cmd.read_pdbstr("""\ HEADER MEMBRANE PROTEIN 05-DEC-05 2F93 \ TITLE K INTERMEDIATE STRUCTURE OF SENSORY RHODOPSIN II/TRANSDUCER COMPLEX IN \ TITLE 2 COMBINATION WITH THE GROUND STATE STRUCTURE \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: SENSORY RHODOPSIN II; \ COMPND 3 CHAIN: A; \ COMPND 4 SYNONYM: SR-II; \ COMPND 5 ENGINEERED: YES; \ COMPND 6 MOL_ID: 2; \ COMPND 7 MOLECULE: SENSORY RHODOPSIN II TRANSDUCER; \ COMPND 8 CHAIN: B; \ COMPND 9 SYNONYM: HTR-II, METHYL-ACCEPTING PHOTOTAXIS PROTEIN II, MPP-II; \ COMPND 10 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: NATRONOMONAS PHARAONIS; \ SOURCE 3 ORGANISM_TAXID: 2257; \ SOURCE 4 GENE: SOP2, SOPII; \ SOURCE 5 EXPRESSION_SYSTEM: ESCHERICHIA COLI BL21(DE3); \ SOURCE 6 EXPRESSION_SYSTEM_TAXID: 469008; \ SOURCE 7 EXPRESSION_SYSTEM_STRAIN: BL21(DE3); \ SOURCE 8 EXPRESSION_SYSTEM_VECTOR_TYPE: PLASMID; \ SOURCE 9 EXPRESSION_SYSTEM_PLASMID: PET27BMOD; \ SOURCE 10 MOL_ID: 2; \ SOURCE 11 ORGANISM_SCIENTIFIC: NATRONOMONAS PHARAONIS; \ SOURCE 12 ORGANISM_TAXID: 2257; \ SOURCE 13 GENE: HTR2, HTRII; \ SOURCE 14 EXPRESSION_SYSTEM: ESCHERICHIA COLI BL21(DE3); \ SOURCE 15 EXPRESSION_SYSTEM_TAXID: 469008; \ SOURCE 16 EXPRESSION_SYSTEM_STRAIN: BL21(DE3); \ SOURCE 17 EXPRESSION_SYSTEM_VECTOR_TYPE: PLASMID; \ SOURCE 18 EXPRESSION_SYSTEM_PLASMID: PET27BMOD \ KEYWDS MENBRANE PROTEIN COMPLEX, SIGNAL TRANSDUCTION, PHOTOCYCLE STATE, \ KEYWDS 2 MEMBRANE PROTEIN \ EXPDTA X-RAY DIFFRACTION \ NUMMDL 2 \ AUTHOR R.I.MOUKHAMETZIANOV,J.P.KLARE,R.G.EFREMOV,C.BAECKEN,A.GOEPPNER, \ AUTHOR 2 J.LABAHN,M.ENGELHARD,G.BUELDT,V.I.GORDELIY \ REVDAT 7 20-NOV-24 2F93 1 REMARK \ REVDAT 6 30-AUG-23 2F93 1 HETSYN \ REVDAT 5 29-JUL-20 2F93 1 COMPND REMARK SEQADV HETNAM \ REVDAT 5 2 1 LINK SITE \ REVDAT 4 13-JUL-11 2F93 1 VERSN \ REVDAT 3 24-FEB-09 2F93 1 VERSN \ REVDAT 2 08-JAN-08 2F93 1 JRNL REMARK \ REVDAT 1 07-MAR-06 2F93 0 \ JRNL AUTH R.MOUKHAMETZIANOV,J.P.KLARE,R.EFREMOV,C.BAEKEN,A.GOPPNER, \ JRNL AUTH 2 J.LABAHN,M.ENGELHARD,G.BULDT,V.I.GORDELIY \ JRNL TITL DEVELOPMENT OF THE SIGNAL IN SENSORY RHODOPSIN AND ITS \ JRNL TITL 2 TRANSFER TO THE COGNATE TRANSDUCER. \ JRNL REF NATURE V. 440 115 2006 \ JRNL REFN ISSN 0028-0836 \ JRNL PMID 16452929 \ JRNL DOI 10.1038/NATURE04520 \ REMARK 1 \ REMARK 1 REFERENCE 1 \ REMARK 1 AUTH V.I.GORDELIY,J.LABAHN,R.I.MOUKHAMETZIANOV,R.EFREMOV, \ REMARK 1 AUTH 2 J.GRANZIN,R.SCHLESINGER,G.BUELDT,T.SAVAPOL,A.J.SCHEDIG, \ REMARK 1 AUTH 3 J.P.KLARE,M.ENGELHARD \ REMARK 1 TITL MOLECULAR BASIS OF TRANSMEMBRANE SIGNALLING BY SENSORY \ REMARK 1 TITL 2 RHODOPSIN II - TRANSDUCER COMPLEX \ REMARK 1 REF NATURE V. 419 484 2002 \ REMARK 1 REFN ISSN 0028-0836 \ REMARK 1 PMID 12368857 \ REMARK 1 DOI 10.1038/NATURE01109 \ REMARK 2 \ REMARK 2 RESOLUTION. 2.00 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : CNS 1.1 \ 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) : 2.00 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 34.06 \ REMARK 3 DATA CUTOFF (SIGMA(F)) : 2.000 \ REMARK 3 DATA CUTOFF HIGH (ABS(F)) : 1775916.280 \ REMARK 3 DATA CUTOFF LOW (ABS(F)) : 0.0000 \ REMARK 3 COMPLETENESS (WORKING+TEST) (%) : 92.2 \ REMARK 3 NUMBER OF REFLECTIONS : 20360 \ 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 : 0.245 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 4.800 \ REMARK 3 FREE R VALUE TEST SET COUNT : 985 \ REMARK 3 ESTIMATED ERROR OF FREE R VALUE : 0.008 \ REMARK 3 \ REMARK 3 FIT IN THE HIGHEST RESOLUTION BIN. \ REMARK 3 TOTAL NUMBER OF BINS USED : 10 \ REMARK 3 BIN RESOLUTION RANGE HIGH (A) : 2.00 \ REMARK 3 BIN RESOLUTION RANGE LOW (A) : 2.07 \ REMARK 3 BIN COMPLETENESS (WORKING+TEST) (%) : 93.90 \ REMARK 3 REFLECTIONS IN BIN (WORKING SET) : 1926 \ REMARK 3 BIN R VALUE (WORKING SET) : 0.2340 \ REMARK 3 BIN FREE R VALUE : 0.2390 \ REMARK 3 BIN FREE R VALUE TEST SET SIZE (%) : 4.90 \ REMARK 3 BIN FREE R VALUE TEST SET COUNT : 99 \ REMARK 3 ESTIMATED ERROR OF BIN FREE R VALUE : 0.024 \ REMARK 3 \ REMARK 3 NUMBER OF NON-HYDROGEN ATOMS USED IN REFINEMENT. \ REMARK 3 PROTEIN ATOMS : 2001 \ REMARK 3 NUCLEIC ACID ATOMS : 0 \ REMARK 3 HETEROGEN ATOMS : 40 \ REMARK 3 SOLVENT ATOMS : 35 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : 20.00 \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 26.60 \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : 3.09000 \ REMARK 3 B22 (A**2) : 2.82000 \ REMARK 3 B33 (A**2) : -5.91000 \ REMARK 3 B12 (A**2) : 0.00000 \ REMARK 3 B13 (A**2) : 0.00000 \ REMARK 3 B23 (A**2) : 0.00000 \ REMARK 3 \ REMARK 3 ESTIMATED COORDINATE ERROR. \ REMARK 3 ESD FROM LUZZATI PLOT (A) : 0.22 \ REMARK 3 ESD FROM SIGMAA (A) : 0.08 \ REMARK 3 LOW RESOLUTION CUTOFF (A) : 5.00 \ REMARK 3 \ REMARK 3 CROSS-VALIDATED ESTIMATED COORDINATE ERROR. \ REMARK 3 ESD FROM C-V LUZZATI PLOT (A) : 0.25 \ REMARK 3 ESD FROM C-V SIGMAA (A) : 0.16 \ REMARK 3 \ REMARK 3 RMS DEVIATIONS FROM IDEAL VALUES. \ REMARK 3 BOND LENGTHS (A) : 0.009 \ REMARK 3 BOND ANGLES (DEGREES) : 1.200 \ REMARK 3 DIHEDRAL ANGLES (DEGREES) : 16.80 \ REMARK 3 IMPROPER ANGLES (DEGREES) : 0.930 \ 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) : 1.350 ; 1.500 \ REMARK 3 MAIN-CHAIN ANGLE (A**2) : 2.030 ; 2.000 \ REMARK 3 SIDE-CHAIN BOND (A**2) : 2.580 ; 2.000 \ REMARK 3 SIDE-CHAIN ANGLE (A**2) : 3.620 ; 2.500 \ REMARK 3 \ REMARK 3 BULK SOLVENT MODELING. \ REMARK 3 METHOD USED : FLAT MODEL \ REMARK 3 KSOL : 0.45 \ REMARK 3 BSOL : 94.10 \ 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 : PROTEIN_REP.PARAM \ REMARK 3 PARAMETER FILE 2 : BOG.PAR \ REMARK 3 PARAMETER FILE 3 : RETINAL.PAR \ REMARK 3 PARAMETER FILE 4 : WATER_REP.PARAM \ REMARK 3 PARAMETER FILE 5 : NULL \ REMARK 3 TOPOLOGY FILE 1 : PROTEIN.TOP \ REMARK 3 TOPOLOGY FILE 2 : BOG.TOP \ REMARK 3 TOPOLOGY FILE 3 : RETINAL.TOP \ REMARK 3 TOPOLOGY FILE 4 : NULL \ REMARK 3 TOPOLOGY FILE 5 : NULL \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: MODEL USED FOR REFINEMENT CONSISTS \ REMARK 3 OF GROUND STATE COMPLEX (ALTERNATIVE CONFORMATION INDICATOR A AT \ REMARK 3 POSITION 17) \ REMARK 3 AND K STATE COMPLEX (ALTERNATIVE CONFORMATION INDICATOR B AT \ REMARK 3 POSITION 17) \ REMARK 3 WITH CORRESPONDING OCCUPANCIES. GROUND STATE MODEL WAS FIRST \ REMARK 3 REFINED AGAINST THE GROUND STATE DATA AND THEN THE K STATE \ REMARK 3 MODEL WAS REFINED WITH GROUND STATE MODEL FIXED AGAINST THE \ REMARK 3 ILLUMINATED CRYSTAL DATA \ REMARK 4 \ REMARK 4 2F93 COMPLIES WITH FORMAT V. 3.15, 01-DEC-08 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 28-DEC-05. \ REMARK 100 THE DEPOSITION ID IS D_1000035604. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 20-SEP-04 \ REMARK 200 TEMPERATURE (KELVIN) : 100 \ REMARK 200 PH : 5.8 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : ESRF \ REMARK 200 BEAMLINE : ID14-1 \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 0.934 \ REMARK 200 MONOCHROMATOR : DIAMOND \ REMARK 200 OPTICS : NULL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : CCD \ REMARK 200 DETECTOR MANUFACTURER : ADSC QUANTUM 4 \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : MOSFLM \ REMARK 200 DATA SCALING SOFTWARE : CCP4 (SCALA) \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 21010 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 2.000 \ REMARK 200 RESOLUTION RANGE LOW (A) : 34.060 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : 1.800 \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 95.4 \ REMARK 200 DATA REDUNDANCY : 3.800 \ REMARK 200 R MERGE (I) : 0.09100 \ 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) : 2.00 \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : 2.05 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 98.7 \ REMARK 200 DATA REDUNDANCY IN SHELL : 3.80 \ REMARK 200 R MERGE FOR SHELL (I) : 0.49400 \ 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: CNS \ REMARK 200 STARTING MODEL: PDB ENTRY: 1H2S \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 38.90 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 2.01 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: 150 MM NACL, 25 MM NAKPI 5.1 0.8% B \ REMARK 280 -OCTYLGLUCOSID , MONOVACCENIN (CUBIC PHASE) PRECIPITATED BY 1 M \ REMARK 280 NA/KPI 5.8 , IN CUBIC LIPIDIC PHASE, TEMPERATURE 295K, PH 5.8 \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P 21 21 2 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -X,-Y,Z \ REMARK 290 3555 -X+1/2,Y+1/2,-Z \ REMARK 290 4555 X+1/2,-Y+1/2,-Z \ REMARK 290 \ REMARK 290 WHERE NNN -> OPERATOR NUMBER \ REMARK 290 MMM -> TRANSLATION VECTOR \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY TRANSFORMATIONS \ REMARK 290 THE FOLLOWING TRANSFORMATIONS OPERATE ON THE ATOM/HETATM \ REMARK 290 RECORDS IN THIS ENTRY TO PRODUCE CRYSTALLOGRAPHICALLY \ REMARK 290 RELATED MOLECULES. \ REMARK 290 SMTRY1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 2 -1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 2 0.000000 -1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 3 -1.000000 0.000000 0.000000 62.17000 \ REMARK 290 SMTRY2 3 0.000000 1.000000 0.000000 23.51500 \ REMARK 290 SMTRY3 3 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 SMTRY1 4 1.000000 0.000000 0.000000 62.17000 \ REMARK 290 SMTRY2 4 0.000000 -1.000000 0.000000 23.51500 \ REMARK 290 SMTRY3 4 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 \ REMARK 290 REMARK: NULL \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1 \ REMARK 300 SEE REMARK 350 FOR THE AUTHOR PROVIDED AND/OR PROGRAM \ REMARK 300 GENERATED ASSEMBLY INFORMATION FOR THE STRUCTURE IN \ REMARK 300 THIS ENTRY. THE REMARK MAY ALSO PROVIDE INFORMATION ON \ REMARK 300 BURIED SURFACE AREA. \ REMARK 300 REMARK: FUNCTIONAL K STATE IS THOUGHT TO CONSIST OF ONE GROUND \ REMARK 300 STATE COMPLEX OF SENSORY RHOODPSIN II/TRANSDUCER AND ONE K STATE \ REMARK 300 COMPLEX WHICH IS TO BE GENERATED BY APPLYING THE TWO FOLD OPERATOR \ REMARK 300 TO THE K STATE: 1-X, -Y, Z \ 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: TETRAMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: TETRAMERIC \ REMARK 350 SOFTWARE USED: PISA,PQS \ REMARK 350 TOTAL BURIED SURFACE AREA: 7490 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 22080 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -49.0 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 BIOMT1 2 -1.000000 0.000000 0.000000 124.34000 \ REMARK 350 BIOMT2 2 0.000000 -1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 2 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 1 VAL A 2 \ REMARK 465 1 HIS A 223 \ REMARK 465 1 GLY A 224 \ REMARK 465 1 GLU A 225 \ REMARK 465 1 SER A 226 \ REMARK 465 1 LEU A 227 \ REMARK 465 1 ALA A 228 \ REMARK 465 1 GLY A 229 \ REMARK 465 1 VAL A 230 \ REMARK 465 1 ASP A 231 \ REMARK 465 1 THR A 232 \ REMARK 465 1 ASP A 233 \ REMARK 465 1 ALA A 234 \ REMARK 465 1 PRO A 235 \ REMARK 465 1 ALA A 236 \ REMARK 465 1 VAL A 237 \ REMARK 465 1 ALA A 238 \ REMARK 465 1 ASP A 239 \ REMARK 465 1 GLU A 240 \ REMARK 465 1 ASN A 241 \ REMARK 465 1 SER A 242 \ REMARK 465 1 HIS A 243 \ REMARK 465 1 HIS A 244 \ REMARK 465 1 HIS A 245 \ REMARK 465 1 HIS A 246 \ REMARK 465 1 HIS A 247 \ REMARK 465 1 HIS A 248 \ REMARK 465 1 HIS A 249 \ REMARK 465 1 ALA B 2 \ REMARK 465 1 LEU B 3 \ REMARK 465 1 ASN B 4 \ REMARK 465 1 VAL B 5 \ REMARK 465 1 SER B 6 \ REMARK 465 1 ARG B 7 \ REMARK 465 1 LEU B 8 \ REMARK 465 1 LEU B 9 \ REMARK 465 1 LEU B 10 \ REMARK 465 1 PRO B 11 \ REMARK 465 1 SER B 12 \ REMARK 465 1 ARG B 13 \ REMARK 465 1 VAL B 14 \ REMARK 465 1 ARG B 15 \ REMARK 465 1 HIS B 16 \ REMARK 465 1 SER B 17 \ REMARK 465 1 TYR B 18 \ REMARK 465 1 THR B 19 \ REMARK 465 1 GLY B 20 \ REMARK 465 1 LYS B 21 \ REMARK 465 1 MET B 22 \ REMARK 465 1 GLY B 23 \ REMARK 465 1 ALA B 24 \ REMARK 465 1 VAL B 25 \ REMARK 465 1 PHE B 26 \ REMARK 465 1 ILE B 27 \ REMARK 465 1 PHE B 28 \ REMARK 465 1 ALA B 80 \ REMARK 465 1 THR B 81 \ REMARK 465 1 LEU B 82 \ REMARK 465 1 GLY B 83 \ REMARK 465 1 GLY B 84 \ REMARK 465 1 ASP B 85 \ REMARK 465 1 THR B 86 \ REMARK 465 1 ALA B 87 \ REMARK 465 1 ALA B 88 \ REMARK 465 1 SER B 89 \ REMARK 465 1 LEU B 90 \ REMARK 465 1 SER B 91 \ REMARK 465 1 THR B 92 \ REMARK 465 1 LEU B 93 \ REMARK 465 1 ALA B 94 \ REMARK 465 1 ALA B 95 \ REMARK 465 1 LYS B 96 \ REMARK 465 1 ALA B 97 \ REMARK 465 1 SER B 98 \ REMARK 465 1 ARG B 99 \ REMARK 465 1 MET B 100 \ REMARK 465 1 GLY B 101 \ REMARK 465 1 ASP B 102 \ REMARK 465 1 GLY B 103 \ REMARK 465 1 ASP B 104 \ REMARK 465 1 LEU B 105 \ REMARK 465 1 ASP B 106 \ REMARK 465 1 VAL B 107 \ REMARK 465 1 GLU B 108 \ REMARK 465 1 LEU B 109 \ REMARK 465 1 GLU B 110 \ REMARK 465 1 THR B 111 \ REMARK 465 1 ARG B 112 \ REMARK 465 1 ARG B 113 \ REMARK 465 1 GLU B 114 \ REMARK 465 1 ASN B 115 \ REMARK 465 1 SER B 116 \ REMARK 465 1 HIS B 117 \ REMARK 465 1 HIS B 118 \ REMARK 465 1 HIS B 119 \ REMARK 465 1 HIS B 120 \ REMARK 465 1 HIS B 121 \ REMARK 465 1 HIS B 122 \ REMARK 465 1 HIS B 123 \ REMARK 465 2 VAL A 2 \ REMARK 465 2 HIS A 223 \ REMARK 465 2 GLY A 224 \ REMARK 465 2 GLU A 225 \ REMARK 465 2 SER A 226 \ REMARK 465 2 LEU A 227 \ REMARK 465 2 ALA A 228 \ REMARK 465 2 GLY A 229 \ REMARK 465 2 VAL A 230 \ REMARK 465 2 ASP A 231 \ REMARK 465 2 THR A 232 \ REMARK 465 2 ASP A 233 \ REMARK 465 2 ALA A 234 \ REMARK 465 2 PRO A 235 \ REMARK 465 2 ALA A 236 \ REMARK 465 2 VAL A 237 \ REMARK 465 2 ALA A 238 \ REMARK 465 2 ASP A 239 \ REMARK 465 2 GLU A 240 \ REMARK 465 2 ASN A 241 \ REMARK 465 2 SER A 242 \ REMARK 465 2 HIS A 243 \ REMARK 465 2 HIS A 244 \ REMARK 465 2 HIS A 245 \ REMARK 465 2 HIS A 246 \ REMARK 465 2 HIS A 247 \ REMARK 465 2 HIS A 248 \ REMARK 465 2 HIS A 249 \ REMARK 465 2 ALA B 2 \ REMARK 465 2 LEU B 3 \ REMARK 465 2 ASN B 4 \ REMARK 465 2 VAL B 5 \ REMARK 465 2 SER B 6 \ REMARK 465 2 ARG B 7 \ REMARK 465 2 LEU B 8 \ REMARK 465 2 LEU B 9 \ REMARK 465 2 LEU B 10 \ REMARK 465 2 PRO B 11 \ REMARK 465 2 SER B 12 \ REMARK 465 2 ARG B 13 \ REMARK 465 2 VAL B 14 \ REMARK 465 2 ARG B 15 \ REMARK 465 2 HIS B 16 \ REMARK 465 2 SER B 17 \ REMARK 465 2 TYR B 18 \ REMARK 465 2 THR B 19 \ REMARK 465 2 GLY B 20 \ REMARK 465 2 LYS B 21 \ REMARK 465 2 MET B 22 \ REMARK 465 2 GLY B 23 \ REMARK 465 2 ALA B 24 \ REMARK 465 2 VAL B 25 \ REMARK 465 2 PHE B 26 \ REMARK 465 2 ILE B 27 \ REMARK 465 2 PHE B 28 \ REMARK 465 2 ALA B 80 \ REMARK 465 2 THR B 81 \ REMARK 465 2 LEU B 82 \ REMARK 465 2 GLY B 83 \ REMARK 465 2 GLY B 84 \ REMARK 465 2 ASP B 85 \ REMARK 465 2 THR B 86 \ REMARK 465 2 ALA B 87 \ REMARK 465 2 ALA B 88 \ REMARK 465 2 SER B 89 \ REMARK 465 2 LEU B 90 \ REMARK 465 2 SER B 91 \ REMARK 465 2 THR B 92 \ REMARK 465 2 LEU B 93 \ REMARK 465 2 ALA B 94 \ REMARK 465 2 ALA B 95 \ REMARK 465 2 LYS B 96 \ REMARK 465 2 ALA B 97 \ REMARK 465 2 SER B 98 \ REMARK 465 2 ARG B 99 \ REMARK 465 2 MET B 100 \ REMARK 465 2 GLY B 101 \ REMARK 465 2 ASP B 102 \ REMARK 465 2 GLY B 103 \ REMARK 465 2 ASP B 104 \ REMARK 465 2 LEU B 105 \ REMARK 465 2 ASP B 106 \ REMARK 465 2 VAL B 107 \ REMARK 465 2 GLU B 108 \ REMARK 465 2 LEU B 109 \ REMARK 465 2 GLU B 110 \ REMARK 465 2 THR B 111 \ REMARK 465 2 ARG B 112 \ REMARK 465 2 ARG B 113 \ REMARK 465 2 GLU B 114 \ REMARK 465 2 ASN B 115 \ REMARK 465 2 SER B 116 \ REMARK 465 2 HIS B 117 \ REMARK 465 2 HIS B 118 \ REMARK 465 2 HIS B 119 \ REMARK 465 2 HIS B 120 \ REMARK 465 2 HIS B 121 \ REMARK 465 2 HIS B 122 \ REMARK 465 2 HIS B 123 \ 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 2 ASN B 74 C LEU B 75 N 0.240 \ 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 2 TRP A 24 CB - CA - C ANGL. DEV. = 13.3 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 2 GLU A 65 -1.72 75.05 \ REMARK 500 2 LYS A 205 -60.83 -106.31 \ REMARK 500 2 ALA B 49 19.45 -69.83 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: MAIN CHAIN PLANARITY \ REMARK 500 \ REMARK 500 THE FOLLOWING RESIDUES HAVE A PSEUDO PLANARITY \ REMARK 500 TORSION ANGLE, C(I) - CA(I) - N(I+1) - O(I), GREATER \ REMARK 500 10.0 DEGREES. (M=MODEL NUMBER; RES=RESIDUE NAME; \ REMARK 500 C=CHAIN IDENTIFIER; SSEQ=SEQUENCE NUMBER; \ REMARK 500 I=INSERTION CODE). \ REMARK 500 \ REMARK 500 M RES CSSEQI ANGLE \ REMARK 500 2 ASN B 74 11.90 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 1H2S RELATED DB: PDB \ REMARK 900 GROUND STATE STRUCTURE OF SENSORY RHODOPSIN II AND ITS TRANSDUCER \ DBREF 2F93 A 2 239 UNP P42196 BACS2_NATPH 2 239 \ DBREF 2F93 B 3 114 UNP P42259 HTR2_NATPH 3 114 \ SEQADV 2F93 GLU A 240 UNP P42196 CLONING ARTIFACT \ SEQADV 2F93 ASN A 241 UNP P42196 CLONING ARTIFACT \ SEQADV 2F93 SER A 242 UNP P42196 CLONING ARTIFACT \ SEQADV 2F93 HIS A 243 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 HIS A 244 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 HIS A 245 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 HIS A 246 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 HIS A 247 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 HIS A 248 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 HIS A 249 UNP P42196 EXPRESSION TAG \ SEQADV 2F93 ALA B 2 UNP P42259 CLONING ARTIFACT \ SEQADV 2F93 ASN B 115 UNP P42259 CLONING ARTIFACT \ SEQADV 2F93 SER B 116 UNP P42259 CLONING ARTIFACT \ SEQADV 2F93 HIS B 117 UNP P42259 EXPRESSION TAG \ SEQADV 2F93 HIS B 118 UNP P42259 EXPRESSION TAG \ SEQADV 2F93 HIS B 119 UNP P42259 EXPRESSION TAG \ SEQADV 2F93 HIS B 120 UNP P42259 EXPRESSION TAG \ SEQADV 2F93 HIS B 121 UNP P42259 EXPRESSION TAG \ SEQADV 2F93 HIS B 122 UNP P42259 EXPRESSION TAG \ SEQADV 2F93 HIS B 123 UNP P42259 EXPRESSION TAG \ SEQRES 1 A 248 VAL GLY LEU THR THR LEU PHE TRP LEU GLY ALA ILE GLY \ SEQRES 2 A 248 MET LEU VAL GLY THR LEU ALA PHE ALA TRP ALA GLY ARG \ SEQRES 3 A 248 ASP ALA GLY SER GLY GLU ARG ARG TYR TYR VAL THR LEU \ SEQRES 4 A 248 VAL GLY ILE SER GLY ILE ALA ALA VAL ALA TYR VAL VAL \ SEQRES 5 A 248 MET ALA LEU GLY VAL GLY TRP VAL PRO VAL ALA GLU ARG \ SEQRES 6 A 248 THR VAL PHE ALA PRO ARG TYR ILE ASP TRP ILE LEU THR \ SEQRES 7 A 248 THR PRO LEU ILE VAL TYR PHE LEU GLY LEU LEU ALA GLY \ SEQRES 8 A 248 LEU ASP SER ARG GLU PHE GLY ILE VAL ILE THR LEU ASN \ SEQRES 9 A 248 THR VAL VAL MET LEU ALA GLY PHE ALA GLY ALA MET VAL \ SEQRES 10 A 248 PRO GLY ILE GLU ARG TYR ALA LEU PHE GLY MET GLY ALA \ SEQRES 11 A 248 VAL ALA PHE LEU GLY LEU VAL TYR TYR LEU VAL GLY PRO \ SEQRES 12 A 248 MET THR GLU SER ALA SER GLN ARG SER SER GLY ILE LYS \ SEQRES 13 A 248 SER LEU TYR VAL ARG LEU ARG ASN LEU THR VAL ILE LEU \ SEQRES 14 A 248 TRP ALA ILE TYR PRO PHE ILE TRP LEU LEU GLY PRO PRO \ SEQRES 15 A 248 GLY VAL ALA LEU LEU THR PRO THR VAL ASP VAL ALA LEU \ SEQRES 16 A 248 ILE VAL TYR LEU ASP LEU VAL THR LYS VAL GLY PHE GLY \ SEQRES 17 A 248 PHE ILE ALA LEU ASP ALA ALA ALA THR LEU ARG ALA GLU \ SEQRES 18 A 248 HIS GLY GLU SER LEU ALA GLY VAL ASP THR ASP ALA PRO \ SEQRES 19 A 248 ALA VAL ALA ASP GLU ASN SER HIS HIS HIS HIS HIS HIS \ SEQRES 20 A 248 HIS \ SEQRES 1 B 122 ALA LEU ASN VAL SER ARG LEU LEU LEU PRO SER ARG VAL \ SEQRES 2 B 122 ARG HIS SER TYR THR GLY LYS MET GLY ALA VAL PHE ILE \ SEQRES 3 B 122 PHE VAL GLY ALA LEU THR VAL LEU PHE GLY ALA ILE ALA \ SEQRES 4 B 122 TYR GLY GLU VAL THR ALA ALA ALA ALA THR GLY ASP ALA \ SEQRES 5 B 122 ALA ALA VAL GLN GLU ALA ALA VAL SER ALA ILE LEU GLY \ SEQRES 6 B 122 LEU ILE ILE LEU LEU GLY ILE ASN LEU GLY LEU VAL ALA \ SEQRES 7 B 122 ALA THR LEU GLY GLY ASP THR ALA ALA SER LEU SER THR \ SEQRES 8 B 122 LEU ALA ALA LYS ALA SER ARG MET GLY ASP GLY ASP LEU \ SEQRES 9 B 122 ASP VAL GLU LEU GLU THR ARG ARG GLU ASN SER HIS HIS \ SEQRES 10 B 122 HIS HIS HIS HIS HIS \ HET BOG A 300 20 \ HET RET A 301 20 \ HETNAM BOG OCTYL BETA-D-GLUCOPYRANOSIDE \ HETNAM RET RETINAL \ HETSYN BOG BETA-OCTYLGLUCOSIDE; OCTYL BETA-D-GLUCOSIDE; OCTYL D- \ HETSYN 2 BOG GLUCOSIDE; OCTYL GLUCOSIDE \ FORMUL 3 BOG C14 H28 O6 \ FORMUL 4 RET C20 H28 O \ FORMUL 5 HOH *35(H2 O) \ HELIX 1 1 GLY A 3 GLY A 26 1 24 \ HELIX 2 2 GLU A 33 LEU A 56 1 24 \ HELIX 3 3 ALA A 70 GLY A 92 1 23 \ HELIX 4 4 ASP A 94 MET A 117 1 24 \ HELIX 5 5 ILE A 121 GLY A 143 1 23 \ HELIX 6 6 GLY A 143 SER A 150 1 8 \ HELIX 7 7 SER A 153 ALA A 172 1 20 \ HELIX 8 8 ILE A 173 GLY A 181 1 9 \ HELIX 9 9 THR A 189 GLU A 222 1 34 \ HELIX 10 10 VAL B 29 ALA B 49 1 21 \ HELIX 11 11 ASP B 52 ALA B 79 1 28 \ SHEET 1 A 2 TRP A 60 VAL A 63 0 \ SHEET 2 A 2 ARG A 66 PHE A 69 -1 O VAL A 68 N VAL A 61 \ LINK NZ ALYS A 205 C15ARET A 301 1555 1555 1.48 \ CRYST1 124.340 47.030 53.820 90.00 90.00 90.00 P 21 21 2 4 \ 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 0.008042 0.000000 0.000000 0.00000 \ SCALE2 0.000000 0.021263 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.018580 0.00000 \ MODEL 1 \ TER 1665 GLU A 222 \ ATOM 1666 N AVAL B 29 63.016 8.500 34.274 0.60 42.95 N \ ATOM 1667 CA AVAL B 29 63.224 7.404 33.337 0.60 42.82 C \ ATOM 1668 C AVAL B 29 62.127 7.386 32.280 0.60 41.40 C \ ATOM 1669 O AVAL B 29 62.386 7.110 31.110 0.60 40.59 O \ ATOM 1670 CB AVAL B 29 63.239 6.037 34.065 0.60 43.55 C \ ATOM 1671 CG1AVAL B 29 64.337 6.018 35.111 0.60 44.67 C \ ATOM 1672 CG2AVAL B 29 61.890 5.768 34.708 0.60 44.41 C \ ATOM 1673 N AGLY B 30 60.902 7.693 32.697 0.60 39.97 N \ ATOM 1674 CA AGLY B 30 59.785 7.705 31.771 0.60 39.15 C \ ATOM 1675 C AGLY B 30 59.904 8.750 30.678 0.60 39.22 C \ ATOM 1676 O AGLY B 30 59.736 8.445 29.496 0.60 39.70 O \ ATOM 1677 N AALA B 31 60.191 9.987 31.065 0.60 38.24 N \ ATOM 1678 CA AALA B 31 60.323 11.072 30.099 0.60 37.98 C \ ATOM 1679 C AALA B 31 61.469 10.810 29.125 0.60 37.40 C \ ATOM 1680 O AALA B 31 61.329 11.018 27.918 0.60 37.31 O \ ATOM 1681 CB AALA B 31 60.547 12.394 30.826 0.60 39.46 C \ ATOM 1682 N ALEU B 32 62.600 10.356 29.656 0.60 36.65 N \ ATOM 1683 CA ALEU B 32 63.771 10.067 28.833 0.60 36.72 C \ ATOM 1684 C ALEU B 32 63.484 8.987 27.796 0.60 35.15 C \ ATOM 1685 O ALEU B 32 63.902 9.095 26.642 0.60 34.92 O \ ATOM 1686 CB ALEU B 32 64.942 9.622 29.711 0.60 38.15 C \ ATOM 1687 CG ALEU B 32 65.614 10.679 30.585 0.60 40.72 C \ ATOM 1688 CD1ALEU B 32 66.669 10.008 31.444 0.60 41.50 C \ ATOM 1689 CD2ALEU B 32 66.241 11.765 29.712 0.60 40.24 C \ ATOM 1690 N ATHR B 33 62.772 7.944 28.209 0.60 34.44 N \ ATOM 1691 CA ATHR B 33 62.441 6.857 27.297 0.60 33.58 C \ ATOM 1692 C ATHR B 33 61.639 7.390 26.118 0.60 33.04 C \ ATOM 1693 O ATHR B 33 61.834 6.962 24.978 0.60 32.75 O \ ATOM 1694 CB ATHR B 33 61.635 5.763 28.009 0.60 33.99 C \ ATOM 1695 OG1ATHR B 33 62.402 5.254 29.107 0.60 33.94 O \ ATOM 1696 CG2ATHR B 33 61.311 4.623 27.047 0.60 34.08 C \ ATOM 1697 N AVAL B 34 60.743 8.335 26.390 0.60 33.48 N \ ATOM 1698 CA AVAL B 34 59.935 8.923 25.331 0.60 32.37 C \ ATOM 1699 C AVAL B 34 60.823 9.799 24.460 0.60 31.95 C \ ATOM 1700 O AVAL B 34 60.652 9.861 23.245 0.60 31.65 O \ ATOM 1701 CB AVAL B 34 58.782 9.777 25.900 0.60 34.36 C \ ATOM 1702 CG1AVAL B 34 58.022 10.440 24.760 0.60 32.57 C \ ATOM 1703 CG2AVAL B 34 57.840 8.897 26.719 0.60 33.68 C \ ATOM 1704 N ALEU B 35 61.776 10.475 25.090 0.60 31.62 N \ ATOM 1705 CA ALEU B 35 62.703 11.330 24.362 0.60 31.66 C \ ATOM 1706 C ALEU B 35 63.554 10.467 23.434 0.60 28.71 C \ ATOM 1707 O ALEU B 35 63.744 10.794 22.264 0.60 28.50 O \ ATOM 1708 CB ALEU B 35 63.606 12.086 25.338 0.60 32.62 C \ ATOM 1709 CG ALEU B 35 64.718 12.924 24.696 0.60 35.14 C \ ATOM 1710 CD1ALEU B 35 64.118 13.918 23.703 0.60 35.93 C \ ATOM 1711 CD2ALEU B 35 65.497 13.648 25.785 0.60 35.83 C \ ATOM 1712 N APHE B 36 64.064 9.363 23.969 0.60 28.89 N \ ATOM 1713 CA APHE B 36 64.883 8.447 23.183 0.60 28.39 C \ ATOM 1714 C APHE B 36 64.040 7.896 22.042 0.60 28.82 C \ ATOM 1715 O APHE B 36 64.503 7.782 20.907 0.60 28.15 O \ ATOM 1716 CB APHE B 36 65.378 7.288 24.049 0.60 30.88 C \ ATOM 1717 CG APHE B 36 66.370 6.401 23.354 0.60 32.62 C \ ATOM 1718 CD1APHE B 36 67.703 6.786 23.235 0.60 34.03 C \ ATOM 1719 CD2APHE B 36 65.969 5.196 22.790 0.60 32.86 C \ ATOM 1720 CE1APHE B 36 68.621 5.980 22.561 0.60 34.20 C \ ATOM 1721 CE2APHE B 36 66.877 4.382 22.114 0.60 33.86 C \ ATOM 1722 CZ APHE B 36 68.207 4.777 22.000 0.60 34.37 C \ ATOM 1723 N AGLY B 37 62.793 7.559 22.356 0.60 28.01 N \ ATOM 1724 CA AGLY B 37 61.895 7.027 21.349 0.60 26.74 C \ ATOM 1725 C AGLY B 37 61.679 8.009 20.217 0.60 26.61 C \ ATOM 1726 O AGLY B 37 61.664 7.625 19.049 0.60 27.48 O \ ATOM 1727 N AALA B 38 61.514 9.283 20.556 0.60 26.97 N \ ATOM 1728 CA AALA B 38 61.299 10.304 19.538 0.60 27.61 C \ ATOM 1729 C AALA B 38 62.519 10.394 18.625 0.60 27.61 C \ ATOM 1730 O AALA B 38 62.387 10.509 17.408 0.60 26.46 O \ ATOM 1731 CB AALA B 38 61.030 11.653 20.197 0.60 27.08 C \ ATOM 1732 N AILE B 39 63.708 10.341 19.220 0.60 29.12 N \ ATOM 1733 CA AILE B 39 64.949 10.408 18.453 0.60 29.15 C \ ATOM 1734 C AILE B 39 65.041 9.207 17.513 0.60 29.18 C \ ATOM 1735 O AILE B 39 65.356 9.354 16.329 0.60 28.84 O \ ATOM 1736 CB AILE B 39 66.179 10.437 19.400 0.60 30.74 C \ ATOM 1737 CG1AILE B 39 66.205 11.765 20.166 0.60 30.84 C \ ATOM 1738 CG2AILE B 39 67.466 10.264 18.604 0.60 32.22 C \ ATOM 1739 CD1AILE B 39 67.139 11.774 21.356 0.60 31.27 C \ ATOM 1740 N AALA B 40 64.754 8.023 18.045 0.60 29.09 N \ ATOM 1741 CA AALA B 40 64.785 6.795 17.258 0.60 30.90 C \ ATOM 1742 C AALA B 40 63.761 6.869 16.127 0.60 31.25 C \ ATOM 1743 O AALA B 40 64.046 6.484 14.993 0.60 32.97 O \ ATOM 1744 CB AALA B 40 64.491 5.597 18.152 0.60 29.31 C \ ATOM 1745 N ATYR B 41 62.566 7.359 16.441 0.60 32.42 N \ ATOM 1746 CA ATYR B 41 61.516 7.496 15.438 0.60 33.55 C \ ATOM 1747 C ATYR B 41 61.995 8.442 14.340 0.60 32.55 C \ ATOM 1748 O ATYR B 41 61.767 8.206 13.152 0.60 31.99 O \ ATOM 1749 CB ATYR B 41 60.239 8.048 16.079 0.60 37.41 C \ ATOM 1750 CG ATYR B 41 59.128 8.347 15.092 0.60 41.14 C \ ATOM 1751 CD1ATYR B 41 58.559 7.333 14.322 0.60 44.22 C \ ATOM 1752 CD2ATYR B 41 58.645 9.646 14.930 0.60 44.02 C \ ATOM 1753 CE1ATYR B 41 57.533 7.604 13.413 0.60 45.54 C \ ATOM 1754 CE2ATYR B 41 57.620 9.928 14.023 0.60 46.14 C \ ATOM 1755 CZ ATYR B 41 57.071 8.901 13.269 0.60 47.08 C \ ATOM 1756 OH ATYR B 41 56.061 9.169 12.373 0.60 50.43 O \ ATOM 1757 N AGLY B 42 62.666 9.514 14.750 0.60 31.55 N \ ATOM 1758 CA AGLY B 42 63.177 10.478 13.792 0.60 31.13 C \ ATOM 1759 C AGLY B 42 64.085 9.825 12.769 0.60 31.74 C \ ATOM 1760 O AGLY B 42 64.040 10.169 11.589 0.60 31.45 O \ ATOM 1761 N AGLU B 43 64.908 8.878 13.216 0.60 30.85 N \ ATOM 1762 CA AGLU B 43 65.823 8.180 12.315 0.60 30.95 C \ ATOM 1763 C AGLU B 43 65.078 7.256 11.368 0.60 28.55 C \ ATOM 1764 O AGLU B 43 65.375 7.200 10.175 0.60 28.02 O \ ATOM 1765 CB AGLU B 43 66.842 7.340 13.092 0.60 31.92 C \ ATOM 1766 CG AGLU B 43 67.863 8.114 13.902 0.60 36.98 C \ ATOM 1767 CD AGLU B 43 69.167 7.337 14.046 0.60 39.24 C \ ATOM 1768 OE1AGLU B 43 70.020 7.434 13.139 0.60 41.62 O \ ATOM 1769 OE2AGLU B 43 69.330 6.615 15.050 0.60 41.06 O \ ATOM 1770 N AVAL B 44 64.127 6.505 11.912 0.60 28.37 N \ ATOM 1771 CA AVAL B 44 63.335 5.583 11.107 0.60 28.35 C \ ATOM 1772 C AVAL B 44 62.603 6.348 10.006 0.60 29.72 C \ ATOM 1773 O AVAL B 44 62.572 5.918 8.853 0.60 29.90 O \ ATOM 1774 CB AVAL B 44 62.292 4.840 11.977 0.60 28.31 C \ ATOM 1775 CG1AVAL B 44 61.331 4.060 11.090 0.60 26.39 C \ ATOM 1776 CG2AVAL B 44 63.001 3.899 12.950 0.60 27.18 C \ ATOM 1777 N ATHR B 45 62.017 7.483 10.372 0.60 31.57 N \ ATOM 1778 CA ATHR B 45 61.272 8.297 9.416 0.60 35.07 C \ ATOM 1779 C ATHR B 45 62.178 8.880 8.339 0.60 35.38 C \ ATOM 1780 O ATHR B 45 61.808 8.921 7.168 0.60 35.79 O \ ATOM 1781 CB ATHR B 45 60.527 9.441 10.128 0.60 35.17 C \ ATOM 1782 OG1ATHR B 45 59.606 8.886 11.072 0.60 38.46 O \ ATOM 1783 CG2ATHR B 45 59.758 10.287 9.127 0.60 38.93 C \ ATOM 1784 N AALA B 46 63.364 9.330 8.735 0.60 36.24 N \ ATOM 1785 CA AALA B 46 64.313 9.892 7.781 0.60 36.50 C \ ATOM 1786 C AALA B 46 64.743 8.797 6.810 0.60 37.21 C \ ATOM 1787 O AALA B 46 64.853 9.025 5.604 0.60 37.68 O \ ATOM 1788 CB AALA B 46 65.524 10.451 8.515 0.60 37.60 C \ ATOM 1789 N AALA B 47 64.977 7.602 7.342 0.60 37.16 N \ ATOM 1790 CA AALA B 47 65.384 6.468 6.521 0.60 37.26 C \ ATOM 1791 C AALA B 47 64.276 6.097 5.540 0.60 38.04 C \ ATOM 1792 O AALA B 47 64.542 5.747 4.389 0.60 37.92 O \ ATOM 1793 CB AALA B 47 65.715 5.277 7.408 0.60 35.82 C \ ATOM 1794 N AALA B 48 63.033 6.177 6.005 0.60 37.28 N \ ATOM 1795 CA AALA B 48 61.880 5.845 5.175 0.60 38.16 C \ ATOM 1796 C AALA B 48 61.744 6.804 3.997 0.60 38.83 C \ ATOM 1797 O AALA B 48 61.336 6.407 2.907 0.60 38.58 O \ ATOM 1798 CB AALA B 48 60.607 5.871 6.019 0.60 36.16 C \ ATOM 1799 N AALA B 49 62.091 8.066 4.223 0.60 40.07 N \ ATOM 1800 CA AALA B 49 62.001 9.087 3.184 0.60 42.46 C \ ATOM 1801 C AALA B 49 62.873 8.786 1.966 0.60 44.46 C \ ATOM 1802 O AALA B 49 62.733 9.435 0.929 0.60 45.30 O \ ATOM 1803 CB AALA B 49 62.370 10.445 3.761 0.60 42.02 C \ ATOM 1804 N ATHR B 50 63.769 7.809 2.085 0.60 44.91 N \ ATOM 1805 CA ATHR B 50 64.643 7.460 0.969 0.60 45.27 C \ ATOM 1806 C ATHR B 50 64.022 6.374 0.100 0.60 45.76 C \ ATOM 1807 O ATHR B 50 64.293 6.296 -1.099 0.60 46.98 O \ ATOM 1808 CB ATHR B 50 66.023 6.957 1.451 0.60 45.21 C \ ATOM 1809 OG1ATHR B 50 65.880 5.672 2.069 0.60 45.20 O \ ATOM 1810 CG2ATHR B 50 66.629 7.936 2.448 0.60 44.80 C \ ATOM 1811 N AGLY B 51 63.192 5.534 0.710 0.60 45.77 N \ ATOM 1812 CA AGLY B 51 62.553 4.461 -0.030 0.60 44.67 C \ ATOM 1813 C AGLY B 51 63.366 3.183 -0.010 0.60 44.22 C \ ATOM 1814 O AGLY B 51 63.015 2.202 -0.666 0.60 44.53 O \ ATOM 1815 N AASP B 52 64.458 3.192 0.748 0.60 47.51 N \ ATOM 1816 CA AASP B 52 65.328 2.028 0.851 0.60 46.00 C \ ATOM 1817 C AASP B 52 64.955 1.203 2.078 0.60 43.66 C \ ATOM 1818 O AASP B 52 65.196 1.621 3.210 0.60 42.64 O \ ATOM 1819 CB AASP B 52 66.789 2.476 0.947 0.60 46.66 C \ ATOM 1820 CG AASP B 52 67.763 1.331 0.763 0.60 51.70 C \ ATOM 1821 OD1AASP B 52 67.711 0.369 1.557 0.60 53.54 O \ ATOM 1822 OD2AASP B 52 68.581 1.391 -0.179 0.60 57.19 O \ ATOM 1823 N AALA B 53 64.368 0.032 1.845 0.60 41.16 N \ ATOM 1824 CA AALA B 53 63.949 -0.851 2.928 0.60 40.57 C \ ATOM 1825 C AALA B 53 65.112 -1.220 3.842 0.60 39.77 C \ ATOM 1826 O AALA B 53 64.944 -1.335 5.055 0.60 38.82 O \ ATOM 1827 CB AALA B 53 63.313 -2.118 2.358 0.60 40.09 C \ ATOM 1828 N AALA B 54 66.290 -1.405 3.254 0.60 38.72 N \ ATOM 1829 CA AALA B 54 67.481 -1.762 4.019 0.60 37.31 C \ ATOM 1830 C AALA B 54 67.860 -0.663 5.010 0.60 36.68 C \ ATOM 1831 O AALA B 54 68.227 -0.946 6.152 0.60 37.22 O \ ATOM 1832 CB AALA B 54 68.647 -2.038 3.069 0.60 37.37 C \ ATOM 1833 N AALA B 55 67.774 0.589 4.569 0.60 35.39 N \ ATOM 1834 CA AALA B 55 68.105 1.727 5.420 0.60 34.05 C \ ATOM 1835 C AALA B 55 67.138 1.817 6.597 0.60 32.64 C \ ATOM 1836 O AALA B 55 67.541 2.111 7.724 0.60 30.96 O \ ATOM 1837 CB AALA B 55 68.060 3.017 4.610 0.60 34.83 C \ ATOM 1838 N AVAL B 56 65.858 1.573 6.330 0.60 30.08 N \ ATOM 1839 CA AVAL B 56 64.853 1.621 7.382 0.60 27.27 C \ ATOM 1840 C AVAL B 56 65.114 0.498 8.375 0.60 24.76 C \ ATOM 1841 O AVAL B 56 65.025 0.702 9.581 0.60 23.38 O \ ATOM 1842 CB AVAL B 56 63.421 1.469 6.811 0.60 28.56 C \ ATOM 1843 CG1AVAL B 56 62.401 1.515 7.946 0.60 24.88 C \ ATOM 1844 CG2AVAL B 56 63.144 2.581 5.807 0.60 30.65 C \ ATOM 1845 N AGLN B 57 65.444 -0.687 7.870 0.60 25.06 N \ ATOM 1846 CA AGLN B 57 65.720 -1.825 8.746 0.60 28.08 C \ ATOM 1847 C AGLN B 57 66.895 -1.535 9.684 0.60 26.57 C \ ATOM 1848 O AGLN B 57 66.872 -1.905 10.858 0.60 24.92 O \ ATOM 1849 CB AGLN B 57 66.025 -3.078 7.918 0.60 29.46 C \ ATOM 1850 CG AGLN B 57 66.545 -4.245 8.742 0.60 33.64 C \ ATOM 1851 CD AGLN B 57 66.804 -5.484 7.910 0.60 43.64 C \ ATOM 1852 OE1AGLN B 57 67.440 -5.417 6.858 0.60 47.11 O \ ATOM 1853 NE2AGLN B 57 66.320 -6.627 8.381 0.60 43.05 N \ ATOM 1854 N AGLU B 58 67.925 -0.881 9.157 0.60 28.77 N \ ATOM 1855 CA AGLU B 58 69.102 -0.543 9.955 0.60 27.94 C \ ATOM 1856 C AGLU B 58 68.725 0.393 11.098 0.60 25.53 C \ ATOM 1857 O AGLU B 58 69.133 0.190 12.243 0.60 23.69 O \ ATOM 1858 CB AGLU B 58 70.164 0.132 9.082 0.60 29.46 C \ ATOM 1859 CG AGLU B 58 70.845 -0.788 8.087 0.60 40.85 C \ ATOM 1860 CD AGLU B 58 71.876 -0.059 7.242 0.60 50.62 C \ ATOM 1861 OE1AGLU B 58 72.784 0.571 7.824 0.60 51.74 O \ ATOM 1862 OE2AGLU B 58 71.780 -0.117 5.998 0.60 57.56 O \ ATOM 1863 N AALA B 59 67.942 1.418 10.775 0.60 24.11 N \ ATOM 1864 CA AALA B 59 67.500 2.392 11.763 0.60 24.61 C \ ATOM 1865 C AALA B 59 66.585 1.759 12.808 0.60 24.55 C \ ATOM 1866 O AALA B 59 66.612 2.141 13.977 0.60 22.61 O \ ATOM 1867 CB AALA B 59 66.778 3.553 11.069 0.60 25.79 C \ ATOM 1868 N AALA B 60 65.786 0.784 12.383 0.60 22.74 N \ ATOM 1869 CA AALA B 60 64.848 0.113 13.283 0.60 22.34 C \ ATOM 1870 C AALA B 60 65.526 -0.836 14.264 0.60 21.51 C \ ATOM 1871 O AALA B 60 65.177 -0.869 15.443 0.60 22.49 O \ ATOM 1872 CB AALA B 60 63.799 -0.641 12.473 0.60 21.21 C \ ATOM 1873 N AVAL B 61 66.485 -1.617 13.782 0.60 22.59 N \ ATOM 1874 CA AVAL B 61 67.186 -2.545 14.659 0.60 23.38 C \ ATOM 1875 C AVAL B 61 67.970 -1.726 15.679 0.60 21.29 C \ ATOM 1876 O AVAL B 61 68.058 -2.088 16.851 0.60 20.86 O \ ATOM 1877 CB AVAL B 61 68.132 -3.455 13.859 0.60 23.59 C \ ATOM 1878 CG1AVAL B 61 68.979 -4.296 14.805 0.60 23.53 C \ ATOM 1879 CG2AVAL B 61 67.312 -4.361 12.944 0.60 28.87 C \ ATOM 1880 N ASER B 62 68.529 -0.613 15.219 0.60 22.44 N \ ATOM 1881 CA ASER B 62 69.281 0.283 16.086 0.60 21.50 C \ ATOM 1882 C ASER B 62 68.353 0.818 17.173 0.60 21.98 C \ ATOM 1883 O ASER B 62 68.701 0.831 18.353 0.60 22.25 O \ ATOM 1884 CB ASER B 62 69.846 1.447 15.272 0.60 20.89 C \ ATOM 1885 OG ASER B 62 70.369 2.450 16.122 0.60 21.24 O \ ATOM 1886 N AALA B 63 67.159 1.246 16.767 0.60 22.42 N \ ATOM 1887 CA AALA B 63 66.182 1.782 17.712 0.60 22.45 C \ ATOM 1888 C AALA B 63 65.756 0.736 18.738 0.60 19.98 C \ ATOM 1889 O AALA B 63 65.635 1.031 19.927 0.60 21.96 O \ ATOM 1890 CB AALA B 63 64.959 2.302 16.960 0.60 23.72 C \ ATOM 1891 N AILE B 64 65.517 -0.485 18.275 0.60 19.82 N \ ATOM 1892 CA AILE B 64 65.097 -1.557 19.170 0.60 19.73 C \ ATOM 1893 C AILE B 64 66.182 -1.900 20.181 0.60 19.94 C \ ATOM 1894 O AILE B 64 65.924 -1.933 21.388 0.60 19.59 O \ ATOM 1895 CB AILE B 64 64.716 -2.825 18.377 0.60 21.16 C \ ATOM 1896 CG1AILE B 64 63.475 -2.542 17.518 0.60 23.29 C \ ATOM 1897 CG2AILE B 64 64.479 -3.986 19.340 0.60 19.44 C \ ATOM 1898 CD1AILE B 64 63.132 -3.654 16.527 0.60 21.67 C \ ATOM 1899 N ALEU B 65 67.395 -2.160 19.694 0.60 21.71 N \ ATOM 1900 CA ALEU B 65 68.504 -2.488 20.586 0.60 21.93 C \ ATOM 1901 C ALEU B 65 68.772 -1.327 21.534 0.60 21.46 C \ ATOM 1902 O ALEU B 65 69.061 -1.530 22.711 0.60 22.40 O \ ATOM 1903 CB ALEU B 65 69.775 -2.796 19.785 0.60 23.51 C \ ATOM 1904 CG ALEU B 65 69.770 -4.058 18.919 0.60 28.62 C \ ATOM 1905 CD1ALEU B 65 71.074 -4.145 18.131 0.60 30.05 C \ ATOM 1906 CD2ALEU B 65 69.595 -5.290 19.805 0.60 33.91 C \ ATOM 1907 N AGLY B 66 68.677 -0.109 21.010 0.60 21.83 N \ ATOM 1908 CA AGLY B 66 68.910 1.067 21.829 0.60 21.71 C \ ATOM 1909 C AGLY B 66 67.921 1.174 22.974 0.60 21.28 C \ ATOM 1910 O AGLY B 66 68.297 1.470 24.104 0.60 18.61 O \ ATOM 1911 N ALEU B 67 66.644 0.944 22.682 0.60 22.24 N \ ATOM 1912 CA ALEU B 67 65.621 1.010 23.714 0.60 23.39 C \ ATOM 1913 C ALEU B 67 65.855 -0.077 24.759 0.60 23.20 C \ ATOM 1914 O ALEU B 67 65.677 0.155 25.955 0.60 25.41 O \ ATOM 1915 CB ALEU B 67 64.227 0.872 23.089 0.60 23.50 C \ ATOM 1916 CG ALEU B 67 63.686 2.153 22.446 0.60 26.11 C \ ATOM 1917 CD1ALEU B 67 62.425 1.858 21.651 0.60 32.16 C \ ATOM 1918 CD2ALEU B 67 63.400 3.174 23.536 0.60 27.23 C \ ATOM 1919 N AILE B 68 66.266 -1.261 24.313 0.60 24.67 N \ ATOM 1920 CA AILE B 68 66.542 -2.347 25.244 0.60 27.50 C \ ATOM 1921 C AILE B 68 67.693 -1.924 26.162 0.60 27.86 C \ ATOM 1922 O AILE B 68 67.630 -2.109 27.379 0.60 27.33 O \ ATOM 1923 CB AILE B 68 66.939 -3.642 24.502 0.60 28.01 C \ ATOM 1924 CG1AILE B 68 65.771 -4.130 23.640 0.60 32.91 C \ ATOM 1925 CG2AILE B 68 67.342 -4.711 25.505 0.60 30.34 C \ ATOM 1926 CD1AILE B 68 66.108 -5.324 22.761 0.60 33.59 C \ ATOM 1927 N AILE B 69 68.745 -1.355 25.571 0.60 26.80 N \ ATOM 1928 CA AILE B 69 69.897 -0.893 26.344 0.60 26.00 C \ ATOM 1929 C AILE B 69 69.459 0.216 27.300 0.60 27.35 C \ ATOM 1930 O AILE B 69 69.913 0.278 28.442 0.60 28.94 O \ ATOM 1931 CB AILE B 69 71.025 -0.355 25.421 0.60 26.79 C \ ATOM 1932 CG1AILE B 69 71.641 -1.509 24.620 0.60 25.36 C \ ATOM 1933 CG2AILE B 69 72.108 0.333 26.249 0.60 26.69 C \ ATOM 1934 CD1AILE B 69 72.707 -1.069 23.623 0.60 25.21 C \ ATOM 1935 N ALEU B 70 68.568 1.085 26.832 0.60 28.67 N \ ATOM 1936 CA ALEU B 70 68.078 2.177 27.663 0.60 30.81 C \ ATOM 1937 C ALEU B 70 67.414 1.623 28.927 0.60 32.16 C \ ATOM 1938 O ALEU B 70 67.503 2.223 30.001 0.60 31.08 O \ ATOM 1939 CB ALEU B 70 67.085 3.040 26.884 0.60 28.18 C \ ATOM 1940 CG ALEU B 70 66.645 4.322 27.600 0.60 32.04 C \ ATOM 1941 CD1ALEU B 70 67.811 5.297 27.634 0.60 32.80 C \ ATOM 1942 CD2ALEU B 70 65.458 4.945 26.889 0.60 33.17 C \ ATOM 1943 N ALEU B 71 66.744 0.481 28.798 0.60 34.44 N \ ATOM 1944 CA ALEU B 71 66.097 -0.146 29.949 0.60 35.48 C \ ATOM 1945 C ALEU B 71 67.188 -0.598 30.914 0.60 35.76 C \ ATOM 1946 O ALEU B 71 67.085 -0.410 32.129 0.60 36.63 O \ ATOM 1947 CB ALEU B 71 65.272 -1.353 29.510 0.60 37.60 C \ ATOM 1948 CG ALEU B 71 64.623 -2.156 30.643 0.60 39.87 C \ ATOM 1949 CD1ALEU B 71 63.457 -1.372 31.230 0.60 44.46 C \ ATOM 1950 CD2ALEU B 71 64.150 -3.494 30.111 0.60 42.94 C \ ATOM 1951 N AGLY B 72 68.241 -1.192 30.362 0.60 36.34 N \ ATOM 1952 CA AGLY B 72 69.345 -1.643 31.188 0.60 36.35 C \ ATOM 1953 C AGLY B 72 69.936 -0.484 31.967 0.60 36.71 C \ ATOM 1954 O AGLY B 72 70.237 -0.611 33.154 0.60 36.09 O \ ATOM 1955 N AILE B 73 70.102 0.654 31.300 0.60 36.68 N \ ATOM 1956 CA AILE B 73 70.654 1.835 31.950 0.60 36.64 C \ ATOM 1957 C AILE B 73 69.732 2.308 33.069 0.60 37.80 C \ ATOM 1958 O AILE B 73 70.176 2.534 34.197 0.60 39.01 O \ ATOM 1959 CB AILE B 73 70.838 2.997 30.954 0.60 35.09 C \ ATOM 1960 CG1AILE B 73 71.814 2.592 29.847 0.60 33.11 C \ ATOM 1961 CG2AILE B 73 71.358 4.228 31.688 0.60 37.95 C \ ATOM 1962 CD1AILE B 73 72.011 3.653 28.782 0.60 30.09 C \ ATOM 1963 N AASN B 74 68.448 2.457 32.750 0.60 36.63 N \ ATOM 1964 CA AASN B 74 67.475 2.915 33.731 0.60 36.76 C \ ATOM 1965 C AASN B 74 67.425 1.992 34.942 0.60 36.05 C \ ATOM 1966 O AASN B 74 67.490 2.454 36.082 0.60 37.27 O \ ATOM 1967 CB AASN B 74 66.085 3.031 33.095 0.60 35.18 C \ ATOM 1968 CG AASN B 74 66.022 4.105 32.017 0.60 41.12 C \ ATOM 1969 OD1AASN B 74 66.500 5.225 32.210 0.60 37.24 O \ ATOM 1970 ND2AASN B 74 65.419 3.771 30.881 0.60 40.18 N \ ATOM 1971 N ALEU B 75 67.430 0.793 34.754 0.60 35.22 N \ ATOM 1972 CA ALEU B 75 67.361 -0.211 35.808 0.60 36.59 C \ ATOM 1973 C ALEU B 75 68.613 -0.139 36.688 0.60 37.27 C \ ATOM 1974 O ALEU B 75 68.535 -0.206 37.921 0.60 36.93 O \ ATOM 1975 CB ALEU B 75 67.243 -1.609 35.200 0.60 38.25 C \ ATOM 1976 CG ALEU B 75 65.851 -2.247 35.213 0.60 40.46 C \ ATOM 1977 CD1ALEU B 75 64.848 -1.283 34.623 0.60 40.37 C \ ATOM 1978 CD2ALEU B 75 65.890 -3.569 34.443 0.60 40.50 C \ ATOM 1979 N AGLY B 76 69.773 0.002 36.050 0.60 37.43 N \ ATOM 1980 CA AGLY B 76 71.010 0.083 36.804 0.60 37.65 C \ ATOM 1981 C AGLY B 76 71.040 1.309 37.699 0.60 37.24 C \ ATOM 1982 O AGLY B 76 71.469 1.239 38.850 0.60 37.24 O \ ATOM 1983 N ALEU B 77 70.579 2.435 37.166 0.60 38.66 N \ ATOM 1984 CA ALEU B 77 70.536 3.687 37.916 0.60 40.90 C \ ATOM 1985 C ALEU B 77 69.653 3.547 39.159 0.60 42.97 C \ ATOM 1986 O ALEU B 77 70.050 3.911 40.273 0.60 44.15 O \ ATOM 1987 CB ALEU B 77 70.005 4.806 37.022 0.60 41.68 C \ ATOM 1988 CG ALEU B 77 69.818 6.177 37.672 0.60 42.37 C \ ATOM 1989 CD1ALEU B 77 71.165 6.680 38.192 0.60 43.84 C \ ATOM 1990 CD2ALEU B 77 69.239 7.148 36.654 0.60 44.32 C \ ATOM 1991 N AVAL B 78 68.452 3.012 38.962 0.60 43.98 N \ ATOM 1992 CA AVAL B 78 67.524 2.812 40.067 0.60 45.48 C \ ATOM 1993 C AVAL B 78 68.121 1.933 41.160 0.60 46.04 C \ ATOM 1994 O AVAL B 78 68.059 2.274 42.342 0.60 46.98 O \ ATOM 1995 CB AVAL B 78 66.201 2.160 39.579 0.60 45.68 C \ ATOM 1996 CG1AVAL B 78 65.286 1.882 40.764 0.60 46.19 C \ ATOM 1997 CG2AVAL B 78 65.504 3.074 38.577 0.60 45.27 C \ ATOM 1998 N AALA B 79 68.707 0.808 40.762 0.60 46.34 N \ ATOM 1999 CA AALA B 79 69.307 -0.128 41.709 0.60 47.06 C \ ATOM 2000 C AALA B 79 70.492 0.472 42.456 0.60 48.14 C \ ATOM 2001 O AALA B 79 70.717 0.159 43.631 0.60 48.55 O \ ATOM 2002 CB AALA B 79 69.737 -1.398 40.987 0.60 46.08 C \ TER 2003 ALA B 79 \ HETATM 2078 O AHOH B 124 68.145 4.164 15.153 0.60 31.51 O \ ENDMDL \ """, "2f93chainB") cmd.hide("all") cmd.color('grey70', "2f93chainB") cmd.show('cartoon', "2f93chainB") cmd.center("2f93chainB", state=0, origin=1) cmd.zoom("2f93chainB", animate=-1) cmd.select("e2f93B1", "c. B & i. 29-79") cmd.color("red", "e2f93B1") cmd.disable("e2f93B1")