDIES OF A-CHAIN VARIANT \ REMARK 1 TITL 3 INSULIN WAKAYAMA. \ REMARK 1 REF BIOCHEMISTRY V. 44 5000 2005 \ REMARK 1 REFN ISSN 0006-2960 \ REMARK 1 REFERENCE 2 \ REMARK 1 AUTH Z.L.WAN,B.XU,Y.C.CHU,P.G.KATSOYANNIS,M.A.WEISS \ REMARK 1 TITL CRYSTAL STRUCTURE OF ALLO-ILE(A2)-INSULIN, AN INACTIVE \ REMARK 1 TITL 2 CHIRAL ANALOGUE: IMPLICATIONS FOR THE MECHANISM OF RECEPTOR \ REMARK 1 TITL 3 BINDING \ REMARK 1 REF BIOCHEMISTRY V. 42 12770 2003 \ REMARK 1 REFN ISSN 0006-2960 \ REMARK 1 REFERENCE 3 \ REMARK 1 AUTH Z.L.WAN,B.XU,Y.C.CHU,B.LI,S.H.NAKAGAWA,Y.QU,S.Q.HU, \ REMARK 1 AUTH 2 P.G.KATSOYANNIS,M.A.WEISS \ REMARK 1 TITL ENHANCING THE ACTIVITY OF INSULIN AT THE RECEPTOR INTERFACE: \ REMARK 1 TITL 2 CRYSTAL STRUCTURE AND PHOTO-CROSS-LINKING OF A8 ANALOGUES. \ REMARK 1 REF BIOCHEMISTRY V. 43 16119 2003 \ REMARK 1 REFN ISSN 0006-2960 \ REMARK 1 REFERENCE 4 \ REMARK 1 AUTH E.N.BAKER,T.L.BLUNDELL,J.F.CUTFIELD,S.M.CUTFIELD,E.J.DODSON, \ REMARK 1 AUTH 2 G.G.DODSON,D.HODGKIN,N.W.ISAACS,C.D.REYNOLDS \ REMARK 1 TITL THE STRUCTURE OF 2ZN PIG INSULIN CRYSTAL AT 1.5 A RESOLUTION \ REMARK 1 REF PHILOS.TRANS.R.SOC.LONDON, V. 319 369 1988 \ REMARK 1 REF 2 SER.B \ REMARK 1 REFN ISSN 0080-4622 \ REMARK 1 REFERENCE 5 \ REMARK 1 AUTH G.BENTLEY,E.DODSON,G.DODSON,D.HODGKIN,D.MERCOLA \ REMARK 1 TITL STRUCTURE OF INSULIN IN 4-ZINC INSULIN \ REMARK 1 REF NATURE V. 261 166 1976 \ REMARK 1 REFN ISSN 0028-0836 \ REMARK 1 REFERENCE 6 \ REMARK 1 AUTH U.DEREWENDA,Z.DEREWENDA,E.DODSON,G.DODSON,C.REYNOLD,G.SMITH, \ REMARK 1 AUTH 2 C.SPARKS,D.SWENSON \ REMARK 1 TITL PHENOL STABILIZES MORE HELIX IN A NEW SYMMETRICAL ZINC \ REMARK 1 TITL 2 INSULIN HEXAMER \ REMARK 1 REF NATURE V. 338 594 1989 \ REMARK 1 REFN ISSN 0028-0836 \ REMARK 2 \ REMARK 2 RESOLUTION. 2.30 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : CNS \ REMARK 3 AUTHORS : BRUNGER,ADAMS,CLORE,DELANO,GROS,GROSSE- \ REMARK 3 : KUNSTLEVE,JIANG,KUSZEWSKI,NILGES,PANNU, \ REMARK 3 : READ,RICE,SIMONSON,WARREN \ REMARK 3 \ REMARK 3 REFINEMENT TARGET : ENGH & HUBER \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 2.30 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 44.36 \ REMARK 3 DATA CUTOFF (SIGMA(F)) : 0.000 \ REMARK 3 DATA CUTOFF HIGH (ABS(F)) : NULL \ REMARK 3 DATA CUTOFF LOW (ABS(F)) : NULL \ REMARK 3 COMPLETENESS (WORKING+TEST) (%) : 95.9 \ REMARK 3 NUMBER OF REFLECTIONS : 10280 \ 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 SET) : 0.218 \ REMARK 3 FREE R VALUE : 0.307 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : NULL \ REMARK 3 FREE R VALUE TEST SET COUNT : 1032 \ REMARK 3 ESTIMATED ERROR OF FREE R VALUE : NULL \ 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) : 2.30 \ REMARK 3 BIN RESOLUTION RANGE LOW (A) : 2.44 \ REMARK 3 BIN COMPLETENESS (WORKING+TEST) (%) : 94.20 \ REMARK 3 REFLECTIONS IN BIN (WORKING SET) : NULL \ REMARK 3 BIN R VALUE (WORKING SET) : 0.2770 \ REMARK 3 BIN FREE R VALUE : 0.4180 \ REMARK 3 BIN FREE R VALUE TEST SET SIZE (%) : NULL \ REMARK 3 BIN FREE R VALUE TEST SET COUNT : 132 \ REMARK 3 ESTIMATED ERROR OF BIN FREE R VALUE : 0.034 \ REMARK 3 \ REMARK 3 NUMBER OF NON-HYDROGEN ATOMS USED IN REFINEMENT. \ REMARK 3 PROTEIN ATOMS : 2442 \ REMARK 3 NUCLEIC ACID ATOMS : 0 \ REMARK 3 HETEROGEN ATOMS : 46 \ REMARK 3 SOLVENT ATOMS : 186 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : 21.50 \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 36.30 \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : 0.28000 \ REMARK 3 B22 (A**2) : -0.38000 \ REMARK 3 B33 (A**2) : 0.10000 \ REMARK 3 B12 (A**2) : 0.00000 \ REMARK 3 B13 (A**2) : -0.58000 \ REMARK 3 B23 (A**2) : 0.00000 \ REMARK 3 \ REMARK 3 ESTIMATED COORDINATE ERROR. \ REMARK 3 ESD FROM LUZZATI PLOT (A) : 0.29 \ REMARK 3 ESD FROM SIGMAA (A) : 0.24 \ REMARK 3 LOW RESOLUTION CUTOFF (A) : NULL \ REMARK 3 \ REMARK 3 CROSS-VALIDATED ESTIMATED COORDINATE ERROR. \ REMARK 3 ESD FROM C-V LUZZATI PLOT (A) : NULL \ REMARK 3 ESD FROM C-V SIGMAA (A) : NULL \ REMARK 3 \ REMARK 3 RMS DEVIATIONS FROM IDEAL VALUES. \ REMARK 3 BOND LENGTHS (A) : NULL \ REMARK 3 BOND ANGLES (DEGREES) : 1.400 \ REMARK 3 DIHEDRAL ANGLES (DEGREES) : 21.20 \ REMARK 3 IMPROPER ANGLES (DEGREES) : 3.790 \ REMARK 3 \ REMARK 3 ISOTROPIC THERMAL MODEL : RESTRAINED \ REMARK 3 \ REMARK 3 ISOTROPIC THERMAL FACTOR RESTRAINTS. RMS SIGMA \ REMARK 3 MAIN-CHAIN BOND (A**2) : NULL ; NULL \ REMARK 3 MAIN-CHAIN ANGLE (A**2) : NULL ; NULL \ REMARK 3 SIDE-CHAIN BOND (A**2) : NULL ; NULL \ REMARK 3 SIDE-CHAIN ANGLE (A**2) : NULL ; NULL \ REMARK 3 \ REMARK 3 BULK SOLVENT MODELING. \ REMARK 3 METHOD USED : NULL \ REMARK 3 KSOL : NULL \ REMARK 3 BSOL : NULL \ REMARK 3 \ REMARK 3 NCS MODEL : NULL \ REMARK 3 \ REMARK 3 NCS RESTRAINTS. RMS SIGMA/WEIGHT \ REMARK 3 GROUP 1 POSITIONAL (A) : NULL ; NULL \ REMARK 3 GROUP 1 B-FACTOR (A**2) : NULL ; NULL \ REMARK 3 \ REMARK 3 PARAMETER FILE 1 : NULL \ REMARK 3 TOPOLOGY FILE 1 : NULL \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: NULL \ REMARK 4 \ REMARK 4 3ROV COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 29-APR-11. \ REMARK 100 THE DEPOSITION ID IS D_1000065196. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 09-OCT-01 \ REMARK 200 TEMPERATURE (KELVIN) : 100 \ REMARK 200 PH : 8.3 \ 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 : RIGAKU RU200 \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 1.5418 \ REMARK 200 MONOCHROMATOR : MIRROR \ REMARK 200 OPTICS : DOUBLE CRYSTAL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : IMAGE PLATE \ REMARK 200 DETECTOR MANUFACTURER : RIGAKU RAXIS IV \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : DENZO \ REMARK 200 DATA SCALING SOFTWARE : SCALEPACK \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 10607 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 2.300 \ REMARK 200 RESOLUTION RANGE LOW (A) : 44.360 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : 0.000 \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 95.9 \ REMARK 200 DATA REDUNDANCY : 2.100 \ REMARK 200 R MERGE (I) : 0.05700 \ REMARK 200 R SYM (I) : NULL \ REMARK 200 FOR THE DATA SET : 12.1000 \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : 2.30 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 2.44 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 91.1 \ REMARK 200 DATA REDUNDANCY IN SHELL : 3.00 \ REMARK 200 R MERGE FOR SHELL (I) : 0.23200 \ REMARK 200 R SYM FOR SHELL (I) : NULL \ REMARK 200 FOR SHELL : 32.80 \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: SINGLE WAVELENGTH \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: MOLECULAR REPLACEMENT \ REMARK 200 SOFTWARE USED: CNS \ REMARK 200 STARTING MODEL: 1ZNJ \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 31.05 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 1.78 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: 0.05 M SODIUM CITRATE, 1% PHENOL, \ REMARK 280 0.04% ZINC ACETATE, PH 8.3, VAPOR DIFFUSION, HANGING DROP, \ REMARK 280 TEMPERATURE 298K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P 1 21 1 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -X,Y+1/2,-Z \ REMARK 290 \ REMARK 290 WHERE NNN -> OPERATOR NUMBER \ REMARK 290 MMM -> TRANSLATION VECTOR \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY TRANSFORMATIONS \ REMARK 290 THE FOLLOWING TRANSFORMATIONS OPERATE ON THE ATOM/HETATM \ REMARK 290 RECORDS IN THIS ENTRY TO PRODUCE CRYSTALLOGRAPHICALLY \ REMARK 290 RELATED MOLECULES. \ REMARK 290 SMTRY1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 2 -1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 2 0.000000 1.000000 0.000000 30.88600 \ REMARK 290 SMTRY3 2 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: DODECAMERIC \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, C, D, E, F, G, H, I, J, \ REMARK 350 AND CHAINS: K, L \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 2 \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TETRAMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 4090 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 6850 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -43.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, 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 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TETRAMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 3870 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 6910 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -29.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: E, F, G, H \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 4 \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TETRAMERIC \ REMARK 350 SOFTWARE USED: PISA \ REMARK 350 TOTAL BURIED SURFACE AREA: 3910 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 6890 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -31.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: I, J, K, L \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: CLOSE CONTACTS IN SAME ASYMMETRIC UNIT \ REMARK 500 \ REMARK 500 THE FOLLOWING ATOMS ARE IN CLOSE CONTACT. \ REMARK 500 \ REMARK 500 ATM1 RES C SSEQI ATM2 RES C SSEQI DISTANCE \ REMARK 500 ND2 ASN G 21 O ARG H 22 2.18 \ 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 PRO D 29 58.59 -65.85 \ REMARK 500 DAL F 20 -107.12 48.35 \ REMARK 500 DAL F 23 178.81 52.46 \ REMARK 500 PRO H 29 69.79 -51.87 \ REMARK 500 CYS I 20 -166.35 -75.10 \ REMARK 500 DAL L 20 -86.57 33.86 \ 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 ZN B 31 ZN \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 HIS B 10 NE2 \ REMARK 620 2 HIS F 10 NE2 110.2 \ REMARK 620 3 HIS J 10 NE2 106.3 103.0 \ REMARK 620 N 1 2 \ REMARK 620 \ REMARK 620 COORDINATION ANGLES FOR: M RES CSSEQI METAL \ REMARK 620 ZN D 31 ZN \ REMARK 620 N RES CSSEQI ATOM \ REMARK 620 1 HIS D 10 NE2 \ REMARK 620 2 HIS H 10 NE2 108.3 \ REMARK 620 3 HIS L 10 NE2 102.6 90.7 \ REMARK 620 N 1 2 \ REMARK 800 \ REMARK 800 SITE \ REMARK 800 SITE_IDENTIFIER: AC1 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE IPH A 22 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC2 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE ZN B 31 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC3 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CL B 32 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC4 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE IPH C 22 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC5 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE ZN D 31 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC6 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE IPH E 22 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC7 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE IPH G 22 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC8 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE CL H 31 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: AC9 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE IPH I 22 \ REMARK 800 \ REMARK 800 SITE_IDENTIFIER: BC1 \ REMARK 800 EVIDENCE_CODE: SOFTWARE \ REMARK 800 SITE_DESCRIPTION: BINDING SITE FOR RESIDUE IPH K 22 \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 1ZNJ RELATED DB: PDB \ REMARK 900 RR STATE INSULIN CRYSTAL STRUCTURE \ DBREF 3ROV A 1 21 UNP P01308 INS_HUMAN 90 110 \ DBREF 3ROV B 1 30 UNP P01308 INS_HUMAN 25 54 \ DBREF 3ROV C 1 21 UNP P01308 INS_HUMAN 90 110 \ DBREF 3ROV D 1 30 UNP P01308 INS_HUMAN 25 54 \ DBREF 3ROV E 1 21 UNP P01308 INS_HUMAN 90 110 \ DBREF 3ROV F 1 30 UNP P01308 INS_HUMAN 25 54 \ DBREF 3ROV G 1 21 UNP P01308 INS_HUMAN 90 110 \ DBREF 3ROV H 1 30 UNP P01308 INS_HUMAN 25 54 \ DBREF 3ROV I 1 21 UNP P01308 INS_HUMAN 90 110 \ DBREF 3ROV J 1 30 UNP P01308 INS_HUMAN 25 54 \ DBREF 3ROV K 1 21 UNP P01308 INS_HUMAN 90 110 \ DBREF 3ROV L 1 30 UNP P01308 INS_HUMAN 25 54 \ SEQADV 3ROV DAL B 20 UNP P01308 GLY 44 ENGINEERED MUTATION \ SEQADV 3ROV DAL B 23 UNP P01308 GLY 47 ENGINEERED MUTATION \ SEQADV 3ROV LYS B 28 UNP P01308 PRO 52 ENGINEERED MUTATION \ SEQADV 3ROV PRO B 29 UNP P01308 LYS 53 ENGINEERED MUTATION \ SEQADV 3ROV DAL D 20 UNP P01308 GLY 44 ENGINEERED MUTATION \ SEQADV 3ROV DAL D 23 UNP P01308 GLY 47 ENGINEERED MUTATION \ SEQADV 3ROV LYS D 28 UNP P01308 PRO 52 ENGINEERED MUTATION \ SEQADV 3ROV PRO D 29 UNP P01308 LYS 53 ENGINEERED MUTATION \ SEQADV 3ROV DAL F 20 UNP P01308 GLY 44 ENGINEERED MUTATION \ SEQADV 3ROV DAL F 23 UNP P01308 GLY 47 ENGINEERED MUTATION \ SEQADV 3ROV LYS F 28 UNP P01308 PRO 52 ENGINEERED MUTATION \ SEQADV 3ROV PRO F 29 UNP P01308 LYS 53 ENGINEERED MUTATION \ SEQADV 3ROV DAL H 20 UNP P01308 GLY 44 ENGINEERED MUTATION \ SEQADV 3ROV DAL H 23 UNP P01308 GLY 47 ENGINEERED MUTATION \ SEQADV 3ROV LYS H 28 UNP P01308 PRO 52 ENGINEERED MUTATION \ SEQADV 3ROV PRO H 29 UNP P01308 LYS 53 ENGINEERED MUTATION \ SEQADV 3ROV DAL J 20 UNP P01308 GLY 44 ENGINEERED MUTATION \ SEQADV 3ROV DAL J 23 UNP P01308 GLY 47 ENGINEERED MUTATION \ SEQADV 3ROV LYS J 28 UNP P01308 PRO 52 ENGINEERED MUTATION \ SEQADV 3ROV PRO J 29 UNP P01308 LYS 53 ENGINEERED MUTATION \ SEQADV 3ROV DAL L 20 UNP P01308 GLY 44 ENGINEERED MUTATION \ SEQADV 3ROV DAL L 23 UNP P01308 GLY 47 ENGINEERED MUTATION \ SEQADV 3ROV LYS L 28 UNP P01308 PRO 52 ENGINEERED MUTATION \ SEQADV 3ROV PRO L 29 UNP P01308 LYS 53 ENGINEERED MUTATION \ SEQRES 1 A 21 GLY ILE VAL GLU GLN CYS CYS THR SER ILE CYS SER LEU \ SEQRES 2 A 21 TYR GLN LEU GLU ASN TYR CYS ASN \ SEQRES 1 B 30 PHE VAL ASN GLN HIS LEU CYS GLY SER HIS LEU VAL GLU \ SEQRES 2 B 30 ALA LEU TYR LEU VAL CYS DAL GLU ARG DAL PHE PHE TYR \ SEQRES 3 B 30 THR LYS PRO THR \ SEQRES 1 C 21 GLY ILE VAL GLU GLN CYS CYS THR SER ILE CYS SER LEU \ SEQRES 2 C 21 TYR GLN LEU GLU ASN TYR CYS ASN \ SEQRES 1 D 30 PHE VAL ASN GLN HIS LEU CYS GLY SER HIS LEU VAL GLU \ SEQRES 2 D 30 ALA LEU TYR LEU VAL CYS DAL GLU ARG DAL PHE PHE TYR \ SEQRES 3 D 30 THR LYS PRO THR \ SEQRES 1 E 21 GLY ILE VAL GLU GLN CYS CYS THR SER ILE CYS SER LEU \ SEQRES 2 E 21 TYR GLN LEU GLU ASN TYR CYS ASN \ SEQRES 1 F 30 PHE VAL ASN GLN HIS LEU CYS GLY SER HIS LEU VAL GLU \ SEQRES 2 F 30 ALA LEU TYR LEU VAL CYS DAL GLU ARG DAL PHE PHE TYR \ SEQRES 3 F 30 THR LYS PRO THR \ SEQRES 1 G 21 GLY ILE VAL GLU GLN CYS CYS THR SER ILE CYS SER LEU \ SEQRES 2 G 21 TYR GLN LEU GLU ASN TYR CYS ASN \ SEQRES 1 H 30 PHE VAL ASN GLN HIS LEU CYS GLY SER HIS LEU VAL GLU \ SEQRES 2 H 30 ALA LEU TYR LEU VAL CYS DAL GLU ARG DAL PHE PHE TYR \ SEQRES 3 H 30 THR LYS PRO THR \ SEQRES 1 I 21 GLY ILE VAL GLU GLN CYS CYS THR SER ILE CYS SER LEU \ SEQRES 2 I 21 TYR GLN LEU GLU ASN TYR CYS ASN \ SEQRES 1 J 30 PHE VAL ASN GLN HIS LEU CYS GLY SER HIS LEU VAL GLU \ SEQRES 2 J 30 ALA LEU TYR LEU VAL CYS DAL GLU ARG DAL PHE PHE TYR \ SEQRES 3 J 30 THR LYS PRO THR \ SEQRES 1 K 21 GLY ILE VAL GLU GLN CYS CYS THR SER ILE CYS SER LEU \ SEQRES 2 K 21 TYR GLN LEU GLU ASN TYR CYS ASN \ SEQRES 1 L 30 PHE VAL ASN GLN HIS LEU CYS GLY SER HIS LEU VAL GLU \ SEQRES 2 L 30 ALA LEU TYR LEU VAL CYS DAL GLU ARG DAL PHE PHE TYR \ SEQRES 3 L 30 THR LYS PRO THR \ HET DAL B 20 5 \ HET DAL B 23 5 \ HET DAL D 20 5 \ HET DAL D 23 5 \ HET DAL F 20 5 \ HET DAL F 23 5 \ HET DAL H 20 5 \ HET DAL H 23 5 \ HET DAL J 20 5 \ HET DAL J 23 5 \ HET DAL L 20 5 \ HET DAL L 23 5 \ HET IPH A 22 7 \ HET ZN B 31 1 \ HET CL B 32 1 \ HET IPH C 22 7 \ HET ZN D 31 1 \ HET IPH E 22 7 \ HET IPH G 22 7 \ HET CL H 31 1 \ HET IPH I 22 7 \ HET IPH K 22 7 \ HETNAM DAL D-ALANINE \ HETNAM IPH PHENOL \ HETNAM ZN ZINC ION \ HETNAM CL CHLORIDE ION \ FORMUL 2 DAL 12(C3 H7 N O2) \ FORMUL 13 IPH 6(C6 H6 O) \ FORMUL 14 ZN 2(ZN 2+) \ FORMUL 15 CL 2(CL 1-) \ FORMUL 23 HOH *186(H2 O) \ HELIX 1 1 GLY A 1 CYS A 7 1 7 \ HELIX 2 2 SER A 12 GLU A 17 1 6 \ HELIX 3 3 PHE B 1 DAL B 20 1 20 \ HELIX 4 4 GLY C 1 CYS C 7 1 7 \ HELIX 5 5 SER C 12 GLU C 17 1 6 \ HELIX 6 6 ASN C 18 CYS C 20 5 3 \ HELIX 7 7 PHE D 1 DAL D 20 1 20 \ HELIX 8 8 GLU D 21 DAL D 23 5 3 \ HELIX 9 9 GLY E 1 CYS E 7 1 7 \ HELIX 10 10 SER E 12 GLU E 17 1 6 \ HELIX 11 11 ASN E 18 CYS E 20 5 3 \ HELIX 12 12 PHE F 1 DAL F 20 1 20 \ HELIX 13 13 GLY G 1 CYS G 7 1 7 \ HELIX 14 14 SER G 12 ASN G 18 1 7 \ HELIX 15 15 VAL H 2 DAL H 20 1 19 \ HELIX 16 16 GLU H 21 DAL H 23 5 3 \ HELIX 17 17 GLY I 1 CYS I 7 1 7 \ HELIX 18 18 SER I 12 ASN I 18 1 7 \ HELIX 19 19 VAL J 2 DAL J 20 1 19 \ HELIX 20 20 GLU J 21 DAL J 23 5 3 \ HELIX 21 21 GLY K 1 SER K 9 1 9 \ HELIX 22 22 SER K 12 CYS K 20 5 9 \ HELIX 23 23 VAL L 2 DAL L 20 1 19 \ SHEET 1 A 2 PHE B 24 TYR B 26 0 \ SHEET 2 A 2 PHE D 24 TYR D 26 -1 O PHE D 24 N TYR B 26 \ SHEET 1 B 2 PHE F 25 TYR F 26 0 \ SHEET 2 B 2 PHE H 24 PHE H 25 -1 O PHE H 24 N TYR F 26 \ SHEET 1 C 2 PHE J 24 TYR J 26 0 \ SHEET 2 C 2 PHE L 24 TYR L 26 -1 O TYR L 26 N PHE J 24 \ SSBOND 1 CYS A 6 CYS A 11 1555 1555 2.03 \ SSBOND 2 CYS A 7 CYS B 7 1555 1555 2.04 \ SSBOND 3 CYS A 20 CYS B 19 1555 1555 2.03 \ SSBOND 4 CYS C 6 CYS C 11 1555 1555 2.04 \ SSBOND 5 CYS C 7 CYS D 7 1555 1555 2.04 \ SSBOND 6 CYS C 20 CYS D 19 1555 1555 2.04 \ SSBOND 7 CYS E 6 CYS E 11 1555 1555 2.03 \ SSBOND 8 CYS E 7 CYS F 7 1555 1555 2.04 \ SSBOND 9 CYS E 20 CYS F 19 1555 1555 2.02 \ SSBOND 10 CYS G 6 CYS G 11 1555 1555 2.04 \ SSBOND 11 CYS G 7 CYS H 7 1555 1555 2.03 \ SSBOND 12 CYS G 20 CYS H 19 1555 1555 2.03 \ SSBOND 13 CYS I 6 CYS I 11 1555 1555 2.03 \ SSBOND 14 CYS I 7 CYS J 7 1555 1555 2.03 \ SSBOND 15 CYS I 20 CYS J 19 1555 1555 2.03 \ SSBOND 16 CYS K 6 CYS K 11 1555 1555 2.03 \ SSBOND 17 CYS K 7 CYS L 7 1555 1555 2.03 \ SSBOND 18 CYS K 20 CYS L 19 1555 1555 2.04 \ LINK C CYS B 19 N DAL B 20 1555 1555 1.32 \ LINK C DAL B 20 N GLU B 21 1555 1555 1.33 \ LINK C ARG B 22 N DAL B 23 1555 1555 1.32 \ LINK C DAL B 23 N PHE B 24 1555 1555 1.33 \ LINK C CYS D 19 N DAL D 20 1555 1555 1.34 \ LINK C DAL D 20 N GLU D 21 1555 1555 1.33 \ LINK C ARG D 22 N DAL D 23 1555 1555 1.33 \ LINK C DAL D 23 N PHE D 24 1555 1555 1.33 \ LINK C CYS F 19 N DAL F 20 1555 1555 1.34 \ LINK C DAL F 20 N GLU F 21 1555 1555 1.34 \ LINK C ARG F 22 N DAL F 23 1555 1555 1.33 \ LINK C DAL F 23 N PHE F 24 1555 1555 1.32 \ LINK C CYS H 19 N DAL H 20 1555 1555 1.33 \ LINK C DAL H 20 N GLU H 21 1555 1555 1.33 \ LINK C ARG H 22 N DAL H 23 1555 1555 1.33 \ LINK C DAL H 23 N PHE H 24 1555 1555 1.32 \ LINK C CYS J 19 N DAL J 20 1555 1555 1.33 \ LINK C DAL J 20 N GLU J 21 1555 1555 1.32 \ LINK C ARG J 22 N DAL J 23 1555 1555 1.32 \ LINK C DAL J 23 N PHE J 24 1555 1555 1.32 \ LINK C CYS L 19 N DAL L 20 1555 1555 1.32 \ LINK C DAL L 20 N GLU L 21 1555 1555 1.34 \ LINK C ARG L 22 N DAL L 23 1555 1555 1.31 \ LINK C DAL L 23 N PHE L 24 1555 1555 1.35 \ LINK NE2 HIS B 10 ZN ZN B 31 1555 1555 2.06 \ LINK ZN ZN B 31 NE2 HIS F 10 1555 1555 2.08 \ LINK ZN ZN B 31 NE2 HIS J 10 1555 1555 2.07 \ LINK NE2 HIS D 10 ZN ZN D 31 1555 1555 2.04 \ LINK ZN ZN D 31 NE2 HIS H 10 1555 1555 2.11 \ LINK ZN ZN D 31 NE2 HIS L 10 1555 1555 2.09 \ SITE 1 AC1 4 CYS A 6 ILE A 10 CYS A 11 HIS F 5 \ SITE 1 AC2 4 HIS B 10 CL B 32 HIS F 10 HIS J 10 \ SITE 1 AC3 2 ZN B 31 HIS J 10 \ SITE 1 AC4 5 CYS C 6 ILE C 10 CYS C 11 LEU D 11 \ SITE 2 AC4 5 HIS L 5 \ SITE 1 AC5 4 HIS D 10 HIS H 10 CL H 31 HIS L 10 \ SITE 1 AC6 5 CYS E 6 ILE E 10 CYS E 11 HIS F 10 \ SITE 2 AC6 5 LEU J 6 \ SITE 1 AC7 5 CYS G 6 CYS G 11 LEU G 16 HIS H 10 \ SITE 2 AC7 5 ALA H 14 \ SITE 1 AC8 2 ZN D 31 HIS H 10 \ SITE 1 AC9 5 HIS B 5 CYS I 6 ILE I 10 CYS I 11 \ SITE 2 AC9 5 LEU J 11 \ SITE 1 BC1 5 HIS H 5 CYS K 6 ILE K 10 CYS K 11 \ SITE 2 BC1 5 LEU L 11 \ CRYST1 45.662 61.772 46.038 90.00 105.50 90.00 P 1 21 1 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 0.021900 0.000000 0.006073 0.00000 \ SCALE2 0.000000 0.016189 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.022541 0.00000 \ TER 164 ASN A 21 \ TER 409 THR B 30 \ TER 573 ASN C 21 \ TER 818 THR D 30 \ TER 982 ASN E 21 \ TER 1227 THR F 30 \ TER 1391 ASN G 21 \ TER 1636 THR H 30 \ TER 1800 ASN I 21 \ ATOM 1801 N PHE J 1 3.276 -0.434 -4.676 1.00 37.37 N \ ATOM 1802 CA PHE J 1 2.864 -0.632 -3.259 1.00 35.77 C \ ATOM 1803 C PHE J 1 3.058 -2.088 -2.852 1.00 34.04 C \ ATOM 1804 O PHE J 1 2.958 -2.993 -3.680 1.00 36.97 O \ ATOM 1805 CB PHE J 1 1.394 -0.237 -3.087 1.00 36.72 C \ ATOM 1806 CG PHE J 1 1.081 1.148 -3.577 1.00 34.02 C \ ATOM 1807 CD1 PHE J 1 1.521 2.265 -2.876 1.00 31.63 C \ ATOM 1808 CD2 PHE J 1 0.370 1.333 -4.761 1.00 32.96 C \ ATOM 1809 CE1 PHE J 1 1.257 3.547 -3.352 1.00 35.66 C \ ATOM 1810 CE2 PHE J 1 0.102 2.604 -5.245 1.00 30.88 C \ ATOM 1811 CZ PHE J 1 0.544 3.717 -4.542 1.00 31.71 C \ ATOM 1812 N VAL J 2 3.341 -2.304 -1.573 1.00 32.13 N \ ATOM 1813 CA VAL J 2 3.560 -3.643 -1.040 1.00 28.34 C \ ATOM 1814 C VAL J 2 2.691 -3.825 0.199 1.00 30.51 C \ ATOM 1815 O VAL J 2 2.668 -4.899 0.799 1.00 31.60 O \ ATOM 1816 CB VAL J 2 5.022 -3.837 -0.618 1.00 25.65 C \ ATOM 1817 CG1 VAL J 2 5.957 -3.558 -1.784 1.00 23.92 C \ ATOM 1818 CG2 VAL J 2 5.345 -2.908 0.531 1.00 28.08 C \ ATOM 1819 N ASN J 3 1.976 -2.765 0.572 1.00 28.13 N \ ATOM 1820 CA ASN J 3 1.117 -2.784 1.753 1.00 29.27 C \ ATOM 1821 C ASN J 3 0.308 -4.060 1.942 1.00 27.25 C \ ATOM 1822 O ASN J 3 0.411 -4.711 2.971 1.00 25.81 O \ ATOM 1823 CB ASN J 3 0.152 -1.600 1.734 1.00 30.25 C \ ATOM 1824 CG ASN J 3 0.865 -0.276 1.768 1.00 35.70 C \ ATOM 1825 OD1 ASN J 3 1.541 0.107 0.804 1.00 38.92 O \ ATOM 1826 ND2 ASN J 3 0.732 0.436 2.884 1.00 39.26 N \ ATOM 1827 N GLN J 4 -0.499 -4.410 0.951 1.00 25.30 N \ ATOM 1828 CA GLN J 4 -1.325 -5.593 1.068 1.00 24.81 C \ ATOM 1829 C GLN J 4 -0.532 -6.887 1.007 1.00 24.42 C \ ATOM 1830 O GLN J 4 -0.955 -7.909 1.555 1.00 21.57 O \ ATOM 1831 CB GLN J 4 -2.414 -5.568 0.000 1.00 24.09 C \ ATOM 1832 CG GLN J 4 -3.447 -4.475 0.238 1.00 23.84 C \ ATOM 1833 CD GLN J 4 -4.616 -4.550 -0.723 1.00 27.63 C \ ATOM 1834 OE1 GLN J 4 -5.565 -3.764 -0.630 1.00 31.34 O \ ATOM 1835 NE2 GLN J 4 -4.558 -5.496 -1.654 1.00 24.48 N \ ATOM 1836 N HIS J 5 0.619 -6.844 0.347 1.00 23.52 N \ ATOM 1837 CA HIS J 5 1.462 -8.029 0.250 1.00 23.70 C \ ATOM 1838 C HIS J 5 2.044 -8.297 1.643 1.00 24.00 C \ ATOM 1839 O HIS J 5 2.132 -9.439 2.097 1.00 22.32 O \ ATOM 1840 CB HIS J 5 2.595 -7.792 -0.757 1.00 25.65 C \ ATOM 1841 CG HIS J 5 3.408 -9.016 -1.044 1.00 26.27 C \ ATOM 1842 ND1 HIS J 5 2.885 -10.119 -1.681 1.00 23.78 N \ ATOM 1843 CD2 HIS J 5 4.699 -9.317 -0.767 1.00 25.97 C \ ATOM 1844 CE1 HIS J 5 3.819 -11.048 -1.787 1.00 25.00 C \ ATOM 1845 NE2 HIS J 5 4.929 -10.586 -1.239 1.00 28.06 N \ ATOM 1846 N LEU J 6 2.424 -7.221 2.323 1.00 22.10 N \ ATOM 1847 CA LEU J 6 2.981 -7.320 3.652 1.00 21.24 C \ ATOM 1848 C LEU J 6 1.868 -7.716 4.638 1.00 24.75 C \ ATOM 1849 O LEU J 6 2.070 -8.557 5.525 1.00 21.93 O \ ATOM 1850 CB LEU J 6 3.611 -5.981 4.035 1.00 24.02 C \ ATOM 1851 CG LEU J 6 4.847 -5.524 3.244 1.00 24.35 C \ ATOM 1852 CD1 LEU J 6 5.299 -4.145 3.729 1.00 24.56 C \ ATOM 1853 CD2 LEU J 6 5.980 -6.532 3.433 1.00 25.36 C \ ATOM 1854 N CYS J 7 0.691 -7.113 4.473 1.00 22.72 N \ ATOM 1855 CA CYS J 7 -0.449 -7.412 5.330 1.00 22.59 C \ ATOM 1856 C CYS J 7 -0.786 -8.894 5.211 1.00 21.56 C \ ATOM 1857 O CYS J 7 -1.242 -9.514 6.169 1.00 22.38 O \ ATOM 1858 CB CYS J 7 -1.661 -6.566 4.927 1.00 21.91 C \ ATOM 1859 SG CYS J 7 -3.200 -6.992 5.811 1.00 31.77 S \ ATOM 1860 N GLY J 8 -0.551 -9.454 4.027 1.00 22.42 N \ ATOM 1861 CA GLY J 8 -0.817 -10.868 3.799 1.00 21.91 C \ ATOM 1862 C GLY J 8 0.082 -11.746 4.646 1.00 22.87 C \ ATOM 1863 O GLY J 8 -0.344 -12.774 5.172 1.00 22.95 O \ ATOM 1864 N SER J 9 1.342 -11.338 4.750 1.00 23.25 N \ ATOM 1865 CA SER J 9 2.334 -12.039 5.547 1.00 22.25 C \ ATOM 1866 C SER J 9 1.820 -12.096 6.977 1.00 20.61 C \ ATOM 1867 O SER J 9 1.911 -13.124 7.638 1.00 24.74 O \ ATOM 1868 CB SER J 9 3.674 -11.293 5.500 1.00 23.21 C \ ATOM 1869 OG SER J 9 4.594 -11.833 6.431 1.00 28.79 O \ ATOM 1870 N HIS J 10 1.280 -10.983 7.457 1.00 19.75 N \ ATOM 1871 CA HIS J 10 0.727 -10.938 8.808 1.00 19.09 C \ ATOM 1872 C HIS J 10 -0.526 -11.807 8.975 1.00 20.44 C \ ATOM 1873 O HIS J 10 -0.691 -12.475 10.005 1.00 22.34 O \ ATOM 1874 CB HIS J 10 0.431 -9.493 9.209 1.00 19.30 C \ ATOM 1875 CG HIS J 10 1.653 -8.717 9.597 1.00 20.94 C \ ATOM 1876 ND1 HIS J 10 2.260 -8.855 10.827 1.00 20.79 N \ ATOM 1877 CD2 HIS J 10 2.417 -7.845 8.899 1.00 21.95 C \ ATOM 1878 CE1 HIS J 10 3.346 -8.104 10.870 1.00 20.92 C \ ATOM 1879 NE2 HIS J 10 3.464 -7.483 9.712 1.00 21.77 N \ ATOM 1880 N LEU J 11 -1.401 -11.830 7.972 1.00 21.11 N \ ATOM 1881 CA LEU J 11 -2.628 -12.633 8.047 1.00 23.41 C \ ATOM 1882 C LEU J 11 -2.364 -14.134 8.146 1.00 24.15 C \ ATOM 1883 O LEU J 11 -2.970 -14.842 8.953 1.00 24.06 O \ ATOM 1884 CB LEU J 11 -3.515 -12.377 6.818 1.00 24.54 C \ ATOM 1885 CG LEU J 11 -4.376 -11.114 6.796 1.00 25.55 C \ ATOM 1886 CD1 LEU J 11 -4.941 -10.875 5.404 1.00 26.21 C \ ATOM 1887 CD2 LEU J 11 -5.487 -11.264 7.809 1.00 26.89 C \ ATOM 1888 N VAL J 12 -1.464 -14.618 7.303 1.00 26.43 N \ ATOM 1889 CA VAL J 12 -1.133 -16.033 7.272 1.00 25.82 C \ ATOM 1890 C VAL J 12 -0.568 -16.469 8.632 1.00 25.25 C \ ATOM 1891 O VAL J 12 -0.916 -17.533 9.150 1.00 20.83 O \ ATOM 1892 CB VAL J 12 -0.123 -16.304 6.112 1.00 30.63 C \ ATOM 1893 CG1 VAL J 12 1.316 -16.059 6.563 1.00 29.87 C \ ATOM 1894 CG2 VAL J 12 -0.309 -17.674 5.581 1.00 29.42 C \ ATOM 1895 N GLU J 13 0.286 -15.627 9.212 1.00 20.29 N \ ATOM 1896 CA GLU J 13 0.890 -15.910 10.508 1.00 19.86 C \ ATOM 1897 C GLU J 13 -0.149 -15.927 11.644 1.00 16.95 C \ ATOM 1898 O GLU J 13 -0.154 -16.835 12.485 1.00 14.83 O \ ATOM 1899 CB GLU J 13 1.995 -14.874 10.761 1.00 23.87 C \ ATOM 1900 CG GLU J 13 2.124 -14.301 12.153 1.00 29.06 C \ ATOM 1901 CD GLU J 13 2.635 -12.847 12.124 1.00 38.85 C \ ATOM 1902 OE1 GLU J 13 3.706 -12.594 11.517 1.00 39.50 O \ ATOM 1903 OE2 GLU J 13 1.963 -11.957 12.704 1.00 37.97 O \ ATOM 1904 N ALA J 14 -1.038 -14.935 11.648 1.00 16.02 N \ ATOM 1905 CA ALA J 14 -2.072 -14.819 12.671 1.00 11.25 C \ ATOM 1906 C ALA J 14 -3.076 -15.966 12.601 1.00 11.88 C \ ATOM 1907 O ALA J 14 -3.513 -16.466 13.623 1.00 10.10 O \ ATOM 1908 CB ALA J 14 -2.797 -13.476 12.538 1.00 13.49 C \ ATOM 1909 N LEU J 15 -3.453 -16.380 11.400 1.00 14.69 N \ ATOM 1910 CA LEU J 15 -4.405 -17.475 11.276 1.00 17.30 C \ ATOM 1911 C LEU J 15 -3.757 -18.748 11.808 1.00 19.80 C \ ATOM 1912 O LEU J 15 -4.425 -19.627 12.365 1.00 21.25 O \ ATOM 1913 CB LEU J 15 -4.834 -17.661 9.809 1.00 16.22 C \ ATOM 1914 CG LEU J 15 -5.663 -16.526 9.173 1.00 14.65 C \ ATOM 1915 CD1 LEU J 15 -5.891 -16.824 7.717 1.00 14.32 C \ ATOM 1916 CD2 LEU J 15 -6.990 -16.377 9.878 1.00 14.19 C \ ATOM 1917 N TYR J 16 -2.445 -18.845 11.638 1.00 19.52 N \ ATOM 1918 CA TYR J 16 -1.723 -20.018 12.109 1.00 22.04 C \ ATOM 1919 C TYR J 16 -1.758 -20.084 13.627 1.00 21.99 C \ ATOM 1920 O TYR J 16 -2.096 -21.112 14.202 1.00 25.04 O \ ATOM 1921 CB TYR J 16 -0.265 -19.986 11.633 1.00 20.04 C \ ATOM 1922 CG TYR J 16 0.545 -21.177 12.096 1.00 22.34 C \ ATOM 1923 CD1 TYR J 16 0.459 -22.405 11.439 1.00 22.12 C \ ATOM 1924 CD2 TYR J 16 1.384 -21.084 13.205 1.00 22.52 C \ ATOM 1925 CE1 TYR J 16 1.191 -23.511 11.872 1.00 21.35 C \ ATOM 1926 CE2 TYR J 16 2.113 -22.184 13.646 1.00 20.14 C \ ATOM 1927 CZ TYR J 16 2.012 -23.389 12.979 1.00 21.79 C \ ATOM 1928 OH TYR J 16 2.726 -24.475 13.426 1.00 23.38 O \ ATOM 1929 N LEU J 17 -1.414 -18.973 14.270 1.00 24.15 N \ ATOM 1930 CA LEU J 17 -1.382 -18.902 15.725 1.00 23.26 C \ ATOM 1931 C LEU J 17 -2.748 -19.045 16.370 1.00 24.06 C \ ATOM 1932 O LEU J 17 -2.916 -19.800 17.330 1.00 21.17 O \ ATOM 1933 CB LEU J 17 -0.773 -17.575 16.166 1.00 23.33 C \ ATOM 1934 CG LEU J 17 0.671 -17.294 15.758 1.00 21.92 C \ ATOM 1935 CD1 LEU J 17 1.056 -15.913 16.263 1.00 22.37 C \ ATOM 1936 CD2 LEU J 17 1.609 -18.360 16.345 1.00 24.42 C \ ATOM 1937 N VAL J 18 -3.713 -18.307 15.828 1.00 23.68 N \ ATOM 1938 CA VAL J 18 -5.087 -18.275 16.330 1.00 24.95 C \ ATOM 1939 C VAL J 18 -5.907 -19.557 16.157 1.00 24.92 C \ ATOM 1940 O VAL J 18 -6.666 -19.945 17.055 1.00 21.14 O \ ATOM 1941 CB VAL J 18 -5.849 -17.076 15.689 1.00 26.13 C \ ATOM 1942 CG1 VAL J 18 -7.345 -17.375 15.549 1.00 25.75 C \ ATOM 1943 CG2 VAL J 18 -5.640 -15.841 16.548 1.00 22.50 C \ ATOM 1944 N CYS J 19 -5.739 -20.215 15.014 1.00 23.69 N \ ATOM 1945 CA CYS J 19 -6.484 -21.425 14.710 1.00 25.87 C \ ATOM 1946 C CYS J 19 -5.974 -22.732 15.344 1.00 26.16 C \ ATOM 1947 O CYS J 19 -6.735 -23.673 15.517 1.00 28.70 O \ ATOM 1948 CB CYS J 19 -6.572 -21.571 13.195 1.00 26.45 C \ ATOM 1949 SG CYS J 19 -7.422 -20.187 12.354 1.00 27.69 S \ HETATM 1950 N DAL J 20 -4.694 -22.785 15.686 1.00 26.80 N \ HETATM 1951 CA DAL J 20 -4.077 -23.950 16.297 1.00 29.32 C \ HETATM 1952 CB DAL J 20 -2.560 -23.760 16.180 1.00 27.12 C \ HETATM 1953 C DAL J 20 -4.398 -25.218 15.518 1.00 32.13 C \ HETATM 1954 O DAL J 20 -4.139 -25.328 14.321 1.00 34.07 O \ ATOM 1955 N GLU J 21 -5.030 -26.142 16.225 1.00 36.59 N \ ATOM 1956 CA GLU J 21 -5.420 -27.432 15.684 1.00 39.97 C \ ATOM 1957 C GLU J 21 -6.412 -27.409 14.510 1.00 38.79 C \ ATOM 1958 O GLU J 21 -6.360 -28.285 13.649 1.00 40.44 O \ ATOM 1959 CB GLU J 21 -6.005 -28.284 16.813 1.00 42.24 C \ ATOM 1960 CG GLU J 21 -7.511 -28.353 16.799 1.00 49.11 C \ ATOM 1961 CD GLU J 21 -8.019 -29.764 16.657 1.00 52.90 C \ ATOM 1962 OE1 GLU J 21 -7.263 -30.709 16.981 1.00 56.57 O \ ATOM 1963 OE2 GLU J 21 -9.179 -29.919 16.221 1.00 54.75 O \ ATOM 1964 N ARG J 22 -7.306 -26.423 14.475 1.00 36.79 N \ ATOM 1965 CA ARG J 22 -8.317 -26.354 13.416 1.00 36.67 C \ ATOM 1966 C ARG J 22 -7.847 -25.883 12.042 1.00 34.15 C \ ATOM 1967 O ARG J 22 -8.611 -25.876 11.077 1.00 35.04 O \ ATOM 1968 CB ARG J 22 -9.505 -25.502 13.892 1.00 35.82 C \ ATOM 1969 CG ARG J 22 -9.123 -24.210 14.573 1.00 37.36 C \ ATOM 1970 CD ARG J 22 -9.878 -24.020 15.880 1.00 32.36 C \ ATOM 1971 NE ARG J 22 -10.859 -22.951 15.786 1.00 35.02 N \ ATOM 1972 CZ ARG J 22 -10.646 -21.682 16.128 1.00 36.45 C \ ATOM 1973 NH1 ARG J 22 -9.472 -21.286 16.606 1.00 37.23 N \ ATOM 1974 NH2 ARG J 22 -11.623 -20.803 15.988 1.00 33.61 N \ HETATM 1975 N DAL J 23 -6.578 -25.516 11.956 1.00 32.06 N \ HETATM 1976 CA DAL J 23 -5.970 -25.028 10.729 1.00 32.09 C \ HETATM 1977 CB DAL J 23 -4.650 -24.360 11.130 1.00 30.46 C \ HETATM 1978 C DAL J 23 -6.807 -23.924 10.098 1.00 29.40 C \ HETATM 1979 O DAL J 23 -7.775 -23.425 10.650 1.00 31.15 O \ ATOM 1980 N PHE J 24 -6.470 -23.549 8.877 1.00 29.75 N \ ATOM 1981 CA PHE J 24 -7.230 -22.476 8.260 1.00 29.70 C \ ATOM 1982 C PHE J 24 -7.195 -22.462 6.753 1.00 31.76 C \ ATOM 1983 O PHE J 24 -6.492 -23.244 6.114 1.00 32.44 O \ ATOM 1984 CB PHE J 24 -6.710 -21.143 8.778 1.00 27.77 C \ ATOM 1985 CG PHE J 24 -5.238 -20.953 8.557 1.00 28.29 C \ ATOM 1986 CD1 PHE J 24 -4.744 -20.630 7.294 1.00 28.31 C \ ATOM 1987 CD2 PHE J 24 -4.338 -21.137 9.597 1.00 27.41 C \ ATOM 1988 CE1 PHE J 24 -3.372 -20.495 7.075 1.00 31.14 C \ ATOM 1989 CE2 PHE J 24 -2.966 -21.004 9.384 1.00 28.57 C \ ATOM 1990 CZ PHE J 24 -2.485 -20.684 8.125 1.00 25.92 C \ ATOM 1991 N PHE J 25 -7.967 -21.539 6.199 1.00 35.18 N \ ATOM 1992 CA PHE J 25 -8.028 -21.356 4.766 1.00 40.22 C \ ATOM 1993 C PHE J 25 -7.835 -19.874 4.464 1.00 40.26 C \ ATOM 1994 O PHE J 25 -8.528 -19.017 5.008 1.00 39.58 O \ ATOM 1995 CB PHE J 25 -9.360 -21.900 4.198 1.00 42.45 C \ ATOM 1996 CG PHE J 25 -10.529 -20.941 4.277 1.00 46.33 C \ ATOM 1997 CD1 PHE J 25 -10.653 -19.887 3.369 1.00 48.44 C \ ATOM 1998 CD2 PHE J 25 -11.533 -21.125 5.227 1.00 47.86 C \ ATOM 1999 CE1 PHE J 25 -11.757 -19.039 3.405 1.00 49.21 C \ ATOM 2000 CE2 PHE J 25 -12.645 -20.283 5.273 1.00 49.05 C \ ATOM 2001 CZ PHE J 25 -12.759 -19.240 4.362 1.00 50.68 C \ ATOM 2002 N TYR J 26 -6.848 -19.592 3.623 1.00 43.58 N \ ATOM 2003 CA TYR J 26 -6.517 -18.234 3.207 1.00 45.36 C \ ATOM 2004 C TYR J 26 -6.871 -18.173 1.732 1.00 49.07 C \ ATOM 2005 O TYR J 26 -6.272 -18.867 0.917 1.00 48.50 O \ ATOM 2006 CB TYR J 26 -5.021 -17.985 3.403 1.00 42.52 C \ ATOM 2007 CG TYR J 26 -4.535 -16.605 3.012 1.00 40.45 C \ ATOM 2008 CD1 TYR J 26 -4.608 -16.158 1.694 1.00 38.50 C \ ATOM 2009 CD2 TYR J 26 -3.969 -15.757 3.961 1.00 37.81 C \ ATOM 2010 CE1 TYR J 26 -4.126 -14.902 1.335 1.00 38.91 C \ ATOM 2011 CE2 TYR J 26 -3.488 -14.509 3.612 1.00 36.51 C \ ATOM 2012 CZ TYR J 26 -3.568 -14.085 2.303 1.00 36.37 C \ ATOM 2013 OH TYR J 26 -3.097 -12.841 1.973 1.00 36.51 O \ ATOM 2014 N THR J 27 -7.842 -17.339 1.388 1.00 54.90 N \ ATOM 2015 CA THR J 27 -8.274 -17.234 0.004 1.00 61.58 C \ ATOM 2016 C THR J 27 -8.140 -15.849 -0.608 1.00 65.23 C \ ATOM 2017 O THR J 27 -8.287 -14.841 0.077 1.00 65.45 O \ ATOM 2018 CB THR J 27 -9.742 -17.656 -0.126 1.00 62.83 C \ ATOM 2019 OG1 THR J 27 -10.522 -16.958 0.857 1.00 63.84 O \ ATOM 2020 CG2 THR J 27 -9.887 -19.159 0.082 1.00 64.17 C \ ATOM 2021 N LYS J 28 -7.848 -15.816 -1.906 1.00 70.03 N \ ATOM 2022 CA LYS J 28 -7.750 -14.556 -2.651 1.00 74.69 C \ ATOM 2023 C LYS J 28 -8.637 -14.597 -3.920 1.00 78.09 C \ ATOM 2024 O LYS J 28 -9.418 -13.674 -4.182 1.00 78.33 O \ ATOM 2025 CB LYS J 28 -6.311 -14.230 -2.994 1.00 74.54 C \ ATOM 2026 CG LYS J 28 -5.680 -13.323 -1.943 1.00 73.54 C \ ATOM 2027 CD LYS J 28 -4.181 -13.164 -2.118 1.00 72.96 C \ ATOM 2028 CE LYS J 28 -3.524 -12.470 -0.931 1.00 74.21 C \ ATOM 2029 NZ LYS J 28 -2.114 -12.152 -1.169 1.00 73.68 N \ ATOM 2030 N PRO J 29 -8.609 -15.653 -4.681 1.00 82.19 N \ ATOM 2031 CA PRO J 29 -9.401 -15.808 -5.960 1.00 84.92 C \ ATOM 2032 C PRO J 29 -10.948 -15.793 -5.874 1.00 87.28 C \ ATOM 2033 O PRO J 29 -11.607 -14.916 -6.438 1.00 87.46 O \ ATOM 2034 CB PRO J 29 -9.043 -17.202 -6.480 1.00 84.49 C \ ATOM 2035 CG PRO J 29 -8.084 -17.808 -5.485 1.00 83.40 C \ ATOM 2036 CD PRO J 29 -7.839 -16.827 -4.365 1.00 82.55 C \ ATOM 2037 N THR J 30 -11.501 -16.783 -5.180 1.00 89.49 N \ ATOM 2038 CA THR J 30 -12.945 -16.901 -5.008 1.00 92.17 C \ ATOM 2039 C THR J 30 -13.226 -17.391 -3.590 1.00 92.98 C \ ATOM 2040 O THR J 30 -12.242 -17.694 -2.878 1.00 93.24 O \ ATOM 2041 CB THR J 30 -13.553 -17.903 -6.026 1.00 93.03 C \ ATOM 2042 OG1 THR J 30 -13.273 -17.458 -7.360 1.00 94.37 O \ ATOM 2043 CG2 THR J 30 -15.068 -18.010 -5.846 1.00 93.29 C \ ATOM 2044 OXT THR J 30 -14.416 -17.466 -3.208 1.00 94.06 O \ TER 2045 THR J 30 \ TER 2209 ASN K 21 \ TER 2454 THR L 30 \ HETATM 2642 O HOH J 31 -10.798 -12.489 -8.317 1.00 32.94 O \ HETATM 2643 O HOH J 32 7.143 -11.994 -1.110 1.00 35.02 O \ HETATM 2644 O HOH J 33 -1.202 -21.120 19.058 1.00 27.14 O \ HETATM 2645 O HOH J 34 -7.772 -21.531 1.646 1.00 37.35 O \ HETATM 2646 O HOH J 35 -4.548 -21.165 19.335 1.00 21.56 O \ HETATM 2647 O HOH J 36 -7.420 -12.544 -0.012 1.00 36.09 O \ HETATM 2648 O HOH J 66 -9.305 -23.360 0.419 1.00 35.49 O \ HETATM 2649 O HOH J 80 4.825 -11.582 9.042 1.00 22.27 O \ HETATM 2650 O HOH J 120 6.829 -12.090 2.206 1.00 21.88 O \ HETATM 2651 O HOH J 141 -10.165 -25.498 7.642 1.00 49.50 O \ HETATM 2652 O HOH J 145 -13.722 -14.020 -5.572 1.00 33.52 O \ HETATM 2653 O HOH J 156 0.819 -4.968 -1.870 1.00 37.61 O \ HETATM 2654 O HOH J 167 -14.162 -15.014 -0.477 1.00 38.06 O \ CONECT 43 76 \ CONECT 49 223 \ CONECT 76 43 \ CONECT 154 313 \ CONECT 223 49 \ CONECT 243 2462 \ CONECT 310 314 \ CONECT 313 154 \ CONECT 314 310 315 \ CONECT 315 314 316 317 \ CONECT 316 315 \ CONECT 317 315 318 319 \ CONECT 318 317 \ CONECT 319 317 \ CONECT 330 339 \ CONECT 339 330 340 \ CONECT 340 339 341 342 \ CONECT 341 340 \ CONECT 342 340 343 344 \ CONECT 343 342 \ CONECT 344 342 \ CONECT 452 485 \ CONECT 458 632 \ CONECT 485 452 \ CONECT 563 722 \ CONECT 632 458 \ CONECT 652 2471 \ CONECT 719 723 \ CONECT 722 563 \ CONECT 723 719 724 \ CONECT 724 723 725 726 \ CONECT 725 724 \ CONECT 726 724 727 728 \ CONECT 727 726 \ CONECT 728 726 \ CONECT 739 748 \ CONECT 748 739 749 \ CONECT 749 748 750 751 \ CONECT 750 749 \ CONECT 751 749 752 753 \ CONECT 752 751 \ CONECT 753 751 \ CONECT 861 894 \ CONECT 867 1041 \ CONECT 894 861 \ CONECT 972 1131 \ CONECT 1041 867 \ CONECT 1061 2462 \ CONECT 1128 1132 \ CONECT 1131 972 \ CONECT 1132 1128 1133 \ CONECT 1133 1132 1134 1135 \ CONECT 1134 1133 \ CONECT 1135 1133 1136 1137 \ CONECT 1136 1135 \ CONECT 1137 1135 \ CONECT 1148 1157 \ CONECT 1157 1148 1158 \ CONECT 1158 1157 1159 1160 \ CONECT 1159 1158 \ CONECT 1160 1158 1161 1162 \ CONECT 1161 1160 \ CONECT 1162 1160 \ CONECT 1270 1303 \ CONECT 1276 1450 \ CONECT 1303 1270 \ CONECT 1381 1540 \ CONECT 1450 1276 \ CONECT 1470 2471 \ CONECT 1537 1541 \ CONECT 1540 1381 \ CONECT 1541 1537 1542 \ CONECT 1542 1541 1543 1544 \ CONECT 1543 1542 \ CONECT 1544 1542 1545 1546 \ CONECT 1545 1544 \ CONECT 1546 1544 \ CONECT 1557 1566 \ CONECT 1566 1557 1567 \ CONECT 1567 1566 1568 1569 \ CONECT 1568 1567 \ CONECT 1569 1567 1570 1571 \ CONECT 1570 1569 \ CONECT 1571 1569 \ CONECT 1679 1712 \ CONECT 1685 1859 \ CONECT 1712 1679 \ CONECT 1790 1949 \ CONECT 1859 1685 \ CONECT 1879 2462 \ CONECT 1946 1950 \ CONECT 1949 1790 \ CONECT 1950 1946 1951 \ CONECT 1951 1950 1952 1953 \ CONECT 1952 1951 \ CONECT 1953 1951 1954 1955 \ CONECT 1954 1953 \ CONECT 1955 1953 \ CONECT 1966 1975 \ CONECT 1975 1966 1976 \ CONECT 1976 1975 1977 1978 \ CONECT 1977 1976 \ CONECT 1978 1976 1979 1980 \ CONECT 1979 1978 \ CONECT 1980 1978 \ CONECT 2088 2121 \ CONECT 2094 2268 \ CONECT 2121 2088 \ CONECT 2199 2358 \ CONECT 2268 2094 \ CONECT 2288 2471 \ CONECT 2355 2359 \ CONECT 2358 2199 \ CONECT 2359 2355 2360 \ CONECT 2360 2359 2361 2362 \ CONECT 2361 2360 \ CONECT 2362 2360 2363 2364 \ CONECT 2363 2362 \ CONECT 2364 2362 \ CONECT 2375 2384 \ CONECT 2384 2375 2385 \ CONECT 2385 2384 2386 2387 \ CONECT 2386 2385 \ CONECT 2387 2385 2388 2389 \ CONECT 2388 2387 \ CONECT 2389 2387 \ CONECT 2455 2456 2460 2461 \ CONECT 2456 2455 2457 \ CONECT 2457 2456 2458 \ CONECT 2458 2457 2459 \ CONECT 2459 2458 2460 \ CONECT 2460 2455 2459 \ CONECT 2461 2455 \ CONECT 2462 243 1061 1879 \ CONECT 2464 2465 2469 2470 \ CONECT 2465 2464 2466 \ CONECT 2466 2465 2467 \ CONECT 2467 2466 2468 \ CONECT 2468 2467 2469 \ CONECT 2469 2464 2468 \ CONECT 2470 2464 \ CONECT 2471 652 1470 2288 \ CONECT 2472 2473 2477 2478 \ CONECT 2473 2472 2474 \ CONECT 2474 2473 2475 \ CONECT 2475 2474 2476 \ CONECT 2476 2475 2477 \ CONECT 2477 2472 2476 \ CONECT 2478 2472 \ CONECT 2479 2480 2484 2485 \ CONECT 2480 2479 2481 \ CONECT 2481 2480 2482 \ CONECT 2482 2481 2483 \ CONECT 2483 2482 2484 \ CONECT 2484 2479 2483 \ CONECT 2485 2479 \ CONECT 2487 2488 2492 2493 \ CONECT 2488 2487 2489 \ CONECT 2489 2488 2490 \ CONECT 2490 2489 2491 \ CONECT 2491 2490 2492 \ CONECT 2492 2487 2491 \ CONECT 2493 2487 \ CONECT 2494 2495 2499 2500 \ CONECT 2495 2494 2496 \ CONECT 2496 2495 2497 \ CONECT 2497 2496 2498 \ CONECT 2498 2497 2499 \ CONECT 2499 2494 2498 \ CONECT 2500 2494 \ MASTER 375 0 22 23 6 0 15 6 2674 12 170 30 \ END \ """, "3rovchainJ") cmd.hide("all") cmd.color('grey70', "3rovchainJ") cmd.show('cartoon', "3rovchainJ") cmd.center("3rovchainJ", state=0, origin=1) cmd.zoom("3rovchainJ", animate=-1) cmd.select("e3rovJ1", "c. J & i. 1-30") cmd.color("red", "e3rovJ1") cmd.disable("e3rovJ1")