cmd.read_pdbstr("""\ HEADER LIGASE, CELL CYCLE 28-JUL-10 3O6B \ TITLE A DUAL E3 MECHANISM FOR RUB1 LIGATION TO CDC53: DCN1(P)-CDC53(WHB) LOW \ TITLE 2 RESOLUTION \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: DEFECTIVE IN CULLIN NEDDYLATION PROTEIN 1; \ COMPND 3 CHAIN: A, C, E, G, I; \ COMPND 4 FRAGMENT: DCUN1 DOMAIN, RESIDUES 70-269; \ COMPND 5 ENGINEERED: YES; \ COMPND 6 MOL_ID: 2; \ COMPND 7 MOLECULE: CELL DIVISION CONTROL PROTEIN 53; \ COMPND 8 CHAIN: B, D, F, H, J; \ COMPND 9 FRAGMENT: RESIDUES 742-815; \ COMPND 10 SYNONYM: CULLIN-A, E3 UBIQUITIN LIGASE COMPLEX SCF SUBUNIT CDC53; \ COMPND 11 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 3 ORGANISM_COMMON: YEAST; \ SOURCE 4 ORGANISM_TAXID: 4932; \ SOURCE 5 GENE: DCN1, YLR128W, L3111; \ SOURCE 6 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 7 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 8 MOL_ID: 2; \ SOURCE 9 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 10 ORGANISM_COMMON: YEAST; \ SOURCE 11 ORGANISM_TAXID: 4932; \ SOURCE 12 GENE: CDC53, YDL132W, D2190; \ SOURCE 13 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 14 EXPRESSION_SYSTEM_TAXID: 562 \ KEYWDS LIGASE, CELL CYCLE \ EXPDTA X-RAY DIFFRACTION \ AUTHOR D.C.SCOTT,J.K.MONDA,C.R.R.GRACE,D.M.DUDA,R.W.KRIWACKI,T.KURZ, \ AUTHOR 2 B.A.SCHULMAN \ REVDAT 4 21-FEB-24 3O6B 1 SEQADV \ REVDAT 3 24-JAN-18 3O6B 1 AUTHOR \ REVDAT 2 21-MAR-12 3O6B 1 JRNL VERSN \ REVDAT 1 15-SEP-10 3O6B 0 \ JRNL AUTH D.C.SCOTT,J.K.MONDA,C.R.GRACE,D.M.DUDA,R.W.KRIWACKI,T.KURZ, \ JRNL AUTH 2 B.A.SCHULMAN \ JRNL TITL A DUAL E3 MECHANISM FOR RUB1 LIGATION TO CDC53. \ JRNL REF MOL.CELL V. 39 784 2010 \ JRNL REFN ISSN 1097-2765 \ JRNL PMID 20832729 \ JRNL DOI 10.1016/J.MOLCEL.2010.08.030 \ REMARK 2 \ REMARK 2 RESOLUTION. 3.10 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 : ENERGY MINIMIZATION \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 3.10 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 40.00 \ 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) (%) : NULL \ REMARK 3 NUMBER OF REFLECTIONS : 30204 \ REMARK 3 \ REMARK 3 FIT TO DATA USED IN REFINEMENT. \ REMARK 3 CROSS-VALIDATION METHOD : NULL \ REMARK 3 FREE R VALUE TEST SET SELECTION : RANDOM \ REMARK 3 R VALUE (WORKING SET) : 0.258 \ REMARK 3 FREE R VALUE : 0.308 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : NULL \ REMARK 3 FREE R VALUE TEST SET COUNT : 1529 \ 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) : NULL \ REMARK 3 BIN RESOLUTION RANGE LOW (A) : NULL \ REMARK 3 BIN COMPLETENESS (WORKING+TEST) (%) : NULL \ REMARK 3 REFLECTIONS IN BIN (WORKING SET) : NULL \ REMARK 3 BIN R VALUE (WORKING SET) : NULL \ REMARK 3 BIN FREE R VALUE : NULL \ REMARK 3 BIN FREE R VALUE TEST SET SIZE (%) : NULL \ REMARK 3 BIN FREE R VALUE TEST SET COUNT : NULL \ REMARK 3 ESTIMATED ERROR OF BIN FREE R VALUE : NULL \ REMARK 3 \ REMARK 3 NUMBER OF NON-HYDROGEN ATOMS USED IN REFINEMENT. \ REMARK 3 PROTEIN ATOMS : 10662 \ REMARK 3 NUCLEIC ACID ATOMS : 0 \ REMARK 3 HETEROGEN ATOMS : 0 \ REMARK 3 SOLVENT ATOMS : 0 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : NULL \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : NULL \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : NULL \ REMARK 3 B22 (A**2) : NULL \ REMARK 3 B33 (A**2) : NULL \ REMARK 3 B12 (A**2) : NULL \ REMARK 3 B13 (A**2) : NULL \ REMARK 3 B23 (A**2) : NULL \ REMARK 3 \ REMARK 3 ESTIMATED COORDINATE ERROR. \ REMARK 3 ESD FROM LUZZATI PLOT (A) : NULL \ REMARK 3 ESD FROM SIGMAA (A) : NULL \ 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) : NULL \ REMARK 3 DIHEDRAL ANGLES (DEGREES) : NULL \ REMARK 3 IMPROPER ANGLES (DEGREES) : NULL \ REMARK 3 \ REMARK 3 ISOTROPIC THERMAL MODEL : NULL \ 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 3O6B COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 06-AUG-10. \ REMARK 100 THE DEPOSITION ID IS D_1000060719. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 05-DEC-09 \ REMARK 200 TEMPERATURE (KELVIN) : 77 \ REMARK 200 PH : 7.9 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : APS \ REMARK 200 BEAMLINE : 24-ID-C \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 0.97924 \ REMARK 200 MONOCHROMATOR : NULL \ REMARK 200 OPTICS : NULL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : CCD \ REMARK 200 DETECTOR MANUFACTURER : ADSC QUANTUM 315 \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : HKL-2000 \ REMARK 200 DATA SCALING SOFTWARE : HKL-2000 \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 30204 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 3.100 \ REMARK 200 RESOLUTION RANGE LOW (A) : 40.000 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : -3.000 \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 99.1 \ REMARK 200 DATA REDUNDANCY : NULL \ REMARK 200 R MERGE (I) : NULL \ REMARK 200 R SYM (I) : NULL \ REMARK 200 FOR THE DATA SET : NULL \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : 3.10 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 3.21 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 99.1 \ REMARK 200 DATA REDUNDANCY IN SHELL : NULL \ REMARK 200 R MERGE FOR SHELL (I) : NULL \ REMARK 200 R SYM FOR SHELL (I) : NULL \ REMARK 200 FOR SHELL : NULL \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: SINGLE WAVELENGTH \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: MOLECULAR REPLACEMENT \ REMARK 200 SOFTWARE USED: PHASER \ REMARK 200 STARTING MODEL: NULL \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 52.43 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 2.59 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: 21% PEG 3350, 0.1M BIS-TRIS-PROPANE, \ REMARK 280 0.2M NAF, PH 7.9, VAPOR DIFFUSION, HANGING DROP, TEMPERATURE 295K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P 61 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -Y,X-Y,Z+1/3 \ REMARK 290 3555 -X+Y,-X,Z+2/3 \ REMARK 290 4555 -X,-Y,Z+1/2 \ REMARK 290 5555 Y,-X+Y,Z+5/6 \ REMARK 290 6555 X-Y,X,Z+1/6 \ REMARK 290 \ REMARK 290 WHERE NNN -> OPERATOR NUMBER \ REMARK 290 MMM -> TRANSLATION VECTOR \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY TRANSFORMATIONS \ REMARK 290 THE FOLLOWING TRANSFORMATIONS OPERATE ON THE ATOM/HETATM \ REMARK 290 RECORDS IN THIS ENTRY TO PRODUCE CRYSTALLOGRAPHICALLY \ REMARK 290 RELATED MOLECULES. \ REMARK 290 SMTRY1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 2 -0.500000 -0.866025 0.000000 0.00000 \ REMARK 290 SMTRY2 2 0.866025 -0.500000 0.000000 0.00000 \ REMARK 290 SMTRY3 2 0.000000 0.000000 1.000000 64.18600 \ REMARK 290 SMTRY1 3 -0.500000 0.866025 0.000000 0.00000 \ REMARK 290 SMTRY2 3 -0.866025 -0.500000 0.000000 0.00000 \ REMARK 290 SMTRY3 3 0.000000 0.000000 1.000000 128.37200 \ REMARK 290 SMTRY1 4 -1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 4 0.000000 -1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 4 0.000000 0.000000 1.000000 96.27900 \ REMARK 290 SMTRY1 5 0.500000 0.866025 0.000000 0.00000 \ REMARK 290 SMTRY2 5 -0.866025 0.500000 0.000000 0.00000 \ REMARK 290 SMTRY3 5 0.000000 0.000000 1.000000 160.46500 \ REMARK 290 SMTRY1 6 0.500000 -0.866025 0.000000 0.00000 \ REMARK 290 SMTRY2 6 0.866025 0.500000 0.000000 0.00000 \ REMARK 290 SMTRY3 6 0.000000 0.000000 1.000000 32.09300 \ REMARK 290 \ REMARK 290 REMARK: NULL \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1, 2, 3, 4, 5 \ 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 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 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 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: DIMERIC \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: 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: 5 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: DIMERIC \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: I, J \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 465 \ REMARK 465 MISSING RESIDUES \ REMARK 465 THE FOLLOWING RESIDUES WERE NOT LOCATED IN THE \ REMARK 465 EXPERIMENT. (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN \ REMARK 465 IDENTIFIER; SSSEQ=SEQUENCE NUMBER; I=INSERTION CODE.) \ REMARK 465 \ REMARK 465 M RES C SSSEQI \ REMARK 465 GLY A 68 \ REMARK 465 SER A 69 \ REMARK 465 VAL A 70 \ REMARK 465 TYR A 71 \ REMARK 465 ASP A 267 \ REMARK 465 GLN A 268 \ REMARK 465 GLN A 269 \ REMARK 465 GLY B 740 \ REMARK 465 SER B 741 \ REMARK 465 GLU B 742 \ REMARK 465 LEU B 743 \ REMARK 465 ASN B 744 \ REMARK 465 THR B 745 \ REMARK 465 GLY C 68 \ REMARK 465 ASP C 267 \ REMARK 465 GLN C 268 \ REMARK 465 GLN C 269 \ REMARK 465 GLY D 740 \ REMARK 465 SER D 741 \ REMARK 465 GLU D 742 \ REMARK 465 LEU D 743 \ REMARK 465 ASN D 744 \ REMARK 465 THR D 745 \ REMARK 465 GLN D 780 \ REMARK 465 ARG D 781 \ REMARK 465 GLY E 68 \ REMARK 465 SER E 69 \ REMARK 465 VAL E 70 \ REMARK 465 GLN E 266 \ REMARK 465 ASP E 267 \ REMARK 465 GLN E 268 \ REMARK 465 GLN E 269 \ REMARK 465 GLY F 740 \ REMARK 465 SER F 741 \ REMARK 465 GLU F 742 \ REMARK 465 LEU F 743 \ REMARK 465 ASN F 744 \ REMARK 465 HIS F 779 \ REMARK 465 GLN F 780 \ REMARK 465 ARG F 781 \ REMARK 465 GLY G 68 \ REMARK 465 SER G 69 \ REMARK 465 VAL G 70 \ REMARK 465 TYR G 71 \ REMARK 465 PRO G 72 \ REMARK 465 LYS G 73 \ REMARK 465 GLN G 266 \ REMARK 465 ASP G 267 \ REMARK 465 GLN G 268 \ REMARK 465 GLN G 269 \ REMARK 465 GLY H 740 \ REMARK 465 SER H 741 \ REMARK 465 GLU H 742 \ REMARK 465 LEU H 743 \ REMARK 465 ASN H 744 \ REMARK 465 THR H 745 \ REMARK 465 GLU H 746 \ REMARK 465 ARG H 747 \ REMARK 465 GLY I 68 \ REMARK 465 SER I 69 \ REMARK 465 VAL I 70 \ REMARK 465 TYR I 71 \ REMARK 465 PRO I 72 \ REMARK 465 LYS I 73 \ REMARK 465 GLU I 74 \ REMARK 465 GLU I 80 \ REMARK 465 HIS I 81 \ REMARK 465 TYR I 82 \ REMARK 465 ILE I 83 \ REMARK 465 ASN I 84 \ REMARK 465 ASN I 85 \ REMARK 465 ASN I 86 \ REMARK 465 LEU I 87 \ REMARK 465 PHE I 88 \ REMARK 465 ASP I 89 \ REMARK 465 GLU I 98 \ REMARK 465 GLU I 99 \ REMARK 465 LEU I 100 \ REMARK 465 GLY I 101 \ REMARK 465 TYR I 102 \ REMARK 465 ASN I 103 \ REMARK 465 LEU I 104 \ REMARK 465 CYS I 139 \ REMARK 465 SER I 140 \ REMARK 465 TYR I 199 \ REMARK 465 PRO I 200 \ REMARK 465 VAL I 201 \ REMARK 465 ARG I 202 \ REMARK 465 MET I 203 \ REMARK 465 GLU I 204 \ REMARK 465 THR I 240 \ REMARK 465 ILE I 241 \ REMARK 465 GLN I 242 \ REMARK 465 LYS I 243 \ REMARK 465 ILE I 244 \ REMARK 465 ILE I 245 \ REMARK 465 SER I 246 \ REMARK 465 ASP I 247 \ REMARK 465 TYR I 248 \ REMARK 465 ASP I 249 \ REMARK 465 GLU I 250 \ REMARK 465 THR I 251 \ REMARK 465 ALA I 252 \ REMARK 465 GLY J 740 \ REMARK 465 SER J 741 \ REMARK 465 GLU J 742 \ REMARK 465 LEU J 743 \ REMARK 465 ASN J 744 \ REMARK 465 THR J 745 \ REMARK 465 LYS J 762 \ REMARK 465 ARG J 763 \ REMARK 465 ASN J 764 \ REMARK 465 GLN J 780 \ REMARK 465 ARG J 781 \ REMARK 465 PHE J 782 \ REMARK 465 ASN J 783 \ REMARK 465 ALA J 784 \ REMARK 465 LYS J 785 \ REMARK 470 \ REMARK 470 MISSING ATOM \ REMARK 470 THE FOLLOWING RESIDUES HAVE MISSING ATOMS (M=MODEL NUMBER; \ REMARK 470 RES=RESIDUE NAME; C=CHAIN IDENTIFIER; SSEQ=SEQUENCE NUMBER; \ REMARK 470 I=INSERTION CODE): \ REMARK 470 M RES CSSEQI ATOMS \ REMARK 470 GLU B 746 CG CD OE1 OE2 \ REMARK 470 GLN H 748 CG CD OE1 NE2 \ REMARK 470 GLU J 746 CG CD OE1 OE2 \ REMARK 470 LYS J 799 CG CD CE NZ \ 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 OH TYR E 248 OD1 ASP E 259 1.98 \ REMARK 500 OD1 ASP E 249 N ALA E 252 2.03 \ REMARK 500 O MET F 759 N ALA F 761 2.09 \ REMARK 500 NE ARG F 757 O MET I 136 2.11 \ REMARK 500 O MET H 759 O LYS H 762 2.13 \ REMARK 500 OD1 ASP E 249 N THR E 251 2.13 \ REMARK 500 O THR I 141 OD2 ASP I 144 2.17 \ REMARK 500 NH1 ARG A 237 CZ2 TRP A 254 2.19 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: CLOSE CONTACTS \ REMARK 500 \ REMARK 500 THE FOLLOWING ATOMS THAT ARE RELATED BY CRYSTALLOGRAPHIC \ REMARK 500 SYMMETRY ARE IN CLOSE CONTACT. AN ATOM LOCATED WITHIN 0.15 \ REMARK 500 ANGSTROMS OF A SYMMETRY RELATED ATOM IS ASSUMED TO BE ON A \ REMARK 500 SPECIAL POSITION AND IS, THEREFORE, LISTED IN REMARK 375 \ REMARK 500 INSTEAD OF REMARK 500. ATOMS WITH NON-BLANK ALTERNATE \ REMARK 500 LOCATION INDICATORS ARE NOT INCLUDED IN THE CALCULATIONS. \ REMARK 500 \ REMARK 500 DISTANCE CUTOFF: \ REMARK 500 2.2 ANGSTROMS FOR CONTACTS NOT INVOLVING HYDROGEN ATOMS \ REMARK 500 1.6 ANGSTROMS FOR CONTACTS INVOLVING HYDROGEN ATOMS \ REMARK 500 \ REMARK 500 ATM1 RES C SSEQI ATM2 RES C SSEQI SSYMOP DISTANCE \ REMARK 500 NH2 ARG A 237 N TYR E 71 2655 2.06 \ REMARK 500 OD2 ASP A 247 NZ LYS E 73 2655 2.07 \ REMARK 500 NH2 ARG A 237 CA TYR E 71 2655 2.19 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: COVALENT BOND LENGTHS \ 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,2(A3,1X,A1,I4,A1,1X,A4,3X),1X,F6.3) \ 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 RES CSSEQI ATM2 DEVIATION \ REMARK 500 ALA E 170 CA ALA E 170 CB -0.132 \ REMARK 500 ALA E 170 C ALA E 170 O 0.215 \ REMARK 500 \ REMARK 500 REMARK: NULL \ 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 ARG A 237 NH1 - CZ - NH2 ANGL. DEV. = -6.8 DEGREES \ REMARK 500 ARG A 237 NE - CZ - NH2 ANGL. DEV. = 4.5 DEGREES \ REMARK 500 PRO B 766 C - N - CD ANGL. DEV. = -13.5 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 ASN A 85 52.41 37.30 \ REMARK 500 PHE A 88 69.66 -110.67 \ REMARK 500 TYR A 102 -168.41 -118.53 \ REMARK 500 SER A 140 -13.57 -145.08 \ REMARK 500 ASN A 178 33.80 -91.68 \ REMARK 500 PHE A 195 32.59 -99.56 \ REMARK 500 GLU A 218 6.24 -68.55 \ REMARK 500 GLU A 250 7.96 -58.18 \ REMARK 500 ARG B 747 67.65 -118.47 \ REMARK 500 ASN B 764 118.84 149.90 \ REMARK 500 ALA B 776 -80.32 -44.53 \ REMARK 500 GLN B 777 21.40 -76.77 \ REMARK 500 HIS B 779 -147.55 -55.96 \ REMARK 500 GLN B 780 -11.94 82.00 \ REMARK 500 PHE B 782 156.57 141.22 \ REMARK 500 VAL B 786 -9.85 -57.63 \ REMARK 500 ASP C 89 -164.89 -73.67 \ REMARK 500 SER C 140 -0.66 -146.53 \ REMARK 500 GLU C 158 -43.26 -131.23 \ REMARK 500 PHE C 195 46.72 -100.78 \ REMARK 500 LYS C 243 2.74 -57.89 \ REMARK 500 ALA C 253 13.60 -69.78 \ REMARK 500 LYS D 762 8.79 -68.49 \ REMARK 500 ARG D 763 23.13 47.57 \ REMARK 500 ASN D 764 171.81 114.81 \ REMARK 500 LEU D 765 149.13 -172.95 \ REMARK 500 PRO E 72 -135.85 -59.67 \ REMARK 500 LYS E 73 -66.83 -136.79 \ REMARK 500 ASN E 85 33.99 86.48 \ REMARK 500 ASN E 86 -18.25 91.77 \ REMARK 500 ALA E 170 -72.46 -48.32 \ REMARK 500 LEU E 175 129.08 -38.82 \ REMARK 500 PRO E 177 159.94 -47.75 \ REMARK 500 THR E 184 -17.78 -47.99 \ REMARK 500 GLN E 189 -6.18 -55.72 \ REMARK 500 PHE E 195 51.36 -95.54 \ REMARK 500 ALA E 252 -177.11 -55.97 \ REMARK 500 CYS E 264 48.23 -71.87 \ REMARK 500 MET F 759 -67.07 -96.19 \ REMARK 500 LYS F 760 -37.35 -15.82 \ REMARK 500 ARG F 763 -16.20 73.45 \ REMARK 500 ASN F 764 116.61 -165.02 \ REMARK 500 LYS F 799 4.96 -60.62 \ REMARK 500 ASP G 106 155.79 -48.06 \ REMARK 500 LYS G 119 -50.92 -122.82 \ REMARK 500 SER G 140 -16.49 -147.08 \ REMARK 500 PHE G 195 35.43 -85.26 \ REMARK 500 ARG H 781 -61.91 -142.83 \ REMARK 500 GLU H 809 25.20 -147.93 \ REMARK 500 PRO I 177 -19.25 -45.84 \ REMARK 500 \ REMARK 500 THIS ENTRY HAS 59 RAMACHANDRAN OUTLIERS. \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 3O2P RELATED DB: PDB \ REMARK 900 E3-SUBSTRATE \ REMARK 900 RELATED ID: 3O2U RELATED DB: PDB \ REMARK 900 E2 \ DBREF 3O6B A 70 269 UNP Q12395 DCN1_YEAST 70 269 \ DBREF 3O6B B 742 815 UNP Q12018 CDC53_YEAST 742 815 \ DBREF 3O6B C 70 269 UNP Q12395 DCN1_YEAST 70 269 \ DBREF 3O6B D 742 815 UNP Q12018 CDC53_YEAST 742 815 \ DBREF 3O6B E 70 269 UNP Q12395 DCN1_YEAST 70 269 \ DBREF 3O6B F 742 815 UNP Q12018 CDC53_YEAST 742 815 \ DBREF 3O6B G 70 269 UNP Q12395 DCN1_YEAST 70 269 \ DBREF 3O6B H 742 815 UNP Q12018 CDC53_YEAST 742 815 \ DBREF 3O6B I 70 269 UNP Q12395 DCN1_YEAST 70 269 \ DBREF 3O6B J 742 815 UNP Q12018 CDC53_YEAST 742 815 \ SEQADV 3O6B GLY A 68 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B SER A 69 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B GLY B 740 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B SER B 741 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B GLY C 68 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B SER C 69 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B GLY D 740 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B SER D 741 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B GLY E 68 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B SER E 69 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B GLY F 740 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B SER F 741 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B GLY G 68 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B SER G 69 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B GLY H 740 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B SER H 741 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B GLY I 68 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B SER I 69 UNP Q12395 EXPRESSION TAG \ SEQADV 3O6B GLY J 740 UNP Q12018 EXPRESSION TAG \ SEQADV 3O6B SER J 741 UNP Q12018 EXPRESSION TAG \ SEQRES 1 A 202 GLY SER VAL TYR PRO LYS GLU LEU THR GLN VAL PHE GLU \ SEQRES 2 A 202 HIS TYR ILE ASN ASN ASN LEU PHE ASP ILE ASP SER LEU \ SEQRES 3 A 202 VAL LYS PHE ILE GLU GLU LEU GLY TYR ASN LEU GLU ASP \ SEQRES 4 A 202 LEU ALA THR LEU CYS LEU ALA HIS LEU LEU GLY TYR LYS \ SEQRES 5 A 202 LYS LEU GLU GLU PRO LEU LYS ARG GLU ASP PHE LEU SER \ SEQRES 6 A 202 THR TRP PHE MET GLN GLY CYS SER THR ILE SER ASP MET \ SEQRES 7 A 202 GLN GLU CYS ILE LYS THR LEU ASP VAL LYS LEU HIS GLU \ SEQRES 8 A 202 ASP LEU GLN TYR PHE THR GLN ILE TYR ASN TYR ALA PHE \ SEQRES 9 A 202 ASN LEU ILE LEU ASP PRO ASN ARG LYS ASP ILE ASP THR \ SEQRES 10 A 202 ASP GLU GLY ILE GLN TYR TRP LYS LEU PHE PHE GLN PRO \ SEQRES 11 A 202 GLU TYR PRO VAL ARG MET GLU PRO ASP LEU LEU GLU ALA \ SEQRES 12 A 202 TRP PHE ARG PHE LEU ARG ASP GLU GLY LYS THR THR ILE \ SEQRES 13 A 202 SER LYS ASP THR TRP ARG MET LEU LEU LEU PHE PHE LYS \ SEQRES 14 A 202 ARG TYR PRO THR ILE GLN LYS ILE ILE SER ASP TYR ASP \ SEQRES 15 A 202 GLU THR ALA ALA TRP PRO PHE ILE ILE ASP GLU PHE TYR \ SEQRES 16 A 202 GLU CYS LEU GLN ASP GLN GLN \ SEQRES 1 B 76 GLY SER GLU LEU ASN THR GLU ARG GLN ILE PHE LEU GLU \ SEQRES 2 B 76 ALA CYS ILE VAL ARG ILE MET LYS ALA LYS ARG ASN LEU \ SEQRES 3 B 76 PRO HIS THR THR LEU VAL ASN GLU CYS ILE ALA GLN SER \ SEQRES 4 B 76 HIS GLN ARG PHE ASN ALA LYS VAL SER MET VAL LYS ARG \ SEQRES 5 B 76 ALA ILE ASP SER LEU ILE GLN LYS GLY TYR LEU GLN ARG \ SEQRES 6 B 76 GLY ASP ASP GLY GLU SER TYR ALA TYR LEU ALA \ SEQRES 1 C 202 GLY SER VAL TYR PRO LYS GLU LEU THR GLN VAL PHE GLU \ SEQRES 2 C 202 HIS TYR ILE ASN ASN ASN LEU PHE ASP ILE ASP SER LEU \ SEQRES 3 C 202 VAL LYS PHE ILE GLU GLU LEU GLY TYR ASN LEU GLU ASP \ SEQRES 4 C 202 LEU ALA THR LEU CYS LEU ALA HIS LEU LEU GLY TYR LYS \ SEQRES 5 C 202 LYS LEU GLU GLU PRO LEU LYS ARG GLU ASP PHE LEU SER \ SEQRES 6 C 202 THR TRP PHE MET GLN GLY CYS SER THR ILE SER ASP MET \ SEQRES 7 C 202 GLN GLU CYS ILE LYS THR LEU ASP VAL LYS LEU HIS GLU \ SEQRES 8 C 202 ASP LEU GLN TYR PHE THR GLN ILE TYR ASN TYR ALA PHE \ SEQRES 9 C 202 ASN LEU ILE LEU ASP PRO ASN ARG LYS ASP ILE ASP THR \ SEQRES 10 C 202 ASP GLU GLY ILE GLN TYR TRP LYS LEU PHE PHE GLN PRO \ SEQRES 11 C 202 GLU TYR PRO VAL ARG MET GLU PRO ASP LEU LEU GLU ALA \ SEQRES 12 C 202 TRP PHE ARG PHE LEU ARG ASP GLU GLY LYS THR THR ILE \ SEQRES 13 C 202 SER LYS ASP THR TRP ARG MET LEU LEU LEU PHE PHE LYS \ SEQRES 14 C 202 ARG TYR PRO THR ILE GLN LYS ILE ILE SER ASP TYR ASP \ SEQRES 15 C 202 GLU THR ALA ALA TRP PRO PHE ILE ILE ASP GLU PHE TYR \ SEQRES 16 C 202 GLU CYS LEU GLN ASP GLN GLN \ SEQRES 1 D 76 GLY SER GLU LEU ASN THR GLU ARG GLN ILE PHE LEU GLU \ SEQRES 2 D 76 ALA CYS ILE VAL ARG ILE MET LYS ALA LYS ARG ASN LEU \ SEQRES 3 D 76 PRO HIS THR THR LEU VAL ASN GLU CYS ILE ALA GLN SER \ SEQRES 4 D 76 HIS GLN ARG PHE ASN ALA LYS VAL SER MET VAL LYS ARG \ SEQRES 5 D 76 ALA ILE ASP SER LEU ILE GLN LYS GLY TYR LEU GLN ARG \ SEQRES 6 D 76 GLY ASP ASP GLY GLU SER TYR ALA TYR LEU ALA \ SEQRES 1 E 202 GLY SER VAL TYR PRO LYS GLU LEU THR GLN VAL PHE GLU \ SEQRES 2 E 202 HIS TYR ILE ASN ASN ASN LEU PHE ASP ILE ASP SER LEU \ SEQRES 3 E 202 VAL LYS PHE ILE GLU GLU LEU GLY TYR ASN LEU GLU ASP \ SEQRES 4 E 202 LEU ALA THR LEU CYS LEU ALA HIS LEU LEU GLY TYR LYS \ SEQRES 5 E 202 LYS LEU GLU GLU PRO LEU LYS ARG GLU ASP PHE LEU SER \ SEQRES 6 E 202 THR TRP PHE MET GLN GLY CYS SER THR ILE SER ASP MET \ SEQRES 7 E 202 GLN GLU CYS ILE LYS THR LEU ASP VAL LYS LEU HIS GLU \ SEQRES 8 E 202 ASP LEU GLN TYR PHE THR GLN ILE TYR ASN TYR ALA PHE \ SEQRES 9 E 202 ASN LEU ILE LEU ASP PRO ASN ARG LYS ASP ILE ASP THR \ SEQRES 10 E 202 ASP GLU GLY ILE GLN TYR TRP LYS LEU PHE PHE GLN PRO \ SEQRES 11 E 202 GLU TYR PRO VAL ARG MET GLU PRO ASP LEU LEU GLU ALA \ SEQRES 12 E 202 TRP PHE ARG PHE LEU ARG ASP GLU GLY LYS THR THR ILE \ SEQRES 13 E 202 SER LYS ASP THR TRP ARG MET LEU LEU LEU PHE PHE LYS \ SEQRES 14 E 202 ARG TYR PRO THR ILE GLN LYS ILE ILE SER ASP TYR ASP \ SEQRES 15 E 202 GLU THR ALA ALA TRP PRO PHE ILE ILE ASP GLU PHE TYR \ SEQRES 16 E 202 GLU CYS LEU GLN ASP GLN GLN \ SEQRES 1 F 76 GLY SER GLU LEU ASN THR GLU ARG GLN ILE PHE LEU GLU \ SEQRES 2 F 76 ALA CYS ILE VAL ARG ILE MET LYS ALA LYS ARG ASN LEU \ SEQRES 3 F 76 PRO HIS THR THR LEU VAL ASN GLU CYS ILE ALA GLN SER \ SEQRES 4 F 76 HIS GLN ARG PHE ASN ALA LYS VAL SER MET VAL LYS ARG \ SEQRES 5 F 76 ALA ILE ASP SER LEU ILE GLN LYS GLY TYR LEU GLN ARG \ SEQRES 6 F 76 GLY ASP ASP GLY GLU SER TYR ALA TYR LEU ALA \ SEQRES 1 G 202 GLY SER VAL TYR PRO LYS GLU LEU THR GLN VAL PHE GLU \ SEQRES 2 G 202 HIS TYR ILE ASN ASN ASN LEU PHE ASP ILE ASP SER LEU \ SEQRES 3 G 202 VAL LYS PHE ILE GLU GLU LEU GLY TYR ASN LEU GLU ASP \ SEQRES 4 G 202 LEU ALA THR LEU CYS LEU ALA HIS LEU LEU GLY TYR LYS \ SEQRES 5 G 202 LYS LEU GLU GLU PRO LEU LYS ARG GLU ASP PHE LEU SER \ SEQRES 6 G 202 THR TRP PHE MET GLN GLY CYS SER THR ILE SER ASP MET \ SEQRES 7 G 202 GLN GLU CYS ILE LYS THR LEU ASP VAL LYS LEU HIS GLU \ SEQRES 8 G 202 ASP LEU GLN TYR PHE THR GLN ILE TYR ASN TYR ALA PHE \ SEQRES 9 G 202 ASN LEU ILE LEU ASP PRO ASN ARG LYS ASP ILE ASP THR \ SEQRES 10 G 202 ASP GLU GLY ILE GLN TYR TRP LYS LEU PHE PHE GLN PRO \ SEQRES 11 G 202 GLU TYR PRO VAL ARG MET GLU PRO ASP LEU LEU GLU ALA \ SEQRES 12 G 202 TRP PHE ARG PHE LEU ARG ASP GLU GLY LYS THR THR ILE \ SEQRES 13 G 202 SER LYS ASP THR TRP ARG MET LEU LEU LEU PHE PHE LYS \ SEQRES 14 G 202 ARG TYR PRO THR ILE GLN LYS ILE ILE SER ASP TYR ASP \ SEQRES 15 G 202 GLU THR ALA ALA TRP PRO PHE ILE ILE ASP GLU PHE TYR \ SEQRES 16 G 202 GLU CYS LEU GLN ASP GLN GLN \ SEQRES 1 H 76 GLY SER GLU LEU ASN THR GLU ARG GLN ILE PHE LEU GLU \ SEQRES 2 H 76 ALA CYS ILE VAL ARG ILE MET LYS ALA LYS ARG ASN LEU \ SEQRES 3 H 76 PRO HIS THR THR LEU VAL ASN GLU CYS ILE ALA GLN SER \ SEQRES 4 H 76 HIS GLN ARG PHE ASN ALA LYS VAL SER MET VAL LYS ARG \ SEQRES 5 H 76 ALA ILE ASP SER LEU ILE GLN LYS GLY TYR LEU GLN ARG \ SEQRES 6 H 76 GLY ASP ASP GLY GLU SER TYR ALA TYR LEU ALA \ SEQRES 1 I 202 GLY SER VAL TYR PRO LYS GLU LEU THR GLN VAL PHE GLU \ SEQRES 2 I 202 HIS TYR ILE ASN ASN ASN LEU PHE ASP ILE ASP SER LEU \ SEQRES 3 I 202 VAL LYS PHE ILE GLU GLU LEU GLY TYR ASN LEU GLU ASP \ SEQRES 4 I 202 LEU ALA THR LEU CYS LEU ALA HIS LEU LEU GLY TYR LYS \ SEQRES 5 I 202 LYS LEU GLU GLU PRO LEU LYS ARG GLU ASP PHE LEU SER \ SEQRES 6 I 202 THR TRP PHE MET GLN GLY CYS SER THR ILE SER ASP MET \ SEQRES 7 I 202 GLN GLU CYS ILE LYS THR LEU ASP VAL LYS LEU HIS GLU \ SEQRES 8 I 202 ASP LEU GLN TYR PHE THR GLN ILE TYR ASN TYR ALA PHE \ SEQRES 9 I 202 ASN LEU ILE LEU ASP PRO ASN ARG LYS ASP ILE ASP THR \ SEQRES 10 I 202 ASP GLU GLY ILE GLN TYR TRP LYS LEU PHE PHE GLN PRO \ SEQRES 11 I 202 GLU TYR PRO VAL ARG MET GLU PRO ASP LEU LEU GLU ALA \ SEQRES 12 I 202 TRP PHE ARG PHE LEU ARG ASP GLU GLY LYS THR THR ILE \ SEQRES 13 I 202 SER LYS ASP THR TRP ARG MET LEU LEU LEU PHE PHE LYS \ SEQRES 14 I 202 ARG TYR PRO THR ILE GLN LYS ILE ILE SER ASP TYR ASP \ SEQRES 15 I 202 GLU THR ALA ALA TRP PRO PHE ILE ILE ASP GLU PHE TYR \ SEQRES 16 I 202 GLU CYS LEU GLN ASP GLN GLN \ SEQRES 1 J 76 GLY SER GLU LEU ASN THR GLU ARG GLN ILE PHE LEU GLU \ SEQRES 2 J 76 ALA CYS ILE VAL ARG ILE MET LYS ALA LYS ARG ASN LEU \ SEQRES 3 J 76 PRO HIS THR THR LEU VAL ASN GLU CYS ILE ALA GLN SER \ SEQRES 4 J 76 HIS GLN ARG PHE ASN ALA LYS VAL SER MET VAL LYS ARG \ SEQRES 5 J 76 ALA ILE ASP SER LEU ILE GLN LYS GLY TYR LEU GLN ARG \ SEQRES 6 J 76 GLY ASP ASP GLY GLU SER TYR ALA TYR LEU ALA \ HELIX 1 1 PRO A 72 ILE A 83 1 12 \ HELIX 2 2 ASP A 89 LEU A 100 1 12 \ HELIX 3 3 ASP A 106 GLY A 117 1 12 \ HELIX 4 4 LYS A 126 GLY A 138 1 13 \ HELIX 5 5 THR A 141 ASP A 159 1 19 \ HELIX 6 6 ASP A 159 LEU A 175 1 17 \ HELIX 7 7 THR A 184 PHE A 195 1 12 \ HELIX 8 8 GLU A 204 GLU A 218 1 15 \ HELIX 9 9 LYS A 225 TYR A 238 1 14 \ HELIX 10 10 THR A 240 TYR A 248 1 9 \ HELIX 11 11 PRO A 255 LEU A 265 1 11 \ HELIX 12 12 GLN B 748 ARG B 763 1 16 \ HELIX 13 13 HIS B 767 GLN B 777 1 11 \ HELIX 14 14 LYS B 785 GLY B 800 1 16 \ HELIX 15 15 PRO C 72 ILE C 83 1 12 \ HELIX 16 16 ASP C 89 GLY C 101 1 13 \ HELIX 17 17 ASP C 106 GLY C 117 1 12 \ HELIX 18 18 LYS C 126 GLY C 138 1 13 \ HELIX 19 19 THR C 141 ASP C 159 1 19 \ HELIX 20 20 ASP C 159 LEU C 175 1 17 \ HELIX 21 21 THR C 184 PHE C 195 1 12 \ HELIX 22 22 GLU C 204 GLU C 218 1 15 \ HELIX 23 23 SER C 224 LYS C 236 1 13 \ HELIX 24 24 ILE C 241 SER C 246 1 6 \ HELIX 25 25 PRO C 255 GLU C 263 1 9 \ HELIX 26 26 ARG D 747 ARG D 763 1 17 \ HELIX 27 27 HIS D 767 ALA D 776 1 10 \ HELIX 28 28 LYS D 785 GLY D 800 1 16 \ HELIX 29 29 LYS E 73 ILE E 83 1 11 \ HELIX 30 30 ASP E 89 GLU E 99 1 11 \ HELIX 31 31 ASP E 106 GLY E 117 1 12 \ HELIX 32 32 LYS E 126 GLY E 138 1 13 \ HELIX 33 33 THR E 141 ASP E 159 1 19 \ HELIX 34 34 ASP E 159 LEU E 175 1 17 \ HELIX 35 35 THR E 184 PHE E 195 1 12 \ HELIX 36 36 GLU E 204 GLY E 219 1 16 \ HELIX 37 37 LYS E 225 TYR E 238 1 14 \ HELIX 38 38 THR E 240 TYR E 248 1 9 \ HELIX 39 39 PRO E 255 TYR E 262 1 8 \ HELIX 40 40 THR F 745 ARG F 763 1 19 \ HELIX 41 41 HIS F 767 ALA F 776 1 10 \ HELIX 42 42 LYS F 785 LYS F 799 1 15 \ HELIX 43 43 GLU G 74 ILE G 83 1 10 \ HELIX 44 44 ASP G 89 GLU G 99 1 11 \ HELIX 45 45 LEU G 107 GLY G 117 1 11 \ HELIX 46 46 LYS G 126 GLY G 138 1 13 \ HELIX 47 47 THR G 141 ASP G 159 1 19 \ HELIX 48 48 ASP G 159 LEU G 175 1 17 \ HELIX 49 49 THR G 184 PHE G 195 1 12 \ HELIX 50 50 GLU G 204 GLU G 218 1 15 \ HELIX 51 51 SER G 224 TYR G 238 1 15 \ HELIX 52 52 THR G 240 TYR G 248 1 9 \ HELIX 53 53 PRO G 255 TYR G 262 1 8 \ HELIX 54 54 ILE H 749 LYS H 760 1 12 \ HELIX 55 55 HIS H 767 SER H 778 1 12 \ HELIX 56 56 LYS H 785 LYS H 799 1 15 \ HELIX 57 57 ASP I 91 ILE I 97 1 7 \ HELIX 58 58 ASP I 106 GLY I 117 1 12 \ HELIX 59 59 LYS I 126 MET I 136 1 11 \ HELIX 60 60 THR I 141 GLU I 158 1 18 \ HELIX 61 61 ASP I 159 LEU I 175 1 17 \ HELIX 62 62 THR I 184 PHE I 195 1 12 \ HELIX 63 63 ARG I 213 GLU I 218 1 6 \ HELIX 64 64 ASP I 226 LYS I 236 1 11 \ HELIX 65 65 ILE I 257 LEU I 265 1 9 \ HELIX 66 66 GLU J 746 ILE J 749 5 4 \ HELIX 67 67 PHE J 750 LYS J 760 1 11 \ HELIX 68 68 PRO J 766 GLU J 773 1 8 \ HELIX 69 69 CYS J 774 SER J 778 5 5 \ HELIX 70 70 MET J 788 ASP J 794 1 7 \ HELIX 71 71 ASP J 794 GLY J 800 1 7 \ SHEET 1 A 2 ASP A 181 ASP A 183 0 \ SHEET 2 A 2 THR A 222 SER A 224 -1 O ILE A 223 N ILE A 182 \ SHEET 1 B 3 LEU B 765 PRO B 766 0 \ SHEET 2 B 3 SER B 810 TYR B 813 -1 O TYR B 811 N LEU B 765 \ SHEET 3 B 3 LEU B 802 ARG B 804 -1 N GLN B 803 O ALA B 812 \ SHEET 1 C 2 ILE C 182 ASP C 183 0 \ SHEET 2 C 2 THR C 222 ILE C 223 -1 O ILE C 223 N ILE C 182 \ SHEET 1 D 3 LEU D 765 PRO D 766 0 \ SHEET 2 D 3 SER D 810 TYR D 813 -1 O TYR D 811 N LEU D 765 \ SHEET 3 D 3 LEU D 802 ARG D 804 -1 N GLN D 803 O ALA D 812 \ SHEET 1 E 2 ASP E 181 ASP E 183 0 \ SHEET 2 E 2 THR E 222 SER E 224 -1 O ILE E 223 N ILE E 182 \ SHEET 1 F 3 ASN F 764 PRO F 766 0 \ SHEET 2 F 3 SER F 810 TYR F 813 -1 O TYR F 811 N LEU F 765 \ SHEET 3 F 3 LEU F 802 ARG F 804 -1 N GLN F 803 O ALA F 812 \ SHEET 1 G 2 ILE G 182 ASP G 183 0 \ SHEET 2 G 2 THR G 222 ILE G 223 -1 O ILE G 223 N ILE G 182 \ SHEET 1 H 3 ASN H 764 PRO H 766 0 \ SHEET 2 H 3 SER H 810 TYR H 813 -1 O TYR H 811 N LEU H 765 \ SHEET 3 H 3 LEU H 802 ARG H 804 -1 N GLN H 803 O ALA H 812 \ SHEET 1 I 2 ILE I 182 ASP I 183 0 \ SHEET 2 I 2 THR I 222 ILE I 223 -1 O ILE I 223 N ILE I 182 \ SHEET 1 J 2 LEU J 802 ARG J 804 0 \ SHEET 2 J 2 TYR J 811 TYR J 813 -1 O ALA J 812 N GLN J 803 \ CRYST1 123.914 123.914 192.558 90.00 90.00 120.00 P 61 30 \ 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 0.008070 0.004659 0.000000 0.00000 \ SCALE2 0.000000 0.009319 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.005193 0.00000 \ TER 1665 GLN A 266 \ TER 2225 ALA B 815 \ TER 3915 GLN C 266 \ TER 4459 ALA D 815 \ TER 6127 LEU E 265 \ TER 6668 ALA F 815 \ TER 8308 LEU G 265 \ TER 8848 ALA H 815 \ TER 10197 GLN I 269 \ ATOM 10198 N GLU J 746 -4.389 49.244 -69.866 1.00151.74 N \ ATOM 10199 CA GLU J 746 -4.009 48.098 -70.737 1.00152.17 C \ ATOM 10200 C GLU J 746 -2.745 47.396 -70.237 1.00152.34 C \ ATOM 10201 O GLU J 746 -2.529 47.257 -69.031 1.00152.24 O \ ATOM 10202 CB GLU J 746 -3.813 48.574 -72.179 1.00151.84 C \ ATOM 10203 N ARG J 747 -1.917 46.959 -71.180 1.00152.46 N \ ATOM 10204 CA ARG J 747 -0.679 46.244 -70.881 1.00152.53 C \ ATOM 10205 C ARG J 747 0.330 47.067 -70.080 1.00152.39 C \ ATOM 10206 O ARG J 747 1.352 46.545 -69.628 1.00152.65 O \ ATOM 10207 CB ARG J 747 -0.033 45.786 -72.196 1.00152.92 C \ ATOM 10208 CG ARG J 747 1.207 44.918 -72.036 1.00153.62 C \ ATOM 10209 CD ARG J 747 1.808 44.485 -73.382 1.00154.18 C \ ATOM 10210 NE ARG J 747 2.398 45.581 -74.153 1.00154.62 N \ ATOM 10211 CZ ARG J 747 1.714 46.410 -74.940 1.00155.14 C \ ATOM 10212 NH1 ARG J 747 0.398 46.285 -75.076 1.00155.38 N \ ATOM 10213 NH2 ARG J 747 2.348 47.364 -75.606 1.00154.98 N \ ATOM 10214 N GLN J 748 0.036 48.346 -69.889 1.00151.78 N \ ATOM 10215 CA GLN J 748 0.951 49.226 -69.176 1.00150.83 C \ ATOM 10216 C GLN J 748 1.025 49.020 -67.648 1.00148.58 C \ ATOM 10217 O GLN J 748 1.973 49.494 -67.009 1.00148.52 O \ ATOM 10218 CB GLN J 748 0.609 50.684 -69.526 1.00153.02 C \ ATOM 10219 CG GLN J 748 1.807 51.638 -69.541 1.00156.25 C \ ATOM 10220 CD GLN J 748 2.133 52.213 -68.167 1.00157.99 C \ ATOM 10221 OE1 GLN J 748 3.197 52.808 -67.963 1.00158.94 O \ ATOM 10222 NE2 GLN J 748 1.208 52.050 -67.221 1.00158.79 N \ ATOM 10223 N ILE J 749 0.055 48.310 -67.058 1.00145.50 N \ ATOM 10224 CA ILE J 749 0.090 48.082 -65.605 1.00141.32 C \ ATOM 10225 C ILE J 749 1.129 47.029 -65.233 1.00139.21 C \ ATOM 10226 O ILE J 749 1.255 46.675 -64.068 1.00138.31 O \ ATOM 10227 CB ILE J 749 -1.279 47.638 -65.006 1.00140.35 C \ ATOM 10228 CG1 ILE J 749 -1.418 46.118 -65.077 1.00138.83 C \ ATOM 10229 CG2 ILE J 749 -2.424 48.336 -65.728 1.00139.75 C \ ATOM 10230 CD1 ILE J 749 -2.532 45.581 -64.229 1.00138.90 C \ ATOM 10231 N PHE J 750 1.845 46.515 -66.233 1.00137.30 N \ ATOM 10232 CA PHE J 750 2.914 45.542 -66.014 1.00135.62 C \ ATOM 10233 C PHE J 750 4.091 46.400 -65.602 1.00134.92 C \ ATOM 10234 O PHE J 750 4.804 46.104 -64.639 1.00134.94 O \ ATOM 10235 CB PHE J 750 3.278 44.810 -67.313 1.00135.09 C \ ATOM 10236 CG PHE J 750 4.718 44.316 -67.361 1.00134.79 C \ ATOM 10237 CD1 PHE J 750 5.158 43.284 -66.526 1.00134.90 C \ ATOM 10238 CD2 PHE J 750 5.639 44.902 -68.230 1.00134.08 C \ ATOM 10239 CE1 PHE J 750 6.491 42.847 -66.564 1.00134.19 C \ ATOM 10240 CE2 PHE J 750 6.975 44.470 -68.272 1.00133.27 C \ ATOM 10241 CZ PHE J 750 7.399 43.446 -67.438 1.00133.38 C \ ATOM 10242 N LEU J 751 4.277 47.471 -66.365 1.00133.92 N \ ATOM 10243 CA LEU J 751 5.347 48.429 -66.140 1.00132.18 C \ ATOM 10244 C LEU J 751 5.422 48.794 -64.671 1.00131.77 C \ ATOM 10245 O LEU J 751 6.463 48.646 -64.036 1.00131.64 O \ ATOM 10246 CB LEU J 751 5.096 49.682 -66.980 1.00130.78 C \ ATOM 10247 CG LEU J 751 5.300 49.492 -68.480 1.00129.12 C \ ATOM 10248 CD1 LEU J 751 4.928 50.744 -69.229 1.00128.25 C \ ATOM 10249 CD2 LEU J 751 6.752 49.145 -68.720 1.00128.82 C \ ATOM 10250 N GLU J 752 4.304 49.270 -64.140 1.00131.30 N \ ATOM 10251 CA GLU J 752 4.221 49.661 -62.746 1.00130.83 C \ ATOM 10252 C GLU J 752 4.876 48.621 -61.812 1.00130.11 C \ ATOM 10253 O GLU J 752 5.510 48.983 -60.815 1.00129.09 O \ ATOM 10254 CB GLU J 752 2.746 49.874 -62.380 1.00131.73 C \ ATOM 10255 CG GLU J 752 2.512 50.399 -60.971 1.00134.27 C \ ATOM 10256 CD GLU J 752 1.034 50.545 -60.615 1.00134.91 C \ ATOM 10257 OE1 GLU J 752 0.332 51.331 -61.297 1.00134.97 O \ ATOM 10258 OE2 GLU J 752 0.587 49.874 -59.650 1.00135.14 O \ ATOM 10259 N ALA J 753 4.751 47.338 -62.160 1.00129.80 N \ ATOM 10260 CA ALA J 753 5.287 46.242 -61.343 1.00129.52 C \ ATOM 10261 C ALA J 753 6.785 45.941 -61.440 1.00129.44 C \ ATOM 10262 O ALA J 753 7.387 45.524 -60.447 1.00128.79 O \ ATOM 10263 CB ALA J 753 4.488 44.965 -61.603 1.00129.05 C \ ATOM 10264 N CYS J 754 7.391 46.122 -62.615 1.00129.88 N \ ATOM 10265 CA CYS J 754 8.833 45.865 -62.737 1.00129.89 C \ ATOM 10266 C CYS J 754 9.598 46.996 -62.036 1.00129.55 C \ ATOM 10267 O CYS J 754 10.599 46.759 -61.353 1.00129.62 O \ ATOM 10268 CB CYS J 754 9.267 45.722 -64.213 1.00129.54 C \ ATOM 10269 SG CYS J 754 8.934 47.101 -65.330 1.00129.66 S \ ATOM 10270 N ILE J 755 9.098 48.220 -62.197 1.00128.87 N \ ATOM 10271 CA ILE J 755 9.668 49.406 -61.560 1.00127.68 C \ ATOM 10272 C ILE J 755 9.896 49.132 -60.075 1.00127.20 C \ ATOM 10273 O ILE J 755 10.951 49.444 -59.524 1.00126.72 O \ ATOM 10274 CB ILE J 755 8.691 50.607 -61.698 1.00127.67 C \ ATOM 10275 CG1 ILE J 755 8.779 51.195 -63.105 1.00127.50 C \ ATOM 10276 CG2 ILE J 755 8.968 51.656 -60.638 1.00127.01 C \ ATOM 10277 CD1 ILE J 755 10.138 51.773 -63.433 1.00129.17 C \ ATOM 10278 N VAL J 756 8.891 48.537 -59.439 1.00126.84 N \ ATOM 10279 CA VAL J 756 8.953 48.231 -58.022 1.00126.45 C \ ATOM 10280 C VAL J 756 9.909 47.081 -57.709 1.00127.17 C \ ATOM 10281 O VAL J 756 10.418 46.985 -56.593 1.00126.93 O \ ATOM 10282 CB VAL J 756 7.543 47.920 -57.482 1.00125.33 C \ ATOM 10283 CG1 VAL J 756 7.563 47.850 -55.975 1.00124.79 C \ ATOM 10284 CG2 VAL J 756 6.577 48.994 -57.934 1.00124.34 C \ ATOM 10285 N ARG J 757 10.162 46.212 -58.684 1.00128.29 N \ ATOM 10286 CA ARG J 757 11.087 45.097 -58.467 1.00130.04 C \ ATOM 10287 C ARG J 757 12.524 45.640 -58.368 1.00129.52 C \ ATOM 10288 O ARG J 757 13.369 45.091 -57.660 1.00129.24 O \ ATOM 10289 CB ARG J 757 10.993 44.079 -59.620 1.00132.79 C \ ATOM 10290 CG ARG J 757 9.666 43.288 -59.730 1.00136.73 C \ ATOM 10291 CD ARG J 757 9.510 42.191 -58.657 1.00139.88 C \ ATOM 10292 NE ARG J 757 10.545 41.163 -58.759 1.00142.65 N \ ATOM 10293 CZ ARG J 757 10.703 40.163 -57.895 1.00143.62 C \ ATOM 10294 NH1 ARG J 757 11.683 39.281 -58.080 1.00144.33 N \ ATOM 10295 NH2 ARG J 757 9.884 40.043 -56.850 1.00143.12 N \ ATOM 10296 N ILE J 758 12.778 46.730 -59.087 1.00128.91 N \ ATOM 10297 CA ILE J 758 14.081 47.390 -59.118 1.00127.73 C \ ATOM 10298 C ILE J 758 14.263 48.251 -57.881 1.00127.06 C \ ATOM 10299 O ILE J 758 15.295 48.200 -57.218 1.00126.74 O \ ATOM 10300 CB ILE J 758 14.199 48.312 -60.359 1.00127.75 C \ ATOM 10301 CG1 ILE J 758 14.216 47.469 -61.641 1.00127.45 C \ ATOM 10302 CG2 ILE J 758 15.441 49.191 -60.241 1.00127.66 C \ ATOM 10303 CD1 ILE J 758 14.010 48.269 -62.904 1.00127.38 C \ ATOM 10304 N MET J 759 13.240 49.047 -57.592 1.00126.41 N \ ATOM 10305 CA MET J 759 13.238 49.957 -56.458 1.00125.86 C \ ATOM 10306 C MET J 759 13.260 49.301 -55.081 1.00125.96 C \ ATOM 10307 O MET J 759 13.638 49.939 -54.103 1.00125.89 O \ ATOM 10308 CB MET J 759 12.033 50.877 -56.552 1.00125.05 C \ ATOM 10309 CG MET J 759 12.016 51.742 -57.787 1.00124.88 C \ ATOM 10310 SD MET J 759 13.407 52.845 -57.896 1.00124.41 S \ ATOM 10311 CE MET J 759 13.530 53.468 -56.203 1.00124.62 C \ ATOM 10312 N LYS J 760 12.848 48.041 -54.993 1.00126.30 N \ ATOM 10313 CA LYS J 760 12.856 47.343 -53.710 1.00126.68 C \ ATOM 10314 C LYS J 760 14.199 46.628 -53.527 1.00127.34 C \ ATOM 10315 O LYS J 760 14.593 46.280 -52.408 1.00127.39 O \ ATOM 10316 CB LYS J 760 11.694 46.349 -53.645 1.00125.82 C \ ATOM 10317 CG LYS J 760 11.433 45.781 -52.260 1.00125.26 C \ ATOM 10318 CD LYS J 760 12.212 44.505 -52.020 1.00125.14 C \ ATOM 10319 CE LYS J 760 11.718 43.393 -52.930 1.00124.87 C \ ATOM 10320 NZ LYS J 760 12.289 42.073 -52.561 1.00124.59 N \ ATOM 10321 N ALA J 761 14.898 46.428 -54.644 1.00127.94 N \ ATOM 10322 CA ALA J 761 16.213 45.783 -54.658 1.00128.08 C \ ATOM 10323 C ALA J 761 17.289 46.817 -54.996 1.00127.94 C \ ATOM 10324 O ALA J 761 17.447 47.818 -54.294 1.00127.71 O \ ATOM 10325 CB ALA J 761 16.242 44.646 -55.689 1.00127.90 C \ ATOM 10326 N LEU J 765 17.731 56.369 -56.513 1.00144.58 N \ ATOM 10327 CA LEU J 765 18.099 56.234 -57.911 1.00146.00 C \ ATOM 10328 C LEU J 765 17.811 57.509 -58.712 1.00146.39 C \ ATOM 10329 O LEU J 765 17.106 58.395 -58.264 1.00146.10 O \ ATOM 10330 CB LEU J 765 17.322 55.086 -58.562 1.00146.77 C \ ATOM 10331 CG LEU J 765 17.579 53.663 -58.053 1.00146.16 C \ ATOM 10332 CD1 LEU J 765 16.566 52.707 -58.691 1.00146.18 C \ ATOM 10333 CD2 LEU J 765 18.991 53.223 -58.387 1.00145.64 C \ ATOM 10334 N PRO J 766 18.496 57.660 -59.849 1.00147.16 N \ ATOM 10335 CA PRO J 766 18.342 58.805 -60.760 1.00147.74 C \ ATOM 10336 C PRO J 766 17.227 58.630 -61.800 1.00147.98 C \ ATOM 10337 O PRO J 766 16.795 57.521 -62.079 1.00147.92 O \ ATOM 10338 CB PRO J 766 19.706 58.902 -61.446 1.00147.91 C \ ATOM 10339 CG PRO J 766 20.634 58.314 -60.433 1.00147.91 C \ ATOM 10340 CD PRO J 766 19.881 57.146 -59.892 1.00147.39 C \ ATOM 10341 N HIS J 767 16.776 59.739 -62.372 1.00148.25 N \ ATOM 10342 CA HIS J 767 15.718 59.702 -63.375 1.00148.67 C \ ATOM 10343 C HIS J 767 16.249 59.132 -64.683 1.00149.27 C \ ATOM 10344 O HIS J 767 15.488 58.644 -65.518 1.00148.84 O \ ATOM 10345 CB HIS J 767 15.163 61.098 -63.619 1.00148.79 C \ ATOM 10346 CG HIS J 767 14.083 61.147 -64.653 1.00149.10 C \ ATOM 10347 ND1 HIS J 767 13.042 60.241 -64.681 1.00149.05 N \ ATOM 10348 CD2 HIS J 767 13.869 61.993 -65.687 1.00149.21 C \ ATOM 10349 CE1 HIS J 767 12.238 60.528 -65.686 1.00148.95 C \ ATOM 10350 NE2 HIS J 767 12.716 61.589 -66.315 1.00149.18 N \ ATOM 10351 N THR J 768 17.561 59.223 -64.875 1.00150.25 N \ ATOM 10352 CA THR J 768 18.191 58.674 -66.073 1.00151.02 C \ ATOM 10353 C THR J 768 18.315 57.178 -65.824 1.00151.51 C \ ATOM 10354 O THR J 768 17.526 56.382 -66.330 1.00151.47 O \ ATOM 10355 CB THR J 768 19.624 59.256 -66.310 1.00150.65 C \ ATOM 10356 OG1 THR J 768 19.562 60.687 -66.346 1.00150.62 O \ ATOM 10357 CG2 THR J 768 20.211 58.755 -67.629 1.00150.12 C \ ATOM 10358 N THR J 769 19.293 56.829 -64.998 1.00152.13 N \ ATOM 10359 CA THR J 769 19.580 55.451 -64.652 1.00152.83 C \ ATOM 10360 C THR J 769 18.370 54.526 -64.514 1.00153.12 C \ ATOM 10361 O THR J 769 18.500 53.331 -64.770 1.00153.48 O \ ATOM 10362 CB THR J 769 20.413 55.379 -63.349 1.00153.24 C \ ATOM 10363 OG1 THR J 769 21.553 56.242 -63.466 1.00153.33 O \ ATOM 10364 CG2 THR J 769 20.899 53.946 -63.096 1.00153.62 C \ ATOM 10365 N LEU J 770 17.200 55.048 -64.137 1.00153.18 N \ ATOM 10366 CA LEU J 770 16.030 54.172 -63.969 1.00153.24 C \ ATOM 10367 C LEU J 770 15.364 53.673 -65.257 1.00153.44 C \ ATOM 10368 O LEU J 770 15.299 52.467 -65.483 1.00153.83 O \ ATOM 10369 CB LEU J 770 14.962 54.830 -63.081 1.00152.57 C \ ATOM 10370 CG LEU J 770 13.949 53.849 -62.469 1.00151.78 C \ ATOM 10371 CD1 LEU J 770 14.627 53.046 -61.374 1.00151.39 C \ ATOM 10372 CD2 LEU J 770 12.759 54.596 -61.901 1.00151.07 C \ ATOM 10373 N VAL J 771 14.872 54.575 -66.103 1.00153.34 N \ ATOM 10374 CA VAL J 771 14.208 54.144 -67.336 1.00153.17 C \ ATOM 10375 C VAL J 771 15.139 53.403 -68.318 1.00153.52 C \ ATOM 10376 O VAL J 771 14.665 52.697 -69.213 1.00153.34 O \ ATOM 10377 CB VAL J 771 13.532 55.337 -68.056 1.00152.66 C \ ATOM 10378 CG1 VAL J 771 12.494 54.832 -69.059 1.00151.98 C \ ATOM 10379 CG2 VAL J 771 12.873 56.240 -67.038 1.00152.30 C \ ATOM 10380 N ASN J 772 16.455 53.554 -68.149 1.00153.78 N \ ATOM 10381 CA ASN J 772 17.417 52.868 -69.014 1.00153.83 C \ ATOM 10382 C ASN J 772 17.500 51.398 -68.620 1.00153.95 C \ ATOM 10383 O ASN J 772 17.683 50.530 -69.470 1.00153.77 O \ ATOM 10384 CB ASN J 772 18.808 53.507 -68.917 1.00153.75 C \ ATOM 10385 CG ASN J 772 18.966 54.719 -69.833 1.00153.83 C \ ATOM 10386 OD1 ASN J 772 18.096 55.010 -70.663 1.00153.22 O \ ATOM 10387 ND2 ASN J 772 20.087 55.426 -69.692 1.00153.78 N \ ATOM 10388 N GLU J 773 17.378 51.121 -67.325 1.00154.25 N \ ATOM 10389 CA GLU J 773 17.406 49.745 -66.849 1.00154.73 C \ ATOM 10390 C GLU J 773 15.971 49.232 -66.742 1.00154.51 C \ ATOM 10391 O GLU J 773 15.734 48.119 -66.270 1.00154.45 O \ ATOM 10392 CB GLU J 773 18.114 49.643 -65.487 1.00155.58 C \ ATOM 10393 CG GLU J 773 17.516 50.492 -64.364 1.00157.40 C \ ATOM 10394 CD GLU J 773 18.240 50.320 -63.024 1.00158.20 C \ ATOM 10395 OE1 GLU J 773 17.885 51.036 -62.057 1.00159.20 O \ ATOM 10396 OE2 GLU J 773 19.156 49.471 -62.938 1.00157.97 O \ ATOM 10397 N CYS J 774 15.017 50.050 -67.188 1.00154.26 N \ ATOM 10398 CA CYS J 774 13.606 49.672 -67.154 1.00154.09 C \ ATOM 10399 C CYS J 774 13.176 49.134 -68.514 1.00153.86 C \ ATOM 10400 O CYS J 774 12.859 47.953 -68.641 1.00154.04 O \ ATOM 10401 CB CYS J 774 12.720 50.865 -66.770 1.00154.37 C \ ATOM 10402 SG CYS J 774 10.944 50.458 -66.613 1.00154.48 S \ ATOM 10403 N ILE J 775 13.162 49.991 -69.533 1.00153.50 N \ ATOM 10404 CA ILE J 775 12.779 49.538 -70.867 1.00152.86 C \ ATOM 10405 C ILE J 775 13.746 48.416 -71.237 1.00153.05 C \ ATOM 10406 O ILE J 775 13.480 47.631 -72.143 1.00152.95 O \ ATOM 10407 CB ILE J 775 12.875 50.677 -71.924 1.00152.19 C \ ATOM 10408 CG1 ILE J 775 12.054 51.889 -71.461 1.00151.03 C \ ATOM 10409 CG2 ILE J 775 12.352 50.176 -73.273 1.00151.58 C \ ATOM 10410 CD1 ILE J 775 12.257 53.142 -72.286 1.00150.99 C \ ATOM 10411 N ALA J 776 14.865 48.351 -70.513 1.00153.46 N \ ATOM 10412 CA ALA J 776 15.895 47.333 -70.734 1.00153.82 C \ ATOM 10413 C ALA J 776 15.471 45.963 -70.217 1.00153.74 C \ ATOM 10414 O ALA J 776 15.971 44.939 -70.677 1.00153.85 O \ ATOM 10415 CB ALA J 776 17.206 47.749 -70.065 1.00153.86 C \ ATOM 10416 N GLN J 777 14.549 45.938 -69.264 1.00153.51 N \ ATOM 10417 CA GLN J 777 14.104 44.667 -68.719 1.00153.23 C \ ATOM 10418 C GLN J 777 12.932 44.032 -69.464 1.00153.29 C \ ATOM 10419 O GLN J 777 12.378 43.045 -69.006 1.00153.57 O \ ATOM 10420 CB GLN J 777 13.742 44.820 -67.236 1.00152.98 C \ ATOM 10421 CG GLN J 777 14.712 44.096 -66.296 1.00152.74 C \ ATOM 10422 CD GLN J 777 14.252 44.074 -64.845 1.00152.70 C \ ATOM 10423 OE1 GLN J 777 13.505 43.185 -64.425 1.00152.88 O \ ATOM 10424 NE2 GLN J 777 14.697 45.058 -64.073 1.00152.21 N \ ATOM 10425 N SER J 778 12.573 44.552 -70.632 1.00153.25 N \ ATOM 10426 CA SER J 778 11.437 43.982 -71.363 1.00153.25 C \ ATOM 10427 C SER J 778 11.694 43.378 -72.754 1.00153.83 C \ ATOM 10428 O SER J 778 11.847 42.156 -72.901 1.00153.91 O \ ATOM 10429 CB SER J 778 10.329 45.027 -71.475 1.00152.40 C \ ATOM 10430 OG SER J 778 10.018 45.540 -70.197 1.00151.33 O \ ATOM 10431 N HIS J 779 11.713 44.241 -73.766 1.00154.25 N \ ATOM 10432 CA HIS J 779 11.904 43.820 -75.152 1.00154.85 C \ ATOM 10433 C HIS J 779 10.821 42.825 -75.543 1.00154.89 C \ ATOM 10434 O HIS J 779 9.632 43.141 -75.480 1.00154.79 O \ ATOM 10435 CB HIS J 779 13.286 43.189 -75.361 1.00155.37 C \ ATOM 10436 CG HIS J 779 14.388 44.189 -75.506 1.00156.09 C \ ATOM 10437 ND1 HIS J 779 15.296 44.451 -74.504 1.00156.26 N \ ATOM 10438 CD2 HIS J 779 14.718 45.007 -76.537 1.00156.38 C \ ATOM 10439 CE1 HIS J 779 16.140 45.385 -74.908 1.00156.40 C \ ATOM 10440 NE2 HIS J 779 15.809 45.739 -76.138 1.00156.67 N \ ATOM 10441 N VAL J 786 7.940 54.801 -73.170 1.00134.66 N \ ATOM 10442 CA VAL J 786 8.496 55.868 -72.350 1.00134.93 C \ ATOM 10443 C VAL J 786 7.548 57.068 -72.311 1.00135.18 C \ ATOM 10444 O VAL J 786 7.641 57.910 -71.420 1.00134.99 O \ ATOM 10445 CB VAL J 786 9.897 56.287 -72.864 1.00134.78 C \ ATOM 10446 CG1 VAL J 786 9.784 56.929 -74.240 1.00134.70 C \ ATOM 10447 CG2 VAL J 786 10.571 57.209 -71.855 1.00134.22 C \ ATOM 10448 N SER J 787 6.641 57.150 -73.281 1.00135.67 N \ ATOM 10449 CA SER J 787 5.644 58.219 -73.290 1.00136.32 C \ ATOM 10450 C SER J 787 4.505 57.696 -72.394 1.00136.91 C \ ATOM 10451 O SER J 787 3.576 58.426 -72.038 1.00136.55 O \ ATOM 10452 CB SER J 787 5.131 58.473 -74.716 1.00136.01 C \ ATOM 10453 OG SER J 787 4.105 59.455 -74.740 1.00135.23 O \ ATOM 10454 N MET J 788 4.613 56.417 -72.029 1.00137.77 N \ ATOM 10455 CA MET J 788 3.638 55.727 -71.179 1.00138.19 C \ ATOM 10456 C MET J 788 4.261 55.247 -69.863 1.00138.93 C \ ATOM 10457 O MET J 788 3.544 55.015 -68.891 1.00138.80 O \ ATOM 10458 CB MET J 788 3.039 54.529 -71.927 1.00137.32 C \ ATOM 10459 CG MET J 788 4.087 53.593 -72.519 1.00136.30 C \ ATOM 10460 SD MET J 788 3.381 52.182 -73.332 1.00134.80 S \ ATOM 10461 CE MET J 788 2.597 52.941 -74.738 1.00134.78 C \ ATOM 10462 N VAL J 789 5.588 55.089 -69.842 1.00139.72 N \ ATOM 10463 CA VAL J 789 6.298 54.660 -68.631 1.00140.18 C \ ATOM 10464 C VAL J 789 5.938 55.665 -67.536 1.00140.87 C \ ATOM 10465 O VAL J 789 5.569 55.292 -66.417 1.00140.81 O \ ATOM 10466 CB VAL J 789 7.861 54.639 -68.847 1.00139.63 C \ ATOM 10467 CG1 VAL J 789 8.425 56.050 -68.878 1.00139.43 C \ ATOM 10468 CG2 VAL J 789 8.537 53.832 -67.755 1.00138.66 C \ ATOM 10469 N LYS J 790 6.027 56.945 -67.898 1.00141.30 N \ ATOM 10470 CA LYS J 790 5.715 58.053 -67.005 1.00141.54 C \ ATOM 10471 C LYS J 790 4.272 57.955 -66.463 1.00141.86 C \ ATOM 10472 O LYS J 790 4.005 58.322 -65.308 1.00142.06 O \ ATOM 10473 CB LYS J 790 5.933 59.392 -67.745 1.00141.57 C \ ATOM 10474 CG LYS J 790 7.409 59.688 -68.128 1.00141.41 C \ ATOM 10475 CD LYS J 790 7.551 61.019 -68.883 1.00141.65 C \ ATOM 10476 CE LYS J 790 9.010 61.337 -69.231 1.00142.30 C \ ATOM 10477 NZ LYS J 790 9.190 62.617 -70.008 1.00142.46 N \ ATOM 10478 N ARG J 791 3.349 57.448 -67.284 1.00141.75 N \ ATOM 10479 CA ARG J 791 1.945 57.310 -66.874 1.00141.13 C \ ATOM 10480 C ARG J 791 1.842 56.348 -65.696 1.00139.88 C \ ATOM 10481 O ARG J 791 0.912 56.430 -64.895 1.00139.51 O \ ATOM 10482 CB ARG J 791 1.085 56.793 -68.043 1.00142.23 C \ ATOM 10483 CG ARG J 791 -0.414 57.094 -67.907 1.00143.96 C \ ATOM 10484 CD ARG J 791 -1.246 56.520 -69.062 1.00145.27 C \ ATOM 10485 NE ARG J 791 -2.018 55.341 -68.664 1.00146.89 N \ ATOM 10486 CZ ARG J 791 -1.485 54.160 -68.352 1.00147.64 C \ ATOM 10487 NH1 ARG J 791 -0.169 53.993 -68.398 1.00148.13 N \ ATOM 10488 NH2 ARG J 791 -2.265 53.148 -67.980 1.00147.69 N \ ATOM 10489 N ALA J 792 2.815 55.445 -65.600 1.00138.73 N \ ATOM 10490 CA ALA J 792 2.859 54.451 -64.535 1.00137.52 C \ ATOM 10491 C ALA J 792 3.807 54.832 -63.423 1.00136.80 C \ ATOM 10492 O ALA J 792 3.674 54.332 -62.311 1.00136.92 O \ ATOM 10493 CB ALA J 792 3.262 53.107 -65.088 1.00137.59 C \ ATOM 10494 N ILE J 793 4.776 55.693 -63.722 1.00135.90 N \ ATOM 10495 CA ILE J 793 5.736 56.131 -62.711 1.00135.00 C \ ATOM 10496 C ILE J 793 5.074 57.212 -61.872 1.00134.45 C \ ATOM 10497 O ILE J 793 5.413 57.406 -60.706 1.00134.25 O \ ATOM 10498 CB ILE J 793 7.057 56.667 -63.360 1.00135.10 C \ ATOM 10499 CG1 ILE J 793 8.271 56.242 -62.524 1.00134.77 C \ ATOM 10500 CG2 ILE J 793 7.025 58.187 -63.481 1.00134.77 C \ ATOM 10501 CD1 ILE J 793 8.578 57.168 -61.376 1.00135.67 C \ ATOM 10502 N ASP J 794 4.123 57.914 -62.472 1.00134.15 N \ ATOM 10503 CA ASP J 794 3.406 58.940 -61.743 1.00134.30 C \ ATOM 10504 C ASP J 794 2.267 58.220 -61.032 1.00133.08 C \ ATOM 10505 O ASP J 794 1.736 58.702 -60.030 1.00133.03 O \ ATOM 10506 CB ASP J 794 2.853 60.004 -62.695 1.00137.29 C \ ATOM 10507 CG ASP J 794 2.451 61.297 -61.967 1.00140.53 C \ ATOM 10508 OD1 ASP J 794 1.556 61.242 -61.085 1.00142.41 O \ ATOM 10509 OD2 ASP J 794 3.032 62.369 -62.278 1.00141.53 O \ ATOM 10510 N SER J 795 1.903 57.052 -61.557 1.00131.51 N \ ATOM 10511 CA SER J 795 0.836 56.241 -60.978 1.00129.55 C \ ATOM 10512 C SER J 795 1.312 55.514 -59.728 1.00128.87 C \ ATOM 10513 O SER J 795 0.519 54.951 -58.984 1.00128.67 O \ ATOM 10514 CB SER J 795 0.310 55.240 -62.003 1.00128.73 C \ ATOM 10515 OG SER J 795 -0.512 55.890 -62.954 1.00127.61 O \ ATOM 10516 N LEU J 796 2.617 55.521 -59.503 1.00128.52 N \ ATOM 10517 CA LEU J 796 3.175 54.896 -58.319 1.00127.90 C \ ATOM 10518 C LEU J 796 3.201 55.976 -57.245 1.00127.79 C \ ATOM 10519 O LEU J 796 3.192 55.686 -56.044 1.00127.37 O \ ATOM 10520 CB LEU J 796 4.568 54.354 -58.628 1.00127.14 C \ ATOM 10521 CG LEU J 796 4.361 53.060 -59.411 1.00126.39 C \ ATOM 10522 CD1 LEU J 796 5.514 52.783 -60.350 1.00126.89 C \ ATOM 10523 CD2 LEU J 796 4.159 51.939 -58.417 1.00125.82 C \ ATOM 10524 N ILE J 797 3.193 57.226 -57.706 1.00127.45 N \ ATOM 10525 CA ILE J 797 3.181 58.393 -56.836 1.00127.06 C \ ATOM 10526 C ILE J 797 1.807 58.577 -56.163 1.00127.36 C \ ATOM 10527 O ILE J 797 1.725 58.707 -54.941 1.00127.75 O \ ATOM 10528 CB ILE J 797 3.548 59.666 -57.634 1.00126.32 C \ ATOM 10529 CG1 ILE J 797 4.983 59.552 -58.166 1.00125.25 C \ ATOM 10530 CG2 ILE J 797 3.388 60.906 -56.764 1.00126.66 C \ ATOM 10531 CD1 ILE J 797 6.030 59.409 -57.097 1.00124.07 C \ ATOM 10532 N GLN J 798 0.728 58.578 -56.938 1.00127.00 N \ ATOM 10533 CA GLN J 798 -0.598 58.738 -56.344 1.00126.90 C \ ATOM 10534 C GLN J 798 -0.882 57.659 -55.295 1.00125.67 C \ ATOM 10535 O GLN J 798 -1.582 57.911 -54.315 1.00125.25 O \ ATOM 10536 CB GLN J 798 -1.696 58.670 -57.416 1.00129.06 C \ ATOM 10537 CG GLN J 798 -1.679 59.778 -58.473 1.00133.19 C \ ATOM 10538 CD GLN J 798 -1.933 61.185 -57.899 1.00135.86 C \ ATOM 10539 OE1 GLN J 798 -2.996 61.464 -57.314 1.00136.65 O \ ATOM 10540 NE2 GLN J 798 -0.953 62.080 -58.073 1.00136.97 N \ ATOM 10541 N LYS J 799 -0.332 56.463 -55.514 1.00124.51 N \ ATOM 10542 CA LYS J 799 -0.541 55.312 -54.633 1.00122.81 C \ ATOM 10543 C LYS J 799 0.422 55.220 -53.460 1.00121.79 C \ ATOM 10544 O LYS J 799 0.139 54.554 -52.465 1.00121.12 O \ ATOM 10545 CB LYS J 799 -0.498 54.026 -55.449 1.00122.17 C \ ATOM 10546 N GLY J 800 1.574 55.857 -53.578 1.00121.22 N \ ATOM 10547 CA GLY J 800 2.493 55.844 -52.460 1.00120.67 C \ ATOM 10548 C GLY J 800 3.750 55.005 -52.477 1.00120.05 C \ ATOM 10549 O GLY J 800 4.348 54.831 -51.424 1.00119.98 O \ ATOM 10550 N TYR J 801 4.168 54.487 -53.629 1.00119.70 N \ ATOM 10551 CA TYR J 801 5.404 53.687 -53.673 1.00119.13 C \ ATOM 10552 C TYR J 801 6.664 54.575 -53.771 1.00119.35 C \ ATOM 10553 O TYR J 801 7.642 54.380 -53.040 1.00119.11 O \ ATOM 10554 CB TYR J 801 5.365 52.695 -54.847 1.00117.39 C \ ATOM 10555 CG TYR J 801 4.433 51.518 -54.639 1.00115.57 C \ ATOM 10556 CD1 TYR J 801 3.163 51.493 -55.211 1.00114.82 C \ ATOM 10557 CD2 TYR J 801 4.828 50.423 -53.878 1.00114.53 C \ ATOM 10558 CE1 TYR J 801 2.313 50.401 -55.034 1.00113.44 C \ ATOM 10559 CE2 TYR J 801 3.987 49.332 -53.696 1.00113.76 C \ ATOM 10560 CZ TYR J 801 2.737 49.325 -54.280 1.00113.22 C \ ATOM 10561 OH TYR J 801 1.937 48.220 -54.140 1.00112.97 O \ ATOM 10562 N LEU J 802 6.619 55.551 -54.675 1.00119.56 N \ ATOM 10563 CA LEU J 802 7.716 56.477 -54.882 1.00119.21 C \ ATOM 10564 C LEU J 802 7.362 57.852 -54.360 1.00120.06 C \ ATOM 10565 O LEU J 802 6.210 58.279 -54.400 1.00119.98 O \ ATOM 10566 CB LEU J 802 8.024 56.632 -56.360 1.00118.12 C \ ATOM 10567 CG LEU J 802 8.303 55.411 -57.209 1.00117.20 C \ ATOM 10568 CD1 LEU J 802 8.521 55.876 -58.627 1.00116.45 C \ ATOM 10569 CD2 LEU J 802 9.509 54.665 -56.671 1.00116.39 C \ ATOM 10570 N GLN J 803 8.394 58.540 -53.897 1.00121.18 N \ ATOM 10571 CA GLN J 803 8.316 59.896 -53.373 1.00121.89 C \ ATOM 10572 C GLN J 803 9.324 60.520 -54.327 1.00122.93 C \ ATOM 10573 O GLN J 803 10.269 59.837 -54.737 1.00122.48 O \ ATOM 10574 CB GLN J 803 8.858 59.908 -51.935 1.00121.56 C \ ATOM 10575 CG GLN J 803 8.506 61.105 -51.050 1.00121.06 C \ ATOM 10576 CD GLN J 803 9.086 60.970 -49.633 1.00120.68 C \ ATOM 10577 OE1 GLN J 803 8.382 61.178 -48.637 1.00120.40 O \ ATOM 10578 NE2 GLN J 803 10.372 60.624 -49.543 1.00119.68 N \ ATOM 10579 N ARG J 804 9.136 61.776 -54.723 1.00124.36 N \ ATOM 10580 CA ARG J 804 10.117 62.379 -55.624 1.00125.97 C \ ATOM 10581 C ARG J 804 11.305 62.841 -54.767 1.00127.56 C \ ATOM 10582 O ARG J 804 11.108 63.413 -53.691 1.00127.89 O \ ATOM 10583 CB ARG J 804 9.514 63.564 -56.402 1.00124.94 C \ ATOM 10584 CG ARG J 804 10.337 63.948 -57.641 1.00124.04 C \ ATOM 10585 CD ARG J 804 9.903 65.269 -58.269 1.00123.67 C \ ATOM 10586 NE ARG J 804 8.674 65.190 -59.060 1.00122.86 N \ ATOM 10587 CZ ARG J 804 8.600 64.671 -60.279 1.00122.52 C \ ATOM 10588 NH1 ARG J 804 9.687 64.173 -60.852 1.00122.85 N \ ATOM 10589 NH2 ARG J 804 7.446 64.677 -60.935 1.00121.91 N \ ATOM 10590 N GLY J 805 12.527 62.563 -55.228 1.00128.81 N \ ATOM 10591 CA GLY J 805 13.719 62.957 -54.494 1.00130.70 C \ ATOM 10592 C GLY J 805 13.875 64.466 -54.488 1.00132.62 C \ ATOM 10593 O GLY J 805 13.583 65.120 -55.491 1.00133.24 O \ ATOM 10594 N ASP J 806 14.340 65.021 -53.368 1.00134.03 N \ ATOM 10595 CA ASP J 806 14.513 66.470 -53.230 1.00135.30 C \ ATOM 10596 C ASP J 806 15.183 67.085 -54.460 1.00136.38 C \ ATOM 10597 O ASP J 806 15.005 68.273 -54.766 1.00136.49 O \ ATOM 10598 CB ASP J 806 15.350 66.778 -51.985 1.00134.93 C \ ATOM 10599 CG ASP J 806 14.801 66.118 -50.735 1.00134.82 C \ ATOM 10600 OD1 ASP J 806 13.560 66.080 -50.566 1.00133.88 O \ ATOM 10601 OD2 ASP J 806 15.619 65.650 -49.914 1.00135.05 O \ ATOM 10602 N ASP J 807 15.931 66.237 -55.161 1.00137.27 N \ ATOM 10603 CA ASP J 807 16.693 66.585 -56.356 1.00137.38 C \ ATOM 10604 C ASP J 807 15.872 66.751 -57.638 1.00136.80 C \ ATOM 10605 O ASP J 807 16.432 66.919 -58.717 1.00136.24 O \ ATOM 10606 CB ASP J 807 17.770 65.521 -56.555 1.00138.70 C \ ATOM 10607 CG ASP J 807 18.055 64.740 -55.271 1.00140.35 C \ ATOM 10608 OD1 ASP J 807 18.031 65.353 -54.171 1.00140.57 O \ ATOM 10609 OD2 ASP J 807 18.308 63.516 -55.365 1.00141.48 O \ ATOM 10610 N GLY J 808 14.549 66.695 -57.508 1.00136.58 N \ ATOM 10611 CA GLY J 808 13.660 66.871 -58.647 1.00136.16 C \ ATOM 10612 C GLY J 808 13.766 65.889 -59.798 1.00135.91 C \ ATOM 10613 O GLY J 808 12.813 65.739 -60.571 1.00135.58 O \ ATOM 10614 N GLU J 809 14.924 65.246 -59.936 1.00135.15 N \ ATOM 10615 CA GLU J 809 15.120 64.271 -60.998 1.00133.97 C \ ATOM 10616 C GLU J 809 15.642 62.951 -60.419 1.00132.63 C \ ATOM 10617 O GLU J 809 16.459 62.245 -61.020 1.00132.45 O \ ATOM 10618 CB GLU J 809 16.040 64.836 -62.102 1.00134.78 C \ ATOM 10619 CG GLU J 809 17.446 65.239 -61.684 1.00135.58 C \ ATOM 10620 CD GLU J 809 18.499 64.215 -62.106 1.00136.25 C \ ATOM 10621 OE1 GLU J 809 19.697 64.415 -61.790 1.00136.03 O \ ATOM 10622 OE2 GLU J 809 18.128 63.209 -62.755 1.00136.28 O \ ATOM 10623 N SER J 810 15.138 62.644 -59.229 1.00130.91 N \ ATOM 10624 CA SER J 810 15.448 61.414 -58.515 1.00129.36 C \ ATOM 10625 C SER J 810 14.153 60.971 -57.814 1.00128.06 C \ ATOM 10626 O SER J 810 13.349 61.804 -57.394 1.00127.66 O \ ATOM 10627 CB SER J 810 16.585 61.636 -57.508 1.00129.20 C \ ATOM 10628 OG SER J 810 16.385 62.822 -56.770 1.00129.57 O \ ATOM 10629 N TYR J 811 13.952 59.659 -57.730 1.00126.29 N \ ATOM 10630 CA TYR J 811 12.773 59.048 -57.113 1.00124.08 C \ ATOM 10631 C TYR J 811 13.289 58.102 -56.008 1.00123.48 C \ ATOM 10632 O TYR J 811 14.460 57.719 -56.027 1.00123.54 O \ ATOM 10633 CB TYR J 811 12.019 58.227 -58.167 1.00122.82 C \ ATOM 10634 CG TYR J 811 11.506 58.969 -59.403 1.00121.45 C \ ATOM 10635 CD1 TYR J 811 10.224 59.528 -59.423 1.00120.93 C \ ATOM 10636 CD2 TYR J 811 12.256 59.015 -60.585 1.00120.46 C \ ATOM 10637 CE1 TYR J 811 9.692 60.103 -60.589 1.00120.05 C \ ATOM 10638 CE2 TYR J 811 11.732 59.588 -61.761 1.00119.84 C \ ATOM 10639 CZ TYR J 811 10.441 60.124 -61.759 1.00119.94 C \ ATOM 10640 OH TYR J 811 9.875 60.621 -62.927 1.00118.36 O \ ATOM 10641 N ALA J 812 12.442 57.715 -55.055 1.00122.54 N \ ATOM 10642 CA ALA J 812 12.903 56.806 -54.001 1.00121.86 C \ ATOM 10643 C ALA J 812 11.841 55.784 -53.558 1.00121.59 C \ ATOM 10644 O ALA J 812 10.643 55.986 -53.769 1.00121.44 O \ ATOM 10645 CB ALA J 812 13.395 57.613 -52.807 1.00121.56 C \ ATOM 10646 N TYR J 813 12.280 54.677 -52.957 1.00121.01 N \ ATOM 10647 CA TYR J 813 11.332 53.662 -52.501 1.00120.36 C \ ATOM 10648 C TYR J 813 10.884 53.911 -51.084 1.00120.96 C \ ATOM 10649 O TYR J 813 11.699 54.173 -50.199 1.00120.81 O \ ATOM 10650 CB TYR J 813 11.912 52.246 -52.558 1.00119.01 C \ ATOM 10651 CG TYR J 813 10.857 51.176 -52.286 1.00117.35 C \ ATOM 10652 CD1 TYR J 813 9.805 50.971 -53.179 1.00116.29 C \ ATOM 10653 CD2 TYR J 813 10.893 50.389 -51.129 1.00116.73 C \ ATOM 10654 CE1 TYR J 813 8.819 50.020 -52.935 1.00115.32 C \ ATOM 10655 CE2 TYR J 813 9.901 49.429 -50.875 1.00115.58 C \ ATOM 10656 CZ TYR J 813 8.868 49.254 -51.790 1.00115.27 C \ ATOM 10657 OH TYR J 813 7.882 48.311 -51.581 1.00114.30 O \ ATOM 10658 N LEU J 814 9.577 53.795 -50.883 1.00121.86 N \ ATOM 10659 CA LEU J 814 8.952 53.997 -49.587 1.00122.70 C \ ATOM 10660 C LEU J 814 8.373 52.696 -49.100 1.00123.79 C \ ATOM 10661 O LEU J 814 7.596 52.068 -49.810 1.00123.99 O \ ATOM 10662 CB LEU J 814 7.814 54.996 -49.705 1.00121.87 C \ ATOM 10663 CG LEU J 814 8.164 56.383 -50.215 1.00121.21 C \ ATOM 10664 CD1 LEU J 814 6.985 56.906 -50.992 1.00121.18 C \ ATOM 10665 CD2 LEU J 814 8.543 57.301 -49.060 1.00120.46 C \ ATOM 10666 N ALA J 815 8.740 52.307 -47.885 1.00125.44 N \ ATOM 10667 CA ALA J 815 8.244 51.079 -47.274 1.00127.28 C \ ATOM 10668 C ALA J 815 6.765 50.873 -47.625 1.00128.62 C \ ATOM 10669 O ALA J 815 6.450 49.929 -48.400 1.00129.27 O \ ATOM 10670 CB ALA J 815 8.409 51.155 -45.749 1.00126.69 C \ ATOM 10671 OXT ALA J 815 5.938 51.671 -47.120 1.00129.57 O \ TER 10672 ALA J 815 \ MASTER 533 0 0 71 24 0 0 610662 10 0 110 \ END \ """, "3o6bchainJ") cmd.hide("all") cmd.color('grey70', "3o6bchainJ") cmd.show('cartoon', "3o6bchainJ") cmd.center("3o6bchainJ", state=0, origin=1) cmd.zoom("3o6bchainJ", animate=-1) cmd.select("e3o6bJ3", "c. J & i. 746-815") cmd.color("red", "e3o6bJ3") cmd.disable("e3o6bJ3")