cmd.read_pdbstr("""\ HEADER GENE REGULATION/DNA 05-NOV-00 1EA4 \ TITLE TRANSCRIPTIONAL REPRESSOR COPG/22BP DSDNA COMPLEX \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: TRANSCRIPTIONAL REPRESSOR COPG; \ COMPND 3 CHAIN: A, B, D, E, F, G, H, J, K, L; \ COMPND 4 FRAGMENT: DNA-BINDING PROTEIN; \ COMPND 5 SYNONYM: REPA PROTEIN; \ COMPND 6 ENGINEERED: YES; \ COMPND 7 MOL_ID: 2; \ COMPND 8 MOLECULE: DNA (5'-D(*TP*AP*AP*CP*CP*GP*TP*GP \ COMPND 9 *CP*AP*CP*TP*CP*AP*AP*TP*GP*CP*AP*AP*TP*C)-3'); \ COMPND 10 CHAIN: U, W, Y; \ COMPND 11 FRAGMENT: 22BP SSDNA - FIRST STRAND; \ COMPND 12 ENGINEERED: YES; \ COMPND 13 MOL_ID: 3; \ COMPND 14 MOLECULE: DNA(5'-D(*AP*GP*AP*TP*TP*GP*CP*AP*TP \ COMPND 15 *TP*GP*AP*GP*TP*GP*CP*AP*CP*GP*GP*TP*T)-3'); \ COMPND 16 CHAIN: V, X, Z; \ COMPND 17 FRAGMENT: 22BP SSDNA - SECOND STRAND; \ COMPND 18 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: STREPTOCOCCUS AGALACTIAE; \ SOURCE 3 ORGANISM_TAXID: 1311; \ SOURCE 4 CELLULAR_LOCATION: PLASMID PMV158; \ SOURCE 5 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 6 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 7 EXPRESSION_SYSTEM_VECTOR_TYPE: PLASMID; \ SOURCE 8 EXPRESSION_SYSTEM_PLASMID: PMV158; \ SOURCE 9 MOL_ID: 2; \ SOURCE 10 SYNTHETIC: YES; \ SOURCE 11 MOL_ID: 3; \ SOURCE 12 SYNTHETIC: YES \ KEYWDS TRANSCRIPTIONAL REPRESSOR, DNA-BINDING PROTEIN, PLASMID, PROTEIN-DNA \ KEYWDS 2 COMPLEX, GENE REGULATION/DNA, GENE REGULATION-DNA COMPLEX \ EXPDTA X-RAY DIFFRACTION \ AUTHOR F.X.GOMIS-RUETH,M.COSTA,M.SOLA,P.ACEBO,R.ERITJA,M.ESPINOSA,G.D.SOLAR, \ AUTHOR 2 M.COLL \ REVDAT 4 13-DEC-23 1EA4 1 DBREF \ REVDAT 3 24-FEB-09 1EA4 1 VERSN \ REVDAT 2 03-JUN-02 1EA4 1 SEQRES ATOM TER \ REVDAT 1 05-JUL-01 1EA4 0 \ JRNL AUTH M.COSTA,M.SOLA,G.DEL,R.ERITJA,A.M.HERNAINDEZ-ARRIAGA, \ JRNL AUTH 2 M.ESPINOSA,F.X.GOMIS-RUETH,M.COLL \ JRNL TITL PLASMID TRANSCRIPTIONAL REPRESSOR COPG OLIGOMERISES TO \ JRNL TITL 2 RENDER HELICAL SUPERSTRUCTURES UNBOUND AND IN COMPLEXES WITH \ JRNL TITL 3 OLIGONUCLEOTIDES \ JRNL REF J.MOL.BIOL. V. 310 403 2001 \ JRNL REFN ISSN 0022-2836 \ JRNL PMID 11428897 \ JRNL DOI 10.1006/JMBI.2001.4760 \ REMARK 1 \ REMARK 1 REFERENCE 1 \ REMARK 1 AUTH F.X.GOMIS-RUETH,M.SOLA,P.ACEBO,A.PARRAGA,A.GUASCH,R.ERITJA, \ REMARK 1 AUTH 2 A.GONZALEZ,M.ESPINOSA,G.D.SOLAR,M.COLL \ REMARK 1 TITL THE STRUCTURE OF PLASMID-ENCODED TRANSCRIPTIONAL REPRESSOR \ REMARK 1 TITL 2 COPG UNLIGANDED AND BOUND TO ITS OPERATOR \ REMARK 1 REF EMBO J. V. 17 7404 1998 \ REMARK 1 REFN ISSN 0261-4189 \ REMARK 1 PMID 9857196 \ REMARK 1 DOI 10.1093/EMBOJ/17.24.7404 \ REMARK 1 REFERENCE 2 \ REMARK 1 AUTH F.X.GOMIS-RUETH,M.SOLA,R.PEREZ-LUQUE,P.ACEBO,M.T.ALDA, \ REMARK 1 AUTH 2 A.GONZALEZ,M.ESPINOSA,G.D.SOLAR,M.COLL \ REMARK 1 TITL OVEREXPRESSION, PURIFICATION, CRYSTALLIZATION AND \ REMARK 1 TITL 2 PRELIMINARY X-RAY DIFFRACTION ANALYSIS OF THE PMV158-ENCODED \ REMARK 1 TITL 3 PLASMID TRANSCRIPTIONAL REPRESSOR PROTEIN COPG \ REMARK 1 REF FEBS LETT. V. 425 161 1998 \ REMARK 1 REFN ISSN 0014-5793 \ REMARK 1 PMID 9541028 \ REMARK 1 DOI 10.1016/S0014-5793(98)00219-1 \ REMARK 2 \ REMARK 2 RESOLUTION. 2.95 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : CNS 1.0 \ 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 : MAXIMUM LIKELIHOOD \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 2.95 \ 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) (%) : 96.9 \ REMARK 3 NUMBER OF REFLECTIONS : 17507 \ 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) : 0.230 \ REMARK 3 FREE R VALUE : 0.307 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 7.000 \ REMARK 3 FREE R VALUE TEST SET COUNT : NULL \ 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 : 3377 \ REMARK 3 NUCLEIC ACID ATOMS : 2535 \ REMARK 3 HETEROGEN ATOMS : 0 \ REMARK 3 SOLVENT ATOMS : 101 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : 80.80 \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 66.30 \ 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) : 0.009 \ REMARK 3 BOND ANGLES (DEGREES) : 1.340 \ 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 : RESTRAINTS \ 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 PARAMETER FILE 2 : NULL \ REMARK 3 TOPOLOGY FILE 1 : NULL \ REMARK 3 TOPOLOGY FILE 2 : NULL \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: NOE RESTRAINTS FOR WATSON & CRICK BASE \ REMARK 3 PAIRING. THE COMPLEX SET UP FOR CRYSTALLIZATION WAS MADE UP BY A \ REMARK 3 COPG DIMER-OF-HOMODIMERS AND A 22-BP DSDNA. THERE ARE 2,5 OF \ REMARK 3 THOSE COMPLEXES IN THE ASYMMETRIC UNIT, DEFG+WX (PROTEIN + DNA), \ REMARK 3 HJKL+UV, AND ABA'B'+YZ. THE LATTER REPRESENTS THE "HALF" \ REMARK 3 COMPLEX. THE OTHER HALF IS CREATED BY A CRYSTALLOGRAPHIC TWOFOLD \ REMARK 3 (RENDERING A' AND B'). THE DNA PART HAS BEEN MODELLED WITH THE \ REMARK 3 TWO OBSERVED ORIENTATIONS, EACH WITH OCCUPANCY 0.5. THERE ARE \ REMARK 3 NCS RESTRAINTS, BUT SO MANY THAT THE MATRICES AND TRANSLATIONS \ REMARK 3 HAVE NOT BEEN INCLUDED IN THIS ENTRY. ESSENTIALLY, ALL PROTEIN \ REMARK 3 CHAINS AND ALL DNA STRANDS HAVE BEEN SUBJECTED TO RESTRAINTS. \ REMARK 4 \ REMARK 4 1EA4 COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY PDBE ON 05-NOV-00. \ REMARK 100 THE DEPOSITION ID IS D_1290005528. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : NULL \ REMARK 200 TEMPERATURE (KELVIN) : 110.0 \ REMARK 200 PH : 4.60 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : ELETTRA \ REMARK 200 BEAMLINE : 5.2R \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 1.0527 \ REMARK 200 MONOCHROMATOR : NULL \ REMARK 200 OPTICS : NULL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : IMAGE PLATE \ REMARK 200 DETECTOR MANUFACTURER : MARRESEARCH \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : MOSFLM \ REMARK 200 DATA SCALING SOFTWARE : SCALA \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 17592 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 2.920 \ REMARK 200 RESOLUTION RANGE LOW (A) : 43.850 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : NULL \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 93.6 \ REMARK 200 DATA REDUNDANCY : 5.900 \ REMARK 200 R MERGE (I) : 0.10600 \ REMARK 200 R SYM (I) : NULL \ REMARK 200 FOR THE DATA SET : 5.9000 \ REMARK 200 \ REMARK 200 IN THE HIGHEST RESOLUTION SHELL. \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE HIGH (A) : NULL \ REMARK 200 HIGHEST RESOLUTION SHELL, RANGE LOW (A) : NULL \ REMARK 200 COMPLETENESS FOR SHELL (%) : NULL \ 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: AMORE \ REMARK 200 STARTING MODEL: PDB ENTRY 1B01 \ REMARK 200 \ REMARK 200 REMARK: ONE COPG DIMER/ 9BP DSDNA MODEL WAS USED AS SEARCHING \ REMARK 200 MODEL. \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 44.94 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 2.23 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: MPD, NACL, NAACO, PH 4.60 \ 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 106.70000 \ REMARK 290 SMTRY2 3 0.000000 1.000000 0.000000 38.02000 \ REMARK 290 SMTRY3 3 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 SMTRY1 4 1.000000 0.000000 0.000000 106.70000 \ REMARK 290 SMTRY2 4 0.000000 -1.000000 0.000000 38.02000 \ REMARK 290 SMTRY3 4 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 \ REMARK 290 REMARK: NULL \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1, 2, 3, 4 \ REMARK 300 SEE REMARK 350 FOR THE AUTHOR PROVIDED AND/OR PROGRAM \ REMARK 300 GENERATED ASSEMBLY INFORMATION FOR THE STRUCTURE IN \ REMARK 300 THIS ENTRY. THE REMARK MAY ALSO PROVIDE INFORMATION ON \ REMARK 300 BURIED SURFACE AREA. \ REMARK 300 REMARK: FUNCTIONAL TETRAMERS (EACH ONE CONTACTING A \ REMARK 300 22BP DSDNA)ARE DEFG, HJKL, AND ABA'B' (A' AND \ REMARK 300 B' ARE SYMMETRYEQUIVALENT MOLECULES).TETRAMER DEFG \ REMARK 300 CONTACTS DSDNA WX, HJKL PAIRS UV, ANDABA'B' \ REMARK 300 INTERACTS WITH YZ(DOUBLE OCCUPANCY DUE TO \ REMARK 300 CRYSTALLOGRAPHIC TWOFOLD AXIS)THE BIOMOLECULE 1 IS \ REMARK 300 THE SUPERHELICAL STRUCTURE AND THETETRAMERS CAN BE \ REMARK 300 GENERATED USING THE MATRICES GIVENFOR BIOMOLECULES 2 \ REMARK 300 , 3 AND 4 \ 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: 32-MERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: 32-MERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, D, E, F, G, H, J, K, L, \ REMARK 350 AND CHAINS: U, V, W, X, Y, Z \ 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 213.40000 \ REMARK 350 BIOMT2 2 0.000000 -1.000000 0.000000 76.04000 \ REMARK 350 BIOMT3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 2 \ REMARK 350 AUTHOR DETERMINED BIOLOGICAL UNIT: HEXAMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: HEXAMERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: D, E, F, G, W, X \ 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: HEXAMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: HEXAMERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: H, J, K, L, U, V \ 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: OCTAMERIC \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: OCTAMERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, Y, Z \ 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 213.40000 \ REMARK 350 BIOMT2 2 0.000000 -1.000000 0.000000 76.04000 \ REMARK 350 BIOMT3 2 0.000000 0.000000 1.000000 0.00000 \ REMARK 400 \ REMARK 400 COMPOUND \ REMARK 400 REGULATES THE PLASMID COPY NUMBER BY BINDING TO THE \ REMARK 400 REPAB PROMOTER THUS CONTROLING THE SYNTHESIS OF THE PLASMID \ REMARK 400 REPLICATION INITIATOR PROTEIN REPB AND ITS OWN ONE. \ REMARK 465 \ REMARK 465 MISSING RESIDUES \ REMARK 465 THE FOLLOWING RESIDUES WERE NOT LOCATED IN THE \ REMARK 465 EXPERIMENT. (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN \ REMARK 465 IDENTIFIER; SSSEQ=SEQUENCE NUMBER; I=INSERTION CODE.) \ REMARK 465 \ REMARK 465 M RES C SSSEQI \ REMARK 465 MET A 1 \ REMARK 465 GLU A 44 \ REMARK 465 LYS A 45 \ REMARK 465 GLY B 42 \ REMARK 465 GLN B 43 \ REMARK 465 GLU B 44 \ REMARK 465 LYS B 45 \ REMARK 465 GLU D 44 \ REMARK 465 LYS D 45 \ REMARK 465 LYS E 45 \ REMARK 465 GLN G 43 \ REMARK 465 GLU G 44 \ REMARK 465 LYS G 45 \ REMARK 465 MET H 1 \ REMARK 465 LYS J 45 \ REMARK 465 GLU K 44 \ REMARK 465 LYS K 45 \ REMARK 465 LYS L 45 \ REMARK 465 DT U 201 \ REMARK 465 DC U 222 \ REMARK 465 DT V 222 \ REMARK 465 DT Y 201 \ REMARK 465 DT Z 222 \ 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 DA U 202 P OP1 OP2 \ REMARK 470 DT U 221 C5' C4' O4' C3' O3' C2' C1' \ REMARK 470 DT U 221 N1 C2 O2 N3 C4 O4 C5 \ REMARK 470 DT U 221 C7 C6 \ REMARK 470 DT V 221 C5' C4' O4' C3' O3' C2' C1' \ REMARK 470 DT V 221 N1 C2 O2 N3 C4 O4 C5 \ REMARK 470 DT V 221 C7 C6 \ REMARK 470 DT X 222 C5' C4' O4' C3' O3' C2' C1' \ REMARK 470 DT X 222 N1 C2 O2 N3 C4 O4 C5 \ REMARK 470 DT X 222 C7 C6 \ REMARK 470 DA Y 202 P OP1 OP2 \ REMARK 470 DC Y 213 P OP1 OP2 \ REMARK 470 DA Z 212 P OP1 OP2 \ 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 O TYR B 39 N LYS B 41 2.04 \ 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 LYS F 45 CE LYS F 45 NZ -0.154 \ REMARK 500 LYS H 45 CE LYS H 45 NZ -0.153 \ REMARK 500 DG Z 211 N1 DG Z 211 C2 0.052 \ 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 DT V 214 O4' - C1' - N1 ANGL. DEV. = 1.9 DEGREES \ REMARK 500 DG Z 211 O4' - C1' - N9 ANGL. DEV. = 2.5 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 LYS A 19 -71.16 -53.06 \ REMARK 500 LYS B 40 51.08 -64.46 \ REMARK 500 GLN E 43 -31.50 -143.29 \ REMARK 500 GLN F 43 26.42 -144.64 \ REMARK 500 GLU F 44 -114.96 -69.93 \ REMARK 500 LYS G 2 95.67 -178.21 \ REMARK 500 GLN H 43 42.64 -88.47 \ REMARK 500 GLU H 44 -163.12 -127.81 \ REMARK 500 LYS K 2 45.86 -105.94 \ REMARK 500 LYS K 3 143.83 -22.13 \ REMARK 500 LYS K 19 -70.23 -58.29 \ REMARK 500 LYS L 2 54.62 149.48 \ REMARK 500 LYS L 3 140.61 -11.12 \ REMARK 500 LYS L 19 -71.00 -51.95 \ REMARK 500 GLN L 43 -44.20 -25.76 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 525 \ REMARK 525 SOLVENT \ REMARK 525 \ REMARK 525 THE SOLVENT MOLECULES HAVE CHAIN IDENTIFIERS THAT \ REMARK 525 INDICATE THE POLYMER CHAIN WITH WHICH THEY ARE MOST \ REMARK 525 CLOSELY ASSOCIATED. THE REMARK LISTS ALL THE SOLVENT \ REMARK 525 MOLECULES WHICH ARE MORE THAN 5A AWAY FROM THE \ REMARK 525 NEAREST POLYMER CHAIN (M = MODEL NUMBER; \ REMARK 525 RES=RESIDUE NAME; C=CHAIN IDENTIFIER; SSEQ=SEQUENCE \ REMARK 525 NUMBER; I=INSERTION CODE): \ REMARK 525 \ REMARK 525 M RES CSSEQI \ REMARK 525 HOH H2002 DISTANCE = 6.57 ANGSTROMS \ REMARK 525 HOH Y2001 DISTANCE = 6.26 ANGSTROMS \ REMARK 525 HOH Y2002 DISTANCE = 6.55 ANGSTROMS \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 1B01 RELATED DB: PDB \ REMARK 900 TRANSCRIPTIONAL REPRESSOR COPG/DEOXYRIBONUCLEIC ACID COMPLEX \ REMARK 900 RELATED ID: 2CPG RELATED DB: PDB \ REMARK 900 TRANSCRIPTIONAL REPRESSOR COPG \ DBREF 1EA4 A 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 B 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 D 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 E 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 F 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 G 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 H 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 J 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 K 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 L 1 45 UNP P13920 REPA_STRPN 1 45 \ DBREF 1EA4 U 201 222 PDB 1EA4 1EA4 201 222 \ DBREF 1EA4 V 201 222 PDB 1EA4 1EA4 201 222 \ DBREF 1EA4 W 201 222 PDB 1EA4 1EA4 201 222 \ DBREF 1EA4 X 201 222 PDB 1EA4 1EA4 201 222 \ DBREF 1EA4 Y 202 222 PDB 1EA4 1EA4 202 222 \ DBREF 1EA4 Z 201 222 PDB 1EA4 1EA4 201 222 \ SEQRES 1 A 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 A 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 A 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 A 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 B 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 B 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 B 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 B 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 D 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 D 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 D 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 D 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 E 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 E 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 E 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 E 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 F 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 F 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 F 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 F 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 G 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 G 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 G 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 G 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 H 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 H 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 H 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 H 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 J 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 J 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 J 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 J 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 K 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 K 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 K 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 K 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 L 45 MET LYS LYS ARG LEU THR ILE THR LEU SER GLU SER VAL \ SEQRES 2 L 45 LEU GLU ASN LEU GLU LYS MET ALA ARG GLU MET GLY LEU \ SEQRES 3 L 45 SER LYS SER ALA MET ILE SER VAL ALA LEU GLU ASN TYR \ SEQRES 4 L 45 LYS LYS GLY GLN GLU LYS \ SEQRES 1 U 22 DT DA DA DC DC DG DT DG DC DA DC DT DC \ SEQRES 2 U 22 DA DA DT DG DC DA DA DT DC \ SEQRES 1 V 22 DA DG DA DT DT DG DC DA DT DT DG DA DG \ SEQRES 2 V 22 DT DG DC DA DC DG DG DT DT \ SEQRES 1 W 22 DT DA DA DC DC DG DT DG DC DA DC DT DC \ SEQRES 2 W 22 DA DA DT DG DC DA DA DT DC \ SEQRES 1 X 22 DA DG DA DT DT DG DC DA DT DT DG DA DG \ SEQRES 2 X 22 DT DG DC DA DC DG DG DT DT \ SEQRES 1 Y 22 DT DA DA DC DC DG DT DG DC DA DC DT DC \ SEQRES 2 Y 22 DA DA DT DG DC DA DA DT DC \ SEQRES 1 Z 22 DA DG DA DT DT DG DC DA DT DT DG DA DG \ SEQRES 2 Z 22 DT DG DC DA DC DG DG DT DT \ FORMUL 17 HOH *101(H2 O) \ HELIX 1 1 GLU A 11 GLY A 25 1 15 \ HELIX 2 2 SER A 27 LYS A 40 1 14 \ HELIX 3 3 SER B 10 MET B 24 1 15 \ HELIX 4 4 SER B 27 LYS B 40 1 14 \ HELIX 5 5 GLU D 11 GLY D 25 1 15 \ HELIX 6 6 SER D 27 LYS D 41 1 15 \ HELIX 7 7 SER E 10 GLY E 25 1 16 \ HELIX 8 8 SER E 27 GLY E 42 1 16 \ HELIX 9 9 SER F 10 GLY F 25 1 16 \ HELIX 10 10 SER F 27 GLY F 42 1 16 \ HELIX 11 11 GLU G 11 GLY G 25 1 15 \ HELIX 12 12 SER G 27 LYS G 41 1 15 \ HELIX 13 13 GLU H 11 GLY H 25 1 15 \ HELIX 14 14 SER H 27 GLN H 43 1 17 \ HELIX 15 15 SER J 10 GLY J 25 1 16 \ HELIX 16 16 SER J 27 GLY J 42 1 16 \ HELIX 17 17 SER K 10 GLY K 25 1 16 \ HELIX 18 18 SER K 27 GLY K 42 1 16 \ HELIX 19 19 SER L 10 GLY L 25 1 16 \ HELIX 20 20 SER L 27 GLU L 44 1 18 \ SHEET 1 A 2 LYS A 3 SER A 10 0 \ SHEET 2 A 2 LYS B 2 LEU B 9 -1 O LEU B 9 N LYS A 3 \ SHEET 1 B 2 LYS D 3 SER D 10 0 \ SHEET 2 B 2 LYS E 2 LEU E 9 -1 O LEU E 9 N LYS D 3 \ SHEET 1 C 2 LYS F 2 LEU F 9 0 \ SHEET 2 C 2 LYS G 3 SER G 10 -1 O LEU G 9 N LYS F 3 \ SHEET 1 D 2 LYS H 3 SER H 10 0 \ SHEET 2 D 2 LYS J 2 LEU J 9 -1 O LEU J 9 N LYS H 3 \ SHEET 1 E 2 ARG K 4 THR K 8 0 \ SHEET 2 E 2 ARG L 4 THR L 8 -1 O LEU L 5 N ILE K 7 \ CRYST1 213.400 76.040 50.520 90.00 90.00 90.00 P 21 21 2 40 \ 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 0.004686 0.000000 0.000000 0.00000 \ SCALE2 0.000000 0.013151 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.019794 0.00000 \ TER 328 GLN A 43 \ TER 651 LYS B 41 \ TER 987 GLN D 43 \ TER 1332 GLU E 44 \ TER 1687 LYS F 45 \ TER 2014 GLY G 42 \ TER 2361 LYS H 45 \ ATOM 2362 N MET J 1 166.600 50.111 59.658 1.00 86.86 N \ ATOM 2363 CA MET J 1 166.571 51.498 60.197 1.00 87.85 C \ ATOM 2364 C MET J 1 167.756 52.328 59.720 1.00 86.75 C \ ATOM 2365 O MET J 1 168.895 51.868 59.748 1.00 87.64 O \ ATOM 2366 CB MET J 1 166.571 51.466 61.722 1.00 90.26 C \ ATOM 2367 CG MET J 1 167.016 52.772 62.368 1.00 90.59 C \ ATOM 2368 SD MET J 1 166.984 52.712 64.165 1.00 94.32 S \ ATOM 2369 CE MET J 1 167.549 50.981 64.468 1.00 91.19 C \ ATOM 2370 N LYS J 2 167.481 53.558 59.295 1.00 83.48 N \ ATOM 2371 CA LYS J 2 168.526 54.464 58.829 1.00 79.99 C \ ATOM 2372 C LYS J 2 169.325 55.049 59.994 1.00 76.69 C \ ATOM 2373 O LYS J 2 168.761 55.553 60.973 1.00 77.90 O \ ATOM 2374 CB LYS J 2 167.918 55.607 58.009 1.00 81.46 C \ ATOM 2375 CG LYS J 2 167.471 55.203 56.614 1.00 86.43 C \ ATOM 2376 CD LYS J 2 168.659 54.828 55.729 1.00 89.96 C \ ATOM 2377 CE LYS J 2 168.233 54.585 54.275 1.00 91.27 C \ ATOM 2378 NZ LYS J 2 169.392 54.354 53.345 1.00 92.06 N \ ATOM 2379 N LYS J 3 170.647 54.971 59.883 1.00 72.13 N \ ATOM 2380 CA LYS J 3 171.530 55.501 60.909 1.00 68.01 C \ ATOM 2381 C LYS J 3 172.522 56.517 60.313 1.00 63.46 C \ ATOM 2382 O LYS J 3 172.738 56.582 59.095 1.00 61.38 O \ ATOM 2383 CB LYS J 3 172.234 54.334 61.632 1.00 68.93 C \ ATOM 2384 CG LYS J 3 171.243 53.371 62.346 1.00 70.59 C \ ATOM 2385 CD LYS J 3 171.901 52.077 62.852 1.00 70.57 C \ ATOM 2386 CE LYS J 3 170.868 51.158 63.506 1.00 70.86 C \ ATOM 2387 NZ LYS J 3 171.442 49.870 63.987 1.00 71.21 N \ ATOM 2388 N ARG J 4 173.094 57.321 61.199 1.00 60.38 N \ ATOM 2389 CA ARG J 4 174.032 58.380 60.846 1.00 60.67 C \ ATOM 2390 C ARG J 4 175.460 58.187 61.334 1.00 59.63 C \ ATOM 2391 O ARG J 4 175.698 57.503 62.325 1.00 62.09 O \ ATOM 2392 CB ARG J 4 173.556 59.675 61.459 1.00 61.27 C \ ATOM 2393 CG ARG J 4 172.320 60.202 60.862 1.00 65.80 C \ ATOM 2394 CD ARG J 4 172.638 60.853 59.546 1.00 70.81 C \ ATOM 2395 NE ARG J 4 171.947 62.133 59.438 1.00 76.79 N \ ATOM 2396 CZ ARG J 4 170.621 62.275 59.441 1.00 79.22 C \ ATOM 2397 NH1 ARG J 4 169.829 61.212 59.542 1.00 80.43 N \ ATOM 2398 NH2 ARG J 4 170.083 63.487 59.354 1.00 80.13 N \ ATOM 2399 N LEU J 5 176.411 58.824 60.656 1.00 54.60 N \ ATOM 2400 CA LEU J 5 177.808 58.763 61.074 1.00 51.92 C \ ATOM 2401 C LEU J 5 178.584 59.849 60.362 1.00 51.75 C \ ATOM 2402 O LEU J 5 178.229 60.255 59.251 1.00 52.90 O \ ATOM 2403 CB LEU J 5 178.456 57.428 60.738 1.00 48.68 C \ ATOM 2404 CG LEU J 5 178.988 57.449 59.307 1.00 45.86 C \ ATOM 2405 CD1 LEU J 5 179.863 56.236 58.995 1.00 39.19 C \ ATOM 2406 CD2 LEU J 5 177.779 57.518 58.392 1.00 49.44 C \ ATOM 2407 N THR J 6 179.658 60.293 61.006 1.00 49.04 N \ ATOM 2408 CA THR J 6 180.519 61.345 60.469 1.00 48.94 C \ ATOM 2409 C THR J 6 181.890 60.812 60.047 1.00 47.36 C \ ATOM 2410 O THR J 6 182.564 60.109 60.801 1.00 46.73 O \ ATOM 2411 CB THR J 6 180.740 62.460 61.502 1.00 52.00 C \ ATOM 2412 OG1 THR J 6 179.477 62.865 62.045 1.00 58.45 O \ ATOM 2413 CG2 THR J 6 181.431 63.665 60.855 1.00 51.68 C \ ATOM 2414 N ILE J 7 182.319 61.185 58.850 1.00 47.11 N \ ATOM 2415 CA ILE J 7 183.579 60.698 58.326 1.00 42.43 C \ ATOM 2416 C ILE J 7 184.497 61.811 57.840 1.00 45.36 C \ ATOM 2417 O ILE J 7 184.126 62.998 57.830 1.00 48.86 O \ ATOM 2418 CB ILE J 7 183.307 59.791 57.149 1.00 39.63 C \ ATOM 2419 CG1 ILE J 7 182.595 60.602 56.070 1.00 33.11 C \ ATOM 2420 CG2 ILE J 7 182.384 58.656 57.558 1.00 33.39 C \ ATOM 2421 CD1 ILE J 7 182.531 59.908 54.757 1.00 36.90 C \ ATOM 2422 N THR J 8 185.697 61.419 57.425 1.00 46.87 N \ ATOM 2423 CA THR J 8 186.648 62.381 56.904 1.00 49.93 C \ ATOM 2424 C THR J 8 187.171 61.906 55.564 1.00 51.83 C \ ATOM 2425 O THR J 8 187.521 60.730 55.392 1.00 56.92 O \ ATOM 2426 CB THR J 8 187.843 62.561 57.818 1.00 48.23 C \ ATOM 2427 OG1 THR J 8 187.411 62.471 59.174 1.00 48.17 O \ ATOM 2428 CG2 THR J 8 188.488 63.929 57.576 1.00 48.91 C \ ATOM 2429 N LEU J 9 187.244 62.833 54.619 1.00 52.00 N \ ATOM 2430 CA LEU J 9 187.725 62.503 53.296 1.00 52.09 C \ ATOM 2431 C LEU J 9 188.750 63.495 52.815 1.00 52.81 C \ ATOM 2432 O LEU J 9 188.761 64.658 53.217 1.00 53.94 O \ ATOM 2433 CB LEU J 9 186.562 62.477 52.311 1.00 52.62 C \ ATOM 2434 CG LEU J 9 185.312 61.732 52.770 1.00 48.21 C \ ATOM 2435 CD1 LEU J 9 184.298 61.759 51.642 1.00 46.07 C \ ATOM 2436 CD2 LEU J 9 185.660 60.306 53.144 1.00 47.85 C \ ATOM 2437 N SER J 10 189.612 63.029 51.938 1.00 53.03 N \ ATOM 2438 CA SER J 10 190.612 63.902 51.402 1.00 51.74 C \ ATOM 2439 C SER J 10 189.904 64.814 50.405 1.00 50.73 C \ ATOM 2440 O SER J 10 189.034 64.368 49.657 1.00 51.17 O \ ATOM 2441 CB SER J 10 191.697 63.047 50.765 1.00 51.03 C \ ATOM 2442 OG SER J 10 192.248 62.175 51.750 1.00 47.60 O \ ATOM 2443 N GLU J 11 190.244 66.101 50.444 1.00 52.70 N \ ATOM 2444 CA GLU J 11 189.640 67.088 49.552 1.00 54.71 C \ ATOM 2445 C GLU J 11 189.411 66.467 48.182 1.00 51.07 C \ ATOM 2446 O GLU J 11 188.295 66.469 47.667 1.00 49.71 O \ ATOM 2447 CB GLU J 11 190.552 68.324 49.420 1.00 62.98 C \ ATOM 2448 CG GLU J 11 190.106 69.353 48.360 1.00 73.54 C \ ATOM 2449 CD GLU J 11 189.243 70.489 48.922 1.00 81.93 C \ ATOM 2450 OE1 GLU J 11 189.124 70.613 50.168 1.00 84.62 O \ ATOM 2451 OE2 GLU J 11 188.692 71.269 48.109 1.00 86.18 O \ ATOM 2452 N SER J 12 190.480 65.931 47.607 1.00 46.54 N \ ATOM 2453 CA SER J 12 190.406 65.302 46.303 1.00 46.98 C \ ATOM 2454 C SER J 12 189.226 64.346 46.227 1.00 46.84 C \ ATOM 2455 O SER J 12 188.319 64.534 45.415 1.00 46.11 O \ ATOM 2456 CB SER J 12 191.695 64.536 46.012 1.00 47.30 C \ ATOM 2457 OG SER J 12 191.916 63.503 46.960 1.00 45.73 O \ ATOM 2458 N VAL J 13 189.232 63.329 47.085 1.00 47.03 N \ ATOM 2459 CA VAL J 13 188.166 62.341 47.086 1.00 47.93 C \ ATOM 2460 C VAL J 13 186.827 63.004 47.316 1.00 50.18 C \ ATOM 2461 O VAL J 13 185.857 62.740 46.621 1.00 51.24 O \ ATOM 2462 CB VAL J 13 188.362 61.287 48.175 1.00 44.85 C \ ATOM 2463 CG1 VAL J 13 187.475 60.122 47.884 1.00 45.90 C \ ATOM 2464 CG2 VAL J 13 189.794 60.849 48.234 1.00 42.09 C \ ATOM 2465 N LEU J 14 186.772 63.862 48.315 1.00 53.03 N \ ATOM 2466 CA LEU J 14 185.540 64.556 48.608 1.00 54.91 C \ ATOM 2467 C LEU J 14 185.053 65.224 47.347 1.00 55.15 C \ ATOM 2468 O LEU J 14 183.915 65.039 46.938 1.00 54.35 O \ ATOM 2469 CB LEU J 14 185.776 65.611 49.669 1.00 57.34 C \ ATOM 2470 CG LEU J 14 184.662 66.655 49.742 1.00 58.51 C \ ATOM 2471 CD1 LEU J 14 183.286 65.952 49.781 1.00 58.06 C \ ATOM 2472 CD2 LEU J 14 184.900 67.552 50.976 1.00 55.62 C \ ATOM 2473 N GLU J 15 185.920 66.020 46.740 1.00 57.37 N \ ATOM 2474 CA GLU J 15 185.562 66.698 45.515 1.00 61.39 C \ ATOM 2475 C GLU J 15 185.006 65.707 44.524 1.00 60.21 C \ ATOM 2476 O GLU J 15 183.849 65.805 44.133 1.00 59.45 O \ ATOM 2477 CB GLU J 15 186.775 67.388 44.928 1.00 63.50 C \ ATOM 2478 CG GLU J 15 187.189 68.589 45.749 1.00 72.82 C \ ATOM 2479 CD GLU J 15 188.268 69.415 45.082 1.00 77.29 C \ ATOM 2480 OE1 GLU J 15 189.390 68.896 44.895 1.00 78.36 O \ ATOM 2481 OE2 GLU J 15 187.990 70.584 44.746 1.00 78.85 O \ ATOM 2482 N ASN J 16 185.822 64.746 44.120 1.00 60.24 N \ ATOM 2483 CA ASN J 16 185.348 63.741 43.184 1.00 58.82 C \ ATOM 2484 C ASN J 16 183.961 63.239 43.589 1.00 57.17 C \ ATOM 2485 O ASN J 16 183.048 63.137 42.778 1.00 58.30 O \ ATOM 2486 CB ASN J 16 186.301 62.563 43.167 1.00 59.50 C \ ATOM 2487 CG ASN J 16 185.640 61.300 42.655 1.00 60.97 C \ ATOM 2488 OD1 ASN J 16 185.394 61.149 41.457 1.00 62.53 O \ ATOM 2489 ND2 ASN J 16 185.333 60.389 43.570 1.00 62.59 N \ ATOM 2490 N LEU J 17 183.814 62.900 44.855 1.00 55.59 N \ ATOM 2491 CA LEU J 17 182.538 62.436 45.342 1.00 50.75 C \ ATOM 2492 C LEU J 17 181.488 63.429 44.897 1.00 51.68 C \ ATOM 2493 O LEU J 17 180.622 63.104 44.098 1.00 52.66 O \ ATOM 2494 CB LEU J 17 182.584 62.360 46.856 1.00 44.55 C \ ATOM 2495 CG LEU J 17 181.285 62.275 47.639 1.00 39.85 C \ ATOM 2496 CD1 LEU J 17 180.457 61.081 47.229 1.00 36.26 C \ ATOM 2497 CD2 LEU J 17 181.654 62.191 49.105 1.00 41.73 C \ ATOM 2498 N GLU J 18 181.585 64.647 45.413 1.00 54.81 N \ ATOM 2499 CA GLU J 18 180.645 65.698 45.072 1.00 56.00 C \ ATOM 2500 C GLU J 18 180.335 65.654 43.594 1.00 56.21 C \ ATOM 2501 O GLU J 18 179.184 65.750 43.187 1.00 56.93 O \ ATOM 2502 CB GLU J 18 181.228 67.066 45.405 1.00 59.38 C \ ATOM 2503 CG GLU J 18 181.428 67.351 46.878 1.00 69.65 C \ ATOM 2504 CD GLU J 18 181.694 68.838 47.140 1.00 75.61 C \ ATOM 2505 OE1 GLU J 18 182.725 69.366 46.654 1.00 74.45 O \ ATOM 2506 OE2 GLU J 18 180.867 69.484 47.830 1.00 76.65 O \ ATOM 2507 N LYS J 19 181.379 65.494 42.795 1.00 58.96 N \ ATOM 2508 CA LYS J 19 181.236 65.467 41.349 1.00 56.92 C \ ATOM 2509 C LYS J 19 180.369 64.315 40.883 1.00 55.70 C \ ATOM 2510 O LYS J 19 179.329 64.543 40.270 1.00 53.60 O \ ATOM 2511 CB LYS J 19 182.620 65.420 40.704 1.00 55.80 C \ ATOM 2512 CG LYS J 19 183.425 66.739 40.865 1.00 62.55 C \ ATOM 2513 CD LYS J 19 183.202 67.471 42.238 1.00 66.67 C \ ATOM 2514 CE LYS J 19 184.020 68.781 42.398 1.00 67.05 C \ ATOM 2515 NZ LYS J 19 183.673 69.573 43.630 1.00 66.94 N \ ATOM 2516 N MET J 20 180.773 63.086 41.191 1.00 56.18 N \ ATOM 2517 CA MET J 20 180.004 61.905 40.793 1.00 55.91 C \ ATOM 2518 C MET J 20 178.549 61.928 41.258 1.00 55.90 C \ ATOM 2519 O MET J 20 177.647 61.484 40.541 1.00 55.92 O \ ATOM 2520 CB MET J 20 180.666 60.652 41.319 1.00 55.88 C \ ATOM 2521 CG MET J 20 181.968 60.338 40.658 1.00 54.76 C \ ATOM 2522 SD MET J 20 182.364 58.642 41.059 1.00 53.69 S \ ATOM 2523 CE MET J 20 182.642 58.787 42.855 1.00 54.22 C \ ATOM 2524 N ALA J 21 178.332 62.427 42.469 1.00 53.99 N \ ATOM 2525 CA ALA J 21 176.990 62.544 43.012 1.00 54.20 C \ ATOM 2526 C ALA J 21 176.220 63.432 42.060 1.00 51.88 C \ ATOM 2527 O ALA J 21 175.196 63.030 41.522 1.00 46.18 O \ ATOM 2528 CB ALA J 21 177.037 63.182 44.375 1.00 54.42 C \ ATOM 2529 N ARG J 22 176.732 64.644 41.863 1.00 54.74 N \ ATOM 2530 CA ARG J 22 176.140 65.638 40.961 1.00 58.92 C \ ATOM 2531 C ARG J 22 175.678 65.032 39.657 1.00 59.51 C \ ATOM 2532 O ARG J 22 174.511 65.121 39.303 1.00 62.48 O \ ATOM 2533 CB ARG J 22 177.158 66.711 40.570 1.00 63.44 C \ ATOM 2534 CG ARG J 22 177.520 67.733 41.622 1.00 71.98 C \ ATOM 2535 CD ARG J 22 176.589 68.955 41.605 1.00 77.96 C \ ATOM 2536 NE ARG J 22 177.072 70.028 42.484 1.00 85.19 N \ ATOM 2537 CZ ARG J 22 177.294 69.904 43.798 1.00 88.61 C \ ATOM 2538 NH1 ARG J 22 177.075 68.745 44.421 1.00 88.76 N \ ATOM 2539 NH2 ARG J 22 177.738 70.948 44.498 1.00 90.02 N \ ATOM 2540 N GLU J 23 176.630 64.451 38.933 1.00 62.03 N \ ATOM 2541 CA GLU J 23 176.378 63.847 37.634 1.00 62.47 C \ ATOM 2542 C GLU J 23 175.324 62.760 37.675 1.00 59.17 C \ ATOM 2543 O GLU J 23 174.476 62.695 36.794 1.00 57.60 O \ ATOM 2544 CB GLU J 23 177.659 63.241 37.067 1.00 67.19 C \ ATOM 2545 CG GLU J 23 178.899 64.116 37.210 1.00 78.23 C \ ATOM 2546 CD GLU J 23 180.221 63.337 37.003 1.00 83.02 C \ ATOM 2547 OE1 GLU J 23 180.449 62.817 35.881 1.00 82.38 O \ ATOM 2548 OE2 GLU J 23 181.031 63.243 37.967 1.00 83.99 O \ ATOM 2549 N MET J 24 175.372 61.909 38.694 1.00 58.28 N \ ATOM 2550 CA MET J 24 174.427 60.809 38.817 1.00 54.95 C \ ATOM 2551 C MET J 24 173.121 61.142 39.538 1.00 52.84 C \ ATOM 2552 O MET J 24 172.282 60.269 39.747 1.00 53.25 O \ ATOM 2553 CB MET J 24 175.145 59.656 39.484 1.00 56.20 C \ ATOM 2554 CG MET J 24 176.429 59.336 38.760 1.00 58.60 C \ ATOM 2555 SD MET J 24 177.240 57.949 39.477 1.00 65.30 S \ ATOM 2556 CE MET J 24 176.233 56.626 38.873 1.00 59.65 C \ ATOM 2557 N GLY J 25 172.947 62.410 39.894 1.00 50.86 N \ ATOM 2558 CA GLY J 25 171.735 62.843 40.567 1.00 49.53 C \ ATOM 2559 C GLY J 25 171.490 62.205 41.926 1.00 51.99 C \ ATOM 2560 O GLY J 25 170.337 62.016 42.330 1.00 53.33 O \ ATOM 2561 N LEU J 26 172.567 61.888 42.643 1.00 50.87 N \ ATOM 2562 CA LEU J 26 172.474 61.250 43.959 1.00 48.03 C \ ATOM 2563 C LEU J 26 173.017 62.089 45.082 1.00 47.20 C \ ATOM 2564 O LEU J 26 173.806 62.999 44.869 1.00 47.73 O \ ATOM 2565 CB LEU J 26 173.264 59.951 43.986 1.00 48.86 C \ ATOM 2566 CG LEU J 26 172.899 58.934 42.933 1.00 51.30 C \ ATOM 2567 CD1 LEU J 26 173.678 57.672 43.169 1.00 54.10 C \ ATOM 2568 CD2 LEU J 26 171.424 58.667 43.017 1.00 47.31 C \ ATOM 2569 N SER J 27 172.611 61.736 46.293 1.00 46.71 N \ ATOM 2570 CA SER J 27 173.070 62.420 47.488 1.00 44.71 C \ ATOM 2571 C SER J 27 174.454 61.871 47.715 1.00 44.39 C \ ATOM 2572 O SER J 27 174.785 60.813 47.181 1.00 45.01 O \ ATOM 2573 CB SER J 27 172.227 62.032 48.694 1.00 44.35 C \ ATOM 2574 OG SER J 27 172.778 60.886 49.329 1.00 52.79 O \ ATOM 2575 N LYS J 28 175.262 62.554 48.517 1.00 44.08 N \ ATOM 2576 CA LYS J 28 176.598 62.036 48.769 1.00 43.82 C \ ATOM 2577 C LYS J 28 176.409 60.698 49.445 1.00 43.16 C \ ATOM 2578 O LYS J 28 177.079 59.721 49.119 1.00 45.09 O \ ATOM 2579 CB LYS J 28 177.404 62.958 49.688 1.00 42.83 C \ ATOM 2580 CG LYS J 28 177.775 64.299 49.086 1.00 43.62 C \ ATOM 2581 CD LYS J 28 178.989 64.861 49.783 1.00 43.75 C \ ATOM 2582 CE LYS J 28 179.123 66.330 49.505 1.00 46.54 C \ ATOM 2583 NZ LYS J 28 177.871 67.003 49.925 1.00 44.13 N \ ATOM 2584 N SER J 29 175.463 60.669 50.375 1.00 44.21 N \ ATOM 2585 CA SER J 29 175.158 59.468 51.132 1.00 41.88 C \ ATOM 2586 C SER J 29 174.764 58.351 50.195 1.00 38.40 C \ ATOM 2587 O SER J 29 175.225 57.220 50.328 1.00 37.88 O \ ATOM 2588 CB SER J 29 174.029 59.756 52.105 1.00 42.19 C \ ATOM 2589 OG SER J 29 174.346 60.908 52.864 1.00 43.38 O \ ATOM 2590 N ALA J 30 173.911 58.677 49.239 1.00 37.55 N \ ATOM 2591 CA ALA J 30 173.474 57.677 48.289 1.00 42.15 C \ ATOM 2592 C ALA J 30 174.675 57.225 47.472 1.00 39.66 C \ ATOM 2593 O ALA J 30 174.940 56.034 47.339 1.00 33.91 O \ ATOM 2594 CB ALA J 30 172.400 58.253 47.373 1.00 39.76 C \ ATOM 2595 N MET J 31 175.408 58.189 46.931 1.00 42.98 N \ ATOM 2596 CA MET J 31 176.569 57.894 46.106 1.00 44.58 C \ ATOM 2597 C MET J 31 177.463 56.881 46.795 1.00 45.17 C \ ATOM 2598 O MET J 31 177.844 55.864 46.213 1.00 44.09 O \ ATOM 2599 CB MET J 31 177.352 59.171 45.849 1.00 46.53 C \ ATOM 2600 CG MET J 31 178.361 59.050 44.735 1.00 49.10 C \ ATOM 2601 SD MET J 31 177.602 58.665 43.150 1.00 57.49 S \ ATOM 2602 CE MET J 31 178.244 57.019 42.896 1.00 51.31 C \ ATOM 2603 N ILE J 32 177.793 57.175 48.047 1.00 44.43 N \ ATOM 2604 CA ILE J 32 178.638 56.307 48.856 1.00 42.52 C \ ATOM 2605 C ILE J 32 178.070 54.902 48.970 1.00 45.15 C \ ATOM 2606 O ILE J 32 178.803 53.927 48.764 1.00 41.20 O \ ATOM 2607 CB ILE J 32 178.805 56.857 50.272 1.00 40.19 C \ ATOM 2608 CG1 ILE J 32 179.701 58.083 50.231 1.00 40.78 C \ ATOM 2609 CG2 ILE J 32 179.374 55.791 51.183 1.00 38.26 C \ ATOM 2610 CD1 ILE J 32 179.723 58.868 51.511 1.00 36.43 C \ ATOM 2611 N SER J 33 176.783 54.789 49.317 1.00 48.24 N \ ATOM 2612 CA SER J 33 176.157 53.472 49.445 1.00 50.86 C \ ATOM 2613 C SER J 33 176.335 52.684 48.156 1.00 50.01 C \ ATOM 2614 O SER J 33 176.711 51.508 48.181 1.00 49.76 O \ ATOM 2615 CB SER J 33 174.664 53.586 49.774 1.00 51.36 C \ ATOM 2616 OG SER J 33 174.450 53.947 51.135 1.00 61.69 O \ ATOM 2617 N VAL J 34 176.069 53.344 47.033 1.00 46.69 N \ ATOM 2618 CA VAL J 34 176.208 52.732 45.719 1.00 44.56 C \ ATOM 2619 C VAL J 34 177.593 52.156 45.632 1.00 46.63 C \ ATOM 2620 O VAL J 34 177.785 50.969 45.377 1.00 46.35 O \ ATOM 2621 CB VAL J 34 176.130 53.763 44.614 1.00 42.29 C \ ATOM 2622 CG1 VAL J 34 176.299 53.080 43.285 1.00 42.79 C \ ATOM 2623 CG2 VAL J 34 174.826 54.532 44.699 1.00 42.88 C \ ATOM 2624 N ALA J 35 178.556 53.050 45.814 1.00 48.58 N \ ATOM 2625 CA ALA J 35 179.961 52.709 45.779 1.00 49.05 C \ ATOM 2626 C ALA J 35 180.177 51.480 46.636 1.00 49.23 C \ ATOM 2627 O ALA J 35 180.626 50.441 46.152 1.00 50.18 O \ ATOM 2628 CB ALA J 35 180.765 53.857 46.315 1.00 47.50 C \ ATOM 2629 N LEU J 36 179.843 51.614 47.915 1.00 48.63 N \ ATOM 2630 CA LEU J 36 179.986 50.526 48.869 1.00 50.96 C \ ATOM 2631 C LEU J 36 179.370 49.266 48.349 1.00 52.59 C \ ATOM 2632 O LEU J 36 180.034 48.249 48.192 1.00 52.41 O \ ATOM 2633 CB LEU J 36 179.333 50.895 50.188 1.00 49.84 C \ ATOM 2634 CG LEU J 36 180.242 51.827 50.979 1.00 49.61 C \ ATOM 2635 CD1 LEU J 36 179.494 52.526 52.090 1.00 53.15 C \ ATOM 2636 CD2 LEU J 36 181.385 51.005 51.538 1.00 47.71 C \ ATOM 2637 N GLU J 37 178.082 49.330 48.085 1.00 55.20 N \ ATOM 2638 CA GLU J 37 177.416 48.168 47.561 1.00 60.12 C \ ATOM 2639 C GLU J 37 178.170 47.630 46.351 1.00 61.88 C \ ATOM 2640 O GLU J 37 178.603 46.471 46.334 1.00 61.23 O \ ATOM 2641 CB GLU J 37 175.989 48.526 47.191 1.00 59.38 C \ ATOM 2642 CG GLU J 37 175.020 48.152 48.277 1.00 64.64 C \ ATOM 2643 CD GLU J 37 174.971 46.643 48.486 1.00 68.49 C \ ATOM 2644 OE1 GLU J 37 176.049 46.017 48.635 1.00 65.84 O \ ATOM 2645 OE2 GLU J 37 173.850 46.078 48.499 1.00 73.79 O \ ATOM 2646 N ASN J 38 178.351 48.470 45.341 1.00 64.35 N \ ATOM 2647 CA ASN J 38 179.048 47.994 44.173 1.00 64.72 C \ ATOM 2648 C ASN J 38 180.381 47.397 44.570 1.00 65.54 C \ ATOM 2649 O ASN J 38 180.722 46.307 44.128 1.00 68.53 O \ ATOM 2650 CB ASN J 38 179.238 49.105 43.148 1.00 66.76 C \ ATOM 2651 CG ASN J 38 179.836 48.586 41.849 1.00 67.83 C \ ATOM 2652 OD1 ASN J 38 181.057 48.466 41.718 1.00 69.92 O \ ATOM 2653 ND2 ASN J 38 178.974 48.248 40.888 1.00 68.13 N \ ATOM 2654 N TYR J 39 181.129 48.083 45.423 1.00 66.07 N \ ATOM 2655 CA TYR J 39 182.422 47.554 45.851 1.00 66.08 C \ ATOM 2656 C TYR J 39 182.289 46.116 46.318 1.00 68.14 C \ ATOM 2657 O TYR J 39 183.026 45.234 45.883 1.00 65.65 O \ ATOM 2658 CB TYR J 39 182.987 48.358 47.008 1.00 63.11 C \ ATOM 2659 CG TYR J 39 184.364 47.888 47.433 1.00 62.85 C \ ATOM 2660 CD1 TYR J 39 185.460 48.034 46.575 1.00 61.80 C \ ATOM 2661 CD2 TYR J 39 184.589 47.331 48.701 1.00 61.98 C \ ATOM 2662 CE1 TYR J 39 186.752 47.650 46.959 1.00 61.15 C \ ATOM 2663 CE2 TYR J 39 185.884 46.941 49.100 1.00 60.42 C \ ATOM 2664 CZ TYR J 39 186.957 47.111 48.215 1.00 63.33 C \ ATOM 2665 OH TYR J 39 188.237 46.772 48.571 1.00 66.34 O \ ATOM 2666 N LYS J 40 181.346 45.902 47.229 1.00 73.28 N \ ATOM 2667 CA LYS J 40 181.090 44.586 47.788 1.00 76.26 C \ ATOM 2668 C LYS J 40 180.844 43.565 46.684 1.00 78.40 C \ ATOM 2669 O LYS J 40 181.570 42.581 46.597 1.00 79.85 O \ ATOM 2670 CB LYS J 40 179.883 44.637 48.745 1.00 76.33 C \ ATOM 2671 CG LYS J 40 179.505 43.304 49.420 1.00 76.02 C \ ATOM 2672 CD LYS J 40 178.937 42.299 48.413 1.00 77.90 C \ ATOM 2673 CE LYS J 40 178.978 40.854 48.908 1.00 76.96 C \ ATOM 2674 NZ LYS J 40 178.944 39.905 47.745 1.00 73.94 N \ ATOM 2675 N LYS J 41 179.815 43.783 45.857 1.00 80.16 N \ ATOM 2676 CA LYS J 41 179.504 42.852 44.766 1.00 83.00 C \ ATOM 2677 C LYS J 41 180.821 42.469 44.123 1.00 85.13 C \ ATOM 2678 O LYS J 41 180.957 41.391 43.547 1.00 86.34 O \ ATOM 2679 CB LYS J 41 178.605 43.503 43.700 1.00 82.34 C \ ATOM 2680 CG LYS J 41 179.215 43.501 42.277 1.00 81.13 C \ ATOM 2681 CD LYS J 41 178.286 42.912 41.198 1.00 82.55 C \ ATOM 2682 CE LYS J 41 178.092 41.388 41.321 1.00 82.98 C \ ATOM 2683 NZ LYS J 41 179.300 40.549 41.027 1.00 81.73 N \ ATOM 2684 N GLY J 42 181.778 43.383 44.235 1.00 86.85 N \ ATOM 2685 CA GLY J 42 183.101 43.184 43.688 1.00 89.86 C \ ATOM 2686 C GLY J 42 183.594 41.752 43.674 1.00 91.47 C \ ATOM 2687 O GLY J 42 183.837 41.205 42.602 1.00 91.70 O \ ATOM 2688 N GLN J 43 183.741 41.139 44.847 1.00 94.25 N \ ATOM 2689 CA GLN J 43 184.225 39.760 44.923 1.00 96.54 C \ ATOM 2690 C GLN J 43 183.132 38.714 44.716 1.00 97.22 C \ ATOM 2691 O GLN J 43 181.947 38.966 44.952 1.00 98.28 O \ ATOM 2692 CB GLN J 43 184.910 39.495 46.266 1.00 95.62 C \ ATOM 2693 CG GLN J 43 185.733 40.649 46.761 1.00 95.33 C \ ATOM 2694 CD GLN J 43 184.872 41.741 47.348 1.00 95.41 C \ ATOM 2695 OE1 GLN J 43 185.347 42.839 47.617 1.00 95.93 O \ ATOM 2696 NE2 GLN J 43 183.597 41.440 47.561 1.00 92.53 N \ ATOM 2697 N GLU J 44 183.555 37.533 44.273 1.00 98.39 N \ ATOM 2698 CA GLU J 44 182.659 36.414 44.023 1.00101.26 C \ ATOM 2699 C GLU J 44 181.620 36.775 42.964 1.00101.21 C \ ATOM 2700 O GLU J 44 181.673 37.913 42.438 1.00100.28 O \ ATOM 2701 CB GLU J 44 181.948 35.995 45.317 1.00103.70 C \ ATOM 2702 CG GLU J 44 182.774 36.128 46.603 1.00106.69 C \ ATOM 2703 CD GLU J 44 184.130 35.436 46.535 1.00109.32 C \ ATOM 2704 OE1 GLU J 44 185.048 35.995 45.894 1.00110.57 O \ ATOM 2705 OE2 GLU J 44 184.277 34.336 47.119 1.00109.30 O \ TER 2706 GLU J 44 \ TER 3042 GLN K 43 \ TER 3387 GLU L 44 \ TER 3776 DT U 221 \ TER 4194 DT V 221 \ TER 4638 DC W 222 \ TER 5076 DT X 222 \ TER 5497 DC Y 222 \ TER 5928 DT Z 221 \ HETATM 5971 O HOH J2001 170.318 56.123 51.309 1.00 21.38 O \ HETATM 5972 O HOH J2002 188.914 74.035 50.472 1.00 61.38 O \ HETATM 5973 O HOH J2003 170.874 58.081 37.810 1.00 50.72 O \ HETATM 5974 O HOH J2004 182.770 39.779 40.422 1.00 60.02 O \ HETATM 5975 O HOH J2005 187.664 35.764 48.294 1.00 52.39 O \ MASTER 443 0 0 20 10 0 0 6 6013 16 0 52 \ END \ """, "1ea4chainJ") cmd.hide("all") cmd.color('grey70', "1ea4chainJ") cmd.show('cartoon', "1ea4chainJ") cmd.center("1ea4chainJ", state=0, origin=1) cmd.zoom("1ea4chainJ", animate=-1) cmd.select("e1ea4J1", "c. J & i. 1-43") cmd.color("red", "e1ea4J1") cmd.disable("e1ea4J1")