cmd.read_pdbstr("""\ HEADER SIGNALING PROTEIN 13-JUL-05 2BWE \ TITLE THE CRYSTAL STRUCTURE OF THE COMPLEX BETWEEN THE UBA AND UBL DOMAINS \ TITLE 2 OF DSK2 \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: DSK2; \ COMPND 3 CHAIN: A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, Q, R; \ COMPND 4 FRAGMENT: UBA DOMAIN, RESIDUES 324-327; \ COMPND 5 ENGINEERED: YES; \ COMPND 6 OTHER_DETAILS: UBA DOMAIN OF DSK2, RESIDUES 326-373 OF THE INTACT \ COMPND 7 PROTEIN; \ COMPND 8 MOL_ID: 2; \ COMPND 9 MOLECULE: DSK2; \ COMPND 10 CHAIN: S, T, U; \ COMPND 11 FRAGMENT: UBL DOMAIN, RESIDUES 1-75; \ COMPND 12 ENGINEERED: YES; \ COMPND 13 OTHER_DETAILS: UBL DOMAIN OF DSK2, RESIDUES 1-75 OF THE INTACT \ COMPND 14 PROTEIN \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 3 ORGANISM_TAXID: 4932; \ SOURCE 4 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 5 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 6 EXPRESSION_SYSTEM_STRAIN: B834(DE3)PLYSS; \ SOURCE 7 EXPRESSION_SYSTEM_PLASMID: PGEX-KG; \ SOURCE 8 MOL_ID: 2; \ SOURCE 9 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 10 ORGANISM_TAXID: 4932; \ SOURCE 11 EXPRESSION_SYSTEM: ESCHERICHIA COLI; \ SOURCE 12 EXPRESSION_SYSTEM_TAXID: 562; \ SOURCE 13 EXPRESSION_SYSTEM_STRAIN: B834(DE3)PLYSS; \ SOURCE 14 EXPRESSION_SYSTEM_PLASMID: PGEX-KG \ KEYWDS UBIQUITIN, UBIQUITIN-LIKE PROTEINS, PROTEIN/PROTEIN INTERACTION, \ KEYWDS 2 SIGNALING PROTEIN \ EXPDTA X-RAY DIFFRACTION \ AUTHOR E.D.LOWE,N.HASAN,J.-F.TREMPE,L.FONSO,M.E.M.NOBLE,J.A.ENDICOTT, \ AUTHOR 2 L.N.JOHNSON,N.R.BROWN \ REVDAT 5 13-DEC-23 2BWE 1 REMARK \ REVDAT 4 15-MAY-19 2BWE 1 REMARK ATOM \ REVDAT 3 01-APR-15 2BWE 1 AUTHOR REMARK VERSN FORMUL \ REVDAT 2 24-FEB-09 2BWE 1 VERSN \ REVDAT 1 25-JAN-06 2BWE 0 \ JRNL AUTH E.D.LOWE,N.HASAN,J.-F.TREMPE,L.FONSO,M.E.M.NOBLE, \ JRNL AUTH 2 J.A.ENDICOTT,L.N.JOHNSON,N.R.BROWN \ JRNL TITL STRUCTURES OF THE DSK2 UBL AND UBA DOMAINS AND THEIR \ JRNL TITL 2 COMPLEX. \ JRNL REF ACTA CRYSTALLOGR.,SECT.D V. 62 177 2006 \ JRNL REFN ISSN 0907-4449 \ JRNL PMID 16421449 \ JRNL DOI 10.1107/S0907444905037777 \ REMARK 2 \ REMARK 2 RESOLUTION. 3.10 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 PROGRAM : REFMAC 5.2.0005 \ REMARK 3 AUTHORS : MURSHUDOV,SKUBAK,LEBEDEV,PANNU,STEINER, \ REMARK 3 : NICHOLLS,WINN,LONG,VAGIN \ REMARK 3 \ REMARK 3 REFINEMENT TARGET : MAXIMUM LIKELIHOOD \ REMARK 3 \ REMARK 3 DATA USED IN REFINEMENT. \ REMARK 3 RESOLUTION RANGE HIGH (ANGSTROMS) : 3.10 \ REMARK 3 RESOLUTION RANGE LOW (ANGSTROMS) : 136.08 \ REMARK 3 DATA CUTOFF (SIGMA(F)) : NULL \ REMARK 3 COMPLETENESS FOR RANGE (%) : 98.5 \ REMARK 3 NUMBER OF REFLECTIONS : 31934 \ REMARK 3 \ REMARK 3 FIT TO DATA USED IN REFINEMENT. \ REMARK 3 CROSS-VALIDATION METHOD : THROUGHOUT \ REMARK 3 FREE R VALUE TEST SET SELECTION : RANDOM \ REMARK 3 R VALUE (WORKING + TEST SET) : 0.241 \ REMARK 3 R VALUE (WORKING SET) : 0.239 \ REMARK 3 FREE R VALUE : 0.267 \ REMARK 3 FREE R VALUE TEST SET SIZE (%) : 5.100 \ REMARK 3 FREE R VALUE TEST SET COUNT : 1707 \ REMARK 3 \ REMARK 3 FIT IN THE HIGHEST RESOLUTION BIN. \ REMARK 3 TOTAL NUMBER OF BINS USED : 20 \ REMARK 3 BIN RESOLUTION RANGE HIGH (A) : 3.10 \ REMARK 3 BIN RESOLUTION RANGE LOW (A) : 3.18 \ REMARK 3 REFLECTION IN BIN (WORKING SET) : 2343 \ REMARK 3 BIN COMPLETENESS (WORKING+TEST) (%) : NULL \ REMARK 3 BIN R VALUE (WORKING SET) : 0.3060 \ REMARK 3 BIN FREE R VALUE SET COUNT : 117 \ REMARK 3 BIN FREE R VALUE : 0.3560 \ REMARK 3 \ REMARK 3 NUMBER OF NON-HYDROGEN ATOMS USED IN REFINEMENT. \ REMARK 3 PROTEIN ATOMS : 8306 \ REMARK 3 NUCLEIC ACID ATOMS : 0 \ REMARK 3 HETEROGEN ATOMS : 0 \ REMARK 3 SOLVENT ATOMS : 101 \ REMARK 3 \ REMARK 3 B VALUES. \ REMARK 3 FROM WILSON PLOT (A**2) : NULL \ REMARK 3 MEAN B VALUE (OVERALL, A**2) : 82.51 \ REMARK 3 OVERALL ANISOTROPIC B VALUE. \ REMARK 3 B11 (A**2) : 3.25000 \ REMARK 3 B22 (A**2) : -0.32000 \ REMARK 3 B33 (A**2) : -2.31000 \ REMARK 3 B12 (A**2) : 0.00000 \ REMARK 3 B13 (A**2) : 1.12000 \ REMARK 3 B23 (A**2) : 0.00000 \ REMARK 3 \ REMARK 3 ESTIMATED OVERALL COORDINATE ERROR. \ REMARK 3 ESU BASED ON R VALUE (A): NULL \ REMARK 3 ESU BASED ON FREE R VALUE (A): 0.434 \ REMARK 3 ESU BASED ON MAXIMUM LIKELIHOOD (A): 0.372 \ REMARK 3 ESU FOR B VALUES BASED ON MAXIMUM LIKELIHOOD (A**2): 42.815 \ REMARK 3 \ REMARK 3 CORRELATION COEFFICIENTS. \ REMARK 3 CORRELATION COEFFICIENT FO-FC : 0.908 \ REMARK 3 CORRELATION COEFFICIENT FO-FC FREE : 0.893 \ REMARK 3 \ REMARK 3 RMS DEVIATIONS FROM IDEAL VALUES COUNT RMS WEIGHT \ REMARK 3 BOND LENGTHS REFINED ATOMS (A): 8430 ; 0.017 ; 0.021 \ REMARK 3 BOND LENGTHS OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 BOND ANGLES REFINED ATOMS (DEGREES): 11318 ; 1.538 ; 1.952 \ REMARK 3 BOND ANGLES OTHERS (DEGREES): NULL ; NULL ; NULL \ REMARK 3 TORSION ANGLES, PERIOD 1 (DEGREES): 1026 ; 8.039 ; 5.000 \ REMARK 3 TORSION ANGLES, PERIOD 2 (DEGREES): 515 ;42.110 ;24.175 \ REMARK 3 TORSION ANGLES, PERIOD 3 (DEGREES): 1433 ;24.146 ;15.000 \ REMARK 3 TORSION ANGLES, PERIOD 4 (DEGREES): 93 ;16.576 ;15.000 \ REMARK 3 CHIRAL-CENTER RESTRAINTS (A**3): 1169 ; 0.112 ; 0.200 \ REMARK 3 GENERAL PLANES REFINED ATOMS (A): 6714 ; 0.005 ; 0.020 \ REMARK 3 GENERAL PLANES OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED CONTACTS REFINED ATOMS (A): 3697 ; 0.242 ; 0.200 \ REMARK 3 NON-BONDED CONTACTS OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 NON-BONDED TORSION REFINED ATOMS (A): 5567 ; 0.320 ; 0.200 \ REMARK 3 NON-BONDED TORSION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 H-BOND (X...Y) REFINED ATOMS (A): 331 ; 0.162 ; 0.200 \ REMARK 3 H-BOND (X...Y) OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 POTENTIAL METAL-ION REFINED ATOMS (A): NULL ; NULL ; NULL \ REMARK 3 POTENTIAL METAL-ION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY VDW REFINED ATOMS (A): 57 ; 0.280 ; 0.200 \ REMARK 3 SYMMETRY VDW OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY H-BOND REFINED ATOMS (A): 5 ; 0.256 ; 0.200 \ REMARK 3 SYMMETRY H-BOND OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY METAL-ION REFINED ATOMS (A): NULL ; NULL ; NULL \ REMARK 3 SYMMETRY METAL-ION OTHERS (A): NULL ; NULL ; NULL \ REMARK 3 \ REMARK 3 ISOTROPIC THERMAL FACTOR RESTRAINTS. COUNT RMS WEIGHT \ REMARK 3 MAIN-CHAIN BOND REFINED ATOMS (A**2): 5196 ; 0.342 ; 1.500 \ REMARK 3 MAIN-CHAIN BOND OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 MAIN-CHAIN ANGLE REFINED ATOMS (A**2): 8106 ; 0.630 ; 2.000 \ REMARK 3 MAIN-CHAIN ANGLE OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SIDE-CHAIN BOND REFINED ATOMS (A**2): 3454 ; 1.081 ; 3.000 \ REMARK 3 SIDE-CHAIN BOND OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SIDE-CHAIN ANGLE REFINED ATOMS (A**2): 3212 ; 1.879 ; 4.500 \ REMARK 3 SIDE-CHAIN ANGLE OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 LONG RANGE B REFINED ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 LONG RANGE B OTHER ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 \ REMARK 3 ANISOTROPIC THERMAL FACTOR RESTRAINTS. COUNT RMS WEIGHT \ REMARK 3 RIGID-BOND RESTRAINTS (A**2): NULL ; NULL ; NULL \ REMARK 3 SPHERICITY; FREE ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 SPHERICITY; BONDED ATOMS (A**2): NULL ; NULL ; NULL \ REMARK 3 \ REMARK 3 NCS RESTRAINTS STATISTICS \ REMARK 3 NUMBER OF DIFFERENT NCS GROUPS : 2 \ REMARK 3 \ REMARK 3 NCS GROUP NUMBER : 1 \ REMARK 3 CHAIN NAMES : A B C D E F G H I J K L M N O \ REMARK 3 P Q R S T U \ REMARK 3 NUMBER OF COMPONENTS NCS GROUP : 1 \ REMARK 3 COMPONENT C SSSEQI TO C SSSEQI CODE \ REMARK 3 1 A 326 A 370 1 \ REMARK 3 1 B 326 B 370 1 \ REMARK 3 1 C 326 C 370 1 \ REMARK 3 1 D 326 D 370 1 \ REMARK 3 1 E 326 E 370 1 \ REMARK 3 1 F 326 F 370 1 \ REMARK 3 1 G 326 G 370 1 \ REMARK 3 1 H 326 H 370 1 \ REMARK 3 1 I 326 I 370 1 \ REMARK 3 1 J 326 J 370 1 \ REMARK 3 1 K 326 K 370 1 \ REMARK 3 1 L 326 L 370 1 \ REMARK 3 1 M 326 M 370 1 \ REMARK 3 1 N 326 N 370 1 \ REMARK 3 1 O 326 O 370 1 \ REMARK 3 1 P 326 P 370 1 \ REMARK 3 1 Q 326 Q 370 1 \ REMARK 3 1 R 326 R 370 1 \ REMARK 3 GROUP CHAIN COUNT RMS WEIGHT \ REMARK 3 TIGHT POSITIONAL 1 A (A): 339 ; .08 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 B (A): 339 ; .06 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 C (A): 339 ; .07 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 D (A): 339 ; .08 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 E (A): 339 ; .07 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 F (A): 339 ; .04 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 G (A): 339 ; .06 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 H (A): 339 ; .04 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 I (A): 339 ; .05 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 J (A): 339 ; .07 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 K (A): 339 ; .07 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 L (A): 339 ; .07 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 M (A): 339 ; .07 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 N (A): 339 ; .05 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 O (A): 339 ; .05 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 P (A): 339 ; .04 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 Q (A): 339 ; .06 ; .05 \ REMARK 3 TIGHT POSITIONAL 1 R (A): 339 ; .08 ; .05 \ REMARK 3 TIGHT THERMAL 1 A (A**2): 339 ; .10 ; .50 \ REMARK 3 TIGHT THERMAL 1 B (A**2): 339 ; .11 ; .50 \ REMARK 3 TIGHT THERMAL 1 C (A**2): 339 ; .13 ; .50 \ REMARK 3 TIGHT THERMAL 1 D (A**2): 339 ; .12 ; .50 \ REMARK 3 TIGHT THERMAL 1 E (A**2): 339 ; .09 ; .50 \ REMARK 3 TIGHT THERMAL 1 F (A**2): 339 ; .07 ; .50 \ REMARK 3 TIGHT THERMAL 1 G (A**2): 339 ; .10 ; .50 \ REMARK 3 TIGHT THERMAL 1 H (A**2): 339 ; .07 ; .50 \ REMARK 3 TIGHT THERMAL 1 I (A**2): 339 ; .07 ; .50 \ REMARK 3 TIGHT THERMAL 1 J (A**2): 339 ; .10 ; .50 \ REMARK 3 TIGHT THERMAL 1 K (A**2): 339 ; .13 ; .50 \ REMARK 3 TIGHT THERMAL 1 L (A**2): 339 ; .11 ; .50 \ REMARK 3 TIGHT THERMAL 1 M (A**2): 339 ; .11 ; .50 \ REMARK 3 TIGHT THERMAL 1 N (A**2): 339 ; .08 ; .50 \ REMARK 3 TIGHT THERMAL 1 O (A**2): 339 ; .08 ; .50 \ REMARK 3 TIGHT THERMAL 1 P (A**2): 339 ; .08 ; .50 \ REMARK 3 TIGHT THERMAL 1 Q (A**2): 339 ; .08 ; .50 \ REMARK 3 TIGHT THERMAL 1 R (A**2): 339 ; .11 ; .50 \ REMARK 3 \ REMARK 3 NCS GROUP NUMBER : 2 \ REMARK 3 CHAIN NAMES : S T U \ REMARK 3 NUMBER OF COMPONENTS NCS GROUP : 1 \ REMARK 3 COMPONENT C SSSEQI TO C SSSEQI CODE \ REMARK 3 1 S 3 S 74 1 \ REMARK 3 1 T 3 T 74 1 \ REMARK 3 1 U 3 U 74 1 \ REMARK 3 GROUP CHAIN COUNT RMS WEIGHT \ REMARK 3 TIGHT POSITIONAL 2 S (A): 567 ; .03 ; .05 \ REMARK 3 TIGHT POSITIONAL 2 T (A): 567 ; .03 ; .05 \ REMARK 3 TIGHT POSITIONAL 2 U (A): 567 ; .04 ; .05 \ REMARK 3 TIGHT THERMAL 2 S (A**2): 567 ; .05 ; .50 \ REMARK 3 TIGHT THERMAL 2 T (A**2): 567 ; .06 ; .50 \ REMARK 3 TIGHT THERMAL 2 U (A**2): 567 ; .07 ; .50 \ REMARK 3 \ REMARK 3 TLS DETAILS \ REMARK 3 NUMBER OF TLS GROUPS : NULL \ REMARK 3 \ REMARK 3 BULK SOLVENT MODELLING. \ REMARK 3 METHOD USED : MASK \ REMARK 3 PARAMETERS FOR MASK CALCULATION \ REMARK 3 VDW PROBE RADIUS : 1.20 \ REMARK 3 ION PROBE RADIUS : 0.80 \ REMARK 3 SHRINKAGE RADIUS : 0.80 \ REMARK 3 \ REMARK 3 OTHER REFINEMENT REMARKS: HYDROGENS HAVE BEEN ADDED IN THE RIDING \ REMARK 3 POSITIONS. \ REMARK 4 \ REMARK 4 2BWE COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY PDBE ON 13-JUL-05. \ REMARK 100 THE DEPOSITION ID IS D_1290024892. \ REMARK 200 \ REMARK 200 EXPERIMENTAL DETAILS \ REMARK 200 EXPERIMENT TYPE : X-RAY DIFFRACTION \ REMARK 200 DATE OF DATA COLLECTION : 22-SEP-04 \ REMARK 200 TEMPERATURE (KELVIN) : 100.0 \ REMARK 200 PH : 6.50 \ REMARK 200 NUMBER OF CRYSTALS USED : 1 \ REMARK 200 \ REMARK 200 SYNCHROTRON (Y/N) : Y \ REMARK 200 RADIATION SOURCE : ESRF \ REMARK 200 BEAMLINE : ID14-2 \ REMARK 200 X-RAY GENERATOR MODEL : NULL \ REMARK 200 MONOCHROMATIC OR LAUE (M/L) : M \ REMARK 200 WAVELENGTH OR RANGE (A) : 0.93400 \ REMARK 200 MONOCHROMATOR : NULL \ REMARK 200 OPTICS : NULL \ REMARK 200 \ REMARK 200 DETECTOR TYPE : CCD \ REMARK 200 DETECTOR MANUFACTURER : ADSC CCD \ REMARK 200 INTENSITY-INTEGRATION SOFTWARE : MOSFLM \ REMARK 200 DATA SCALING SOFTWARE : SCALA \ REMARK 200 \ REMARK 200 NUMBER OF UNIQUE REFLECTIONS : 33693 \ REMARK 200 RESOLUTION RANGE HIGH (A) : 3.100 \ REMARK 200 RESOLUTION RANGE LOW (A) : 59.200 \ REMARK 200 REJECTION CRITERIA (SIGMA(I)) : 6.000 \ REMARK 200 \ REMARK 200 OVERALL. \ REMARK 200 COMPLETENESS FOR RANGE (%) : 99.1 \ REMARK 200 DATA REDUNDANCY : 3.300 \ REMARK 200 R MERGE (I) : 0.10000 \ REMARK 200 R SYM (I) : NULL \ REMARK 200 FOR THE DATA SET : 11.5000 \ 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) : 3.27 \ REMARK 200 COMPLETENESS FOR SHELL (%) : 99.6 \ REMARK 200 DATA REDUNDANCY IN SHELL : 3.30 \ REMARK 200 R MERGE FOR SHELL (I) : 0.50000 \ REMARK 200 R SYM FOR SHELL (I) : NULL \ REMARK 200 FOR SHELL : 3.500 \ REMARK 200 \ REMARK 200 DIFFRACTION PROTOCOL: SINGLE WAVELENGTH \ REMARK 200 METHOD USED TO DETERMINE THE STRUCTURE: MOLECULAR REPLACEMENT \ REMARK 200 SOFTWARE USED: MOLREP \ REMARK 200 STARTING MODEL: A,B,C,D TETRAMER FROM PDB ENTRY 2BWB \ REMARK 200 \ REMARK 200 REMARK: NULL \ REMARK 280 \ REMARK 280 CRYSTAL \ REMARK 280 SOLVENT CONTENT, VS (%): 71.00 \ REMARK 280 MATTHEWS COEFFICIENT, VM (ANGSTROMS**3/DA): 4.20 \ REMARK 280 \ REMARK 280 CRYSTALLIZATION CONDITIONS: 10-15% METHOXY PEG 5K BUFFERED WITH \ REMARK 280 0.1M MES PH 6.5 AT 4C, PH 6.50, TEMPERATURE 277K \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY \ REMARK 290 SYMMETRY OPERATORS FOR SPACE GROUP: P 1 21 1 \ REMARK 290 \ REMARK 290 SYMOP SYMMETRY \ REMARK 290 NNNMMM OPERATOR \ REMARK 290 1555 X,Y,Z \ REMARK 290 2555 -X,Y+1/2,-Z \ REMARK 290 \ REMARK 290 WHERE NNN -> OPERATOR NUMBER \ REMARK 290 MMM -> TRANSLATION VECTOR \ REMARK 290 \ REMARK 290 CRYSTALLOGRAPHIC SYMMETRY TRANSFORMATIONS \ REMARK 290 THE FOLLOWING TRANSFORMATIONS OPERATE ON THE ATOM/HETATM \ REMARK 290 RECORDS IN THIS ENTRY TO PRODUCE CRYSTALLOGRAPHICALLY \ REMARK 290 RELATED MOLECULES. \ REMARK 290 SMTRY1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 290 SMTRY3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 290 SMTRY1 2 -1.000000 0.000000 0.000000 0.00000 \ REMARK 290 SMTRY2 2 0.000000 1.000000 0.000000 44.42700 \ REMARK 290 SMTRY3 2 0.000000 0.000000 -1.000000 0.00000 \ REMARK 290 \ REMARK 290 REMARK: NULL \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1, 2, 3 \ 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 SOFTWARE DETERMINED QUATERNARY STRUCTURE: DECAMERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 TOTAL BURIED SURFACE AREA: 10150 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 31750 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -16.2 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, B, C, D, E, F, G, H, I, T \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 2 \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: HEXAMERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 TOTAL BURIED SURFACE AREA: 6200 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 20230 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -21.2 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: N, O, P, Q, R, U \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 350 \ REMARK 350 BIOMOLECULE: 3 \ REMARK 350 SOFTWARE DETERMINED QUATERNARY STRUCTURE: PENTAMERIC \ REMARK 350 SOFTWARE USED: PQS \ REMARK 350 TOTAL BURIED SURFACE AREA: 4480 ANGSTROM**2 \ REMARK 350 SURFACE AREA OF THE COMPLEX: 17230 ANGSTROM**2 \ REMARK 350 CHANGE IN SOLVENT FREE ENERGY: -6.6 KCAL/MOL \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: J, K, L, M, S \ 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 324 \ REMARK 465 ILE A 325 \ REMARK 465 ASP A 372 \ REMARK 465 VAL A 373 \ REMARK 465 ASP B 372 \ REMARK 465 VAL B 373 \ REMARK 465 GLY C 324 \ REMARK 465 ILE C 325 \ REMARK 465 GLY D 324 \ REMARK 465 ASP D 372 \ REMARK 465 VAL D 373 \ REMARK 465 GLY E 324 \ REMARK 465 ILE E 325 \ REMARK 465 ASP E 372 \ REMARK 465 VAL E 373 \ REMARK 465 GLY F 324 \ REMARK 465 ILE F 325 \ REMARK 465 LEU F 326 \ REMARK 465 ASP F 372 \ REMARK 465 VAL F 373 \ REMARK 465 GLY G 324 \ REMARK 465 ILE G 325 \ REMARK 465 ASP G 372 \ REMARK 465 VAL G 373 \ REMARK 465 GLY H 324 \ REMARK 465 ILE H 325 \ REMARK 465 LEU H 326 \ REMARK 465 ASP H 372 \ REMARK 465 VAL H 373 \ REMARK 465 GLY I 324 \ REMARK 465 ILE I 325 \ REMARK 465 LEU I 326 \ REMARK 465 ASP I 372 \ REMARK 465 VAL I 373 \ REMARK 465 GLY J 324 \ REMARK 465 ILE J 325 \ REMARK 465 ASP J 372 \ REMARK 465 VAL J 373 \ REMARK 465 GLY K 324 \ REMARK 465 ILE K 325 \ REMARK 465 VAL K 373 \ REMARK 465 GLY L 324 \ REMARK 465 ILE L 325 \ REMARK 465 ASP L 372 \ REMARK 465 VAL L 373 \ REMARK 465 GLY M 324 \ REMARK 465 ILE M 325 \ REMARK 465 LEU M 326 \ REMARK 465 ASP M 372 \ REMARK 465 VAL M 373 \ REMARK 465 GLY N 324 \ REMARK 465 ILE N 325 \ REMARK 465 ASP N 372 \ REMARK 465 VAL N 373 \ REMARK 465 GLY O 324 \ REMARK 465 ILE O 325 \ REMARK 465 ASP O 372 \ REMARK 465 VAL O 373 \ REMARK 465 GLY P 324 \ REMARK 465 ILE P 325 \ REMARK 465 LEU P 326 \ REMARK 465 GLY P 371 \ REMARK 465 ASP P 372 \ REMARK 465 VAL P 373 \ REMARK 465 GLY Q 324 \ REMARK 465 ASP Q 372 \ REMARK 465 VAL Q 373 \ REMARK 465 GLY R 324 \ REMARK 465 ILE R 325 \ REMARK 465 ASP R 372 \ REMARK 465 VAL R 373 \ REMARK 465 LEU S -1 \ REMARK 465 ASP S 0 \ REMARK 465 MET S 1 \ REMARK 465 PRO S 75 \ REMARK 465 LEU T -1 \ REMARK 465 ASP T 0 \ REMARK 465 MET T 1 \ REMARK 465 PRO T 75 \ REMARK 465 LEU U -1 \ REMARK 465 ASP U 0 \ REMARK 465 MET U 1 \ REMARK 465 SER U 2 \ REMARK 465 PRO U 75 \ 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 GLN S 11 CG CD OE1 NE2 \ REMARK 470 GLN T 11 CG CD OE1 NE2 \ REMARK 470 GLN U 11 CG CD OE1 NE2 \ 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 HOH A 2002 O HOH A 2004 1.72 \ REMARK 500 O HOH A 2005 O HOH A 2006 1.87 \ REMARK 500 NE2 GLN C 362 O HOH C 2008 2.03 \ 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 GLY I 371 C GLY I 371 O 0.108 \ REMARK 500 GLY O 371 CA GLY O 371 C 0.122 \ REMARK 500 GLY O 371 C GLY O 371 O 0.598 \ 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 ASP G 341 CB - CG - OD2 ANGL. DEV. = -6.8 DEGREES \ REMARK 500 GLY O 371 CA - C - O ANGL. DEV. = -18.8 DEGREES \ REMARK 500 LEU Q 326 N - CA - C ANGL. DEV. = -16.7 DEGREES \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: TORSION ANGLES \ REMARK 500 \ REMARK 500 TORSION ANGLES OUTSIDE THE EXPECTED RAMACHANDRAN REGIONS: \ REMARK 500 (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN IDENTIFIER; \ REMARK 500 SSEQ=SEQUENCE NUMBER; I=INSERTION CODE). \ REMARK 500 \ REMARK 500 STANDARD TABLE: \ REMARK 500 FORMAT:(10X,I3,1X,A3,1X,A1,I4,A1,4X,F7.2,3X,F7.2) \ REMARK 500 \ REMARK 500 EXPECTED VALUES: GJ KLEYWEGT AND TA JONES (1996). PHI/PSI- \ REMARK 500 CHOLOGY: RAMACHANDRAN REVISITED. STRUCTURE 4, 1395 - 1400 \ REMARK 500 \ REMARK 500 M RES CSSEQI PSI PHI \ REMARK 500 ASP A 327 102.91 19.10 \ REMARK 500 LEU B 326 -114.70 -122.47 \ REMARK 500 ASP B 327 119.53 164.41 \ REMARK 500 ASP C 327 121.07 162.07 \ REMARK 500 ASP D 327 118.16 -176.31 \ REMARK 500 ASP E 327 120.62 172.53 \ REMARK 500 ASP G 327 111.98 155.46 \ REMARK 500 ASN I 370 -5.14 -140.01 \ REMARK 500 ASP J 327 122.89 178.60 \ REMARK 500 ASP K 327 123.14 167.66 \ REMARK 500 ASP L 327 111.58 143.35 \ REMARK 500 ASP N 327 120.63 153.68 \ REMARK 500 ASP O 327 126.69 166.36 \ REMARK 500 ASN O 370 -31.06 -147.10 \ REMARK 500 LEU Q 326 -135.18 -91.15 \ REMARK 500 ASN S 35 -4.82 -164.06 \ REMARK 500 ILE S 37 108.99 -28.99 \ REMARK 500 ALA S 40 3.01 -63.41 \ REMARK 500 ASP S 54 31.97 -97.66 \ REMARK 500 ILE S 62 109.41 -54.69 \ REMARK 500 ASN T 35 -4.64 -164.51 \ REMARK 500 ILE T 37 110.06 -26.81 \ REMARK 500 ALA T 40 2.16 -60.14 \ REMARK 500 ASP T 54 32.72 -99.98 \ REMARK 500 ASN U 35 -5.87 -163.66 \ REMARK 500 ILE U 37 111.17 -31.68 \ REMARK 500 ALA U 40 0.92 -65.36 \ REMARK 500 ASP U 54 30.95 -97.88 \ REMARK 500 ILE U 62 108.10 -53.07 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: NON-CIS, NON-TRANS \ REMARK 500 \ REMARK 500 THE FOLLOWING PEPTIDE BONDS DEVIATE SIGNIFICANTLY FROM BOTH \ REMARK 500 CIS AND TRANS CONFORMATION. CIS BONDS, IF ANY, ARE LISTED \ REMARK 500 ON CISPEP RECORDS. TRANS IS DEFINED AS 180 +/- 30 AND \ REMARK 500 CIS IS DEFINED AS 0 +/- 30 DEGREES. \ REMARK 500 MODEL OMEGA \ REMARK 500 LEU A 326 ASP A 327 81.68 \ REMARK 500 ILE D 325 LEU D 326 36.87 \ REMARK 500 ASN E 370 GLY E 371 -48.97 \ REMARK 500 LEU G 326 ASP G 327 -62.45 \ REMARK 500 LEU J 326 ASP J 327 -149.40 \ REMARK 500 LEU L 326 ASP L 327 -35.10 \ REMARK 500 ASN L 370 GLY L 371 147.90 \ REMARK 500 LEU O 326 ASP O 327 -143.21 \ REMARK 500 ASN O 370 GLY O 371 -147.54 \ REMARK 500 ILE Q 325 LEU Q 326 138.58 \ REMARK 500 LEU Q 326 ASP Q 327 -83.07 \ 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 D2005 DISTANCE = 6.15 ANGSTROMS \ REMARK 525 HOH K2005 DISTANCE = 5.99 ANGSTROMS \ REMARK 525 HOH S2007 DISTANCE = 6.26 ANGSTROMS \ REMARK 525 HOH S2009 DISTANCE = 6.35 ANGSTROMS \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: 1WR1 RELATED DB: PDB \ REMARK 900 THE COMPLEX STRUCTURE OF DSK2P UBA WITH UBIQUITIN \ REMARK 900 RELATED ID: 2BWB RELATED DB: PDB \ REMARK 900 CRYSTAL STURCTURE OF THE UBA DOMAIN OF DSK2 FROM S. CEREVISIAE \ REMARK 900 RELATED ID: 2BWF RELATED DB: PDB \ REMARK 900 CRYSTAL STURCTURE OF THE UBA DOMAIN OF DSK2 FROM S. CEREVISIAE \ REMARK 999 \ REMARK 999 SEQUENCE \ REMARK 999 CHAINS A-R CONTAIN THE UBA DOMAIN OF DSK2 CONSISTING OF \ REMARK 999 RESIDUES 328-373 OF THE INTACT PROTEIN \ REMARK 999 CHAINS S-U CONTAIN THE UBL DOMAIN OF DSK2 CONSISTING OF \ REMARK 999 RESIDUES 1-77 OF THE INTACT PROTEIN \ DBREF 2BWE A 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE A 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE B 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE B 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE C 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE C 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE D 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE D 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE E 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE E 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE F 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE F 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE G 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE G 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE H 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE H 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE I 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE I 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE J 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE J 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE K 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE K 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE L 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE L 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE M 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE M 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE N 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE N 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE O 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE O 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE P 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE P 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE Q 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE Q 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE R 324 327 PDB 2BWE 2BWE 324 327 \ DBREF 2BWE R 328 373 UNP P48510 DSK2_YEAST 328 373 \ DBREF 2BWE S -1 0 PDB 2BWE 2BWE -1 0 \ DBREF 2BWE S 1 75 UNP P48510 DSK2_YEAST 1 75 \ DBREF 2BWE T -1 0 PDB 2BWE 2BWE -1 0 \ DBREF 2BWE T 1 75 UNP P48510 DSK2_YEAST 1 75 \ DBREF 2BWE U -1 0 PDB 2BWE 2BWE -1 0 \ DBREF 2BWE U 1 75 UNP P48510 DSK2_YEAST 1 75 \ SEQRES 1 A 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 A 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 A 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 A 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 B 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 B 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 B 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 B 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 C 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 C 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 C 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 C 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 D 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 D 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 D 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 D 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 E 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 E 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 E 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 E 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 F 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 F 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 F 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 F 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 G 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 G 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 G 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 G 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 H 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 H 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 H 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 H 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 I 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 I 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 I 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 I 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 J 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 J 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 J 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 J 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 K 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 K 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 K 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 K 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 L 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 L 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 L 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 L 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 M 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 M 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 M 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 M 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 N 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 N 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 N 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 N 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 O 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 O 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 O 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 O 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 P 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 P 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 P 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 P 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 Q 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 Q 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 Q 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 Q 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 R 50 GLY ILE LEU ASP PRO GLU GLU ARG TYR GLU HIS GLN LEU \ SEQRES 2 R 50 ARG GLN LEU ASN ASP MET GLY PHE PHE ASP PHE ASP ARG \ SEQRES 3 R 50 ASN VAL ALA ALA LEU ARG ARG SER GLY GLY SER VAL GLN \ SEQRES 4 R 50 GLY ALA LEU ASP SER LEU LEU ASN GLY ASP VAL \ SEQRES 1 S 77 LEU ASP MET SER LEU ASN ILE HIS ILE LYS SER GLY GLN \ SEQRES 2 S 77 ASP LYS TRP GLU VAL ASN VAL ALA PRO GLU SER THR VAL \ SEQRES 3 S 77 LEU GLN PHE LYS GLU ALA ILE ASN LYS ALA ASN GLY ILE \ SEQRES 4 S 77 PRO VAL ALA ASN GLN ARG LEU ILE TYR SER GLY LYS ILE \ SEQRES 5 S 77 LEU LYS ASP ASP GLN THR VAL GLU SER TYR HIS ILE GLN \ SEQRES 6 S 77 ASP GLY HIS SER VAL HIS LEU VAL LYS SER GLN PRO \ SEQRES 1 T 77 LEU ASP MET SER LEU ASN ILE HIS ILE LYS SER GLY GLN \ SEQRES 2 T 77 ASP LYS TRP GLU VAL ASN VAL ALA PRO GLU SER THR VAL \ SEQRES 3 T 77 LEU GLN PHE LYS GLU ALA ILE ASN LYS ALA ASN GLY ILE \ SEQRES 4 T 77 PRO VAL ALA ASN GLN ARG LEU ILE TYR SER GLY LYS ILE \ SEQRES 5 T 77 LEU LYS ASP ASP GLN THR VAL GLU SER TYR HIS ILE GLN \ SEQRES 6 T 77 ASP GLY HIS SER VAL HIS LEU VAL LYS SER GLN PRO \ SEQRES 1 U 77 LEU ASP MET SER LEU ASN ILE HIS ILE LYS SER GLY GLN \ SEQRES 2 U 77 ASP LYS TRP GLU VAL ASN VAL ALA PRO GLU SER THR VAL \ SEQRES 3 U 77 LEU GLN PHE LYS GLU ALA ILE ASN LYS ALA ASN GLY ILE \ SEQRES 4 U 77 PRO VAL ALA ASN GLN ARG LEU ILE TYR SER GLY LYS ILE \ SEQRES 5 U 77 LEU LYS ASP ASP GLN THR VAL GLU SER TYR HIS ILE GLN \ SEQRES 6 U 77 ASP GLY HIS SER VAL HIS LEU VAL LYS SER GLN PRO \ FORMUL 22 HOH *101(H2 O) \ HELIX 1 1 ASP A 327 TYR A 332 1 6 \ HELIX 2 2 TYR A 332 MET A 342 1 11 \ HELIX 3 3 ASP A 346 SER A 357 1 12 \ HELIX 4 4 SER A 360 LEU A 369 1 10 \ HELIX 5 5 ASP B 327 TYR B 332 1 6 \ HELIX 6 6 TYR B 332 MET B 342 1 11 \ HELIX 7 7 ASP B 346 SER B 357 1 12 \ HELIX 8 8 SER B 360 LEU B 369 1 10 \ HELIX 9 9 ASP C 327 TYR C 332 1 6 \ HELIX 10 10 TYR C 332 MET C 342 1 11 \ HELIX 11 11 ASP C 346 SER C 357 1 12 \ HELIX 12 12 SER C 360 LEU C 369 1 10 \ HELIX 13 13 ASP D 327 TYR D 332 1 6 \ HELIX 14 14 TYR D 332 MET D 342 1 11 \ HELIX 15 15 ASP D 346 SER D 357 1 12 \ HELIX 16 16 SER D 360 LEU D 369 1 10 \ HELIX 17 17 ASP E 327 TYR E 332 1 6 \ HELIX 18 18 TYR E 332 MET E 342 1 11 \ HELIX 19 19 ASP E 346 SER E 357 1 12 \ HELIX 20 20 SER E 360 LEU E 369 1 10 \ HELIX 21 21 ASP F 327 TYR F 332 1 6 \ HELIX 22 22 TYR F 332 ASP F 341 1 10 \ HELIX 23 23 ASP F 346 SER F 357 1 12 \ HELIX 24 24 SER F 360 LEU F 369 1 10 \ HELIX 25 25 ASP G 327 TYR G 332 1 6 \ HELIX 26 26 TYR G 332 ASP G 341 1 10 \ HELIX 27 27 ASP G 346 SER G 357 1 12 \ HELIX 28 28 SER G 360 LEU G 369 1 10 \ HELIX 29 29 ASP H 327 TYR H 332 1 6 \ HELIX 30 30 TYR H 332 ASP H 341 1 10 \ HELIX 31 31 ASP H 346 SER H 357 1 12 \ HELIX 32 32 SER H 360 LEU H 369 1 10 \ HELIX 33 33 ASP I 327 TYR I 332 1 6 \ HELIX 34 34 TYR I 332 MET I 342 1 11 \ HELIX 35 35 ASP I 346 SER I 357 1 12 \ HELIX 36 36 SER I 360 LEU I 369 1 10 \ HELIX 37 37 ASP J 327 TYR J 332 1 6 \ HELIX 38 38 TYR J 332 MET J 342 1 11 \ HELIX 39 39 ASP J 346 SER J 357 1 12 \ HELIX 40 40 SER J 360 LEU J 369 1 10 \ HELIX 41 41 ASP K 327 TYR K 332 1 6 \ HELIX 42 42 TYR K 332 MET K 342 1 11 \ HELIX 43 43 ASP K 346 SER K 357 1 12 \ HELIX 44 44 SER K 360 LEU K 369 1 10 \ HELIX 45 45 ASP L 327 TYR L 332 1 6 \ HELIX 46 46 TYR L 332 ASP L 341 1 10 \ HELIX 47 47 ASP L 346 SER L 357 1 12 \ HELIX 48 48 SER L 360 LEU L 369 1 10 \ HELIX 49 49 ASP M 327 TYR M 332 1 6 \ HELIX 50 50 TYR M 332 MET M 342 1 11 \ HELIX 51 51 ASP M 346 SER M 357 1 12 \ HELIX 52 52 SER M 360 LEU M 369 1 10 \ HELIX 53 53 ASP N 327 TYR N 332 1 6 \ HELIX 54 54 TYR N 332 ASP N 341 1 10 \ HELIX 55 55 ASP N 346 SER N 357 1 12 \ HELIX 56 56 SER N 360 LEU N 369 1 10 \ HELIX 57 57 ASP O 327 TYR O 332 1 6 \ HELIX 58 58 TYR O 332 ASP O 341 1 10 \ HELIX 59 59 ASP O 346 SER O 357 1 12 \ HELIX 60 60 SER O 360 LEU O 369 1 10 \ HELIX 61 61 ASP P 327 TYR P 332 1 6 \ HELIX 62 62 TYR P 332 ASP P 341 1 10 \ HELIX 63 63 ASP P 346 SER P 357 1 12 \ HELIX 64 64 SER P 360 LEU P 369 1 10 \ HELIX 65 65 ASP Q 327 TYR Q 332 1 6 \ HELIX 66 66 TYR Q 332 MET Q 342 1 11 \ HELIX 67 67 ASP Q 346 SER Q 357 1 12 \ HELIX 68 68 SER Q 360 LEU Q 369 1 10 \ HELIX 69 69 ASP R 327 TYR R 332 1 6 \ HELIX 70 70 TYR R 332 MET R 342 1 11 \ HELIX 71 71 ASP R 346 SER R 357 1 12 \ HELIX 72 72 SER R 360 LEU R 369 1 10 \ HELIX 73 73 THR S 23 LYS S 33 1 11 \ HELIX 74 74 PRO S 38 ALA S 40 5 3 \ HELIX 75 75 VAL S 57 HIS S 61 5 5 \ HELIX 76 76 THR T 23 LYS T 33 1 11 \ HELIX 77 77 PRO T 38 ALA T 40 5 3 \ HELIX 78 78 VAL T 57 HIS T 61 5 5 \ HELIX 79 79 THR U 23 LYS U 33 1 11 \ HELIX 80 80 PRO U 38 ALA U 40 5 3 \ HELIX 81 81 VAL U 57 HIS U 61 5 5 \ SHEET 1 SA 5 ASP S 12 VAL S 18 0 \ SHEET 2 SA 5 LEU S 3 SER S 9 -1 O LEU S 3 N VAL S 18 \ SHEET 3 SA 5 SER S 67 LYS S 72 1 O VAL S 68 N LYS S 8 \ SHEET 4 SA 5 GLN S 42 TYR S 46 -1 O ARG S 43 N VAL S 71 \ SHEET 5 SA 5 LYS S 49 ILE S 50 -1 O LYS S 49 N TYR S 46 \ SHEET 1 TA 5 ASP T 12 VAL T 18 0 \ SHEET 2 TA 5 LEU T 3 SER T 9 -1 O LEU T 3 N VAL T 18 \ SHEET 3 TA 5 SER T 67 LYS T 72 1 O VAL T 68 N LYS T 8 \ SHEET 4 TA 5 GLN T 42 TYR T 46 -1 O ARG T 43 N VAL T 71 \ SHEET 5 TA 5 LYS T 49 ILE T 50 -1 O LYS T 49 N TYR T 46 \ SHEET 1 UA 5 ASP U 12 ASN U 17 0 \ SHEET 2 UA 5 ASN U 4 SER U 9 -1 O ILE U 5 N VAL U 16 \ SHEET 3 UA 5 SER U 67 LYS U 72 1 O VAL U 68 N LYS U 8 \ SHEET 4 UA 5 GLN U 42 TYR U 46 -1 O ARG U 43 N VAL U 71 \ SHEET 5 UA 5 LYS U 49 ILE U 50 -1 O LYS U 49 N TYR U 46 \ CISPEP 1 ILE B 325 LEU B 326 0 -17.44 \ CISPEP 2 ASN J 370 GLY J 371 0 25.80 \ CISPEP 3 GLY K 371 ASP K 372 0 -4.36 \ CRYST1 78.361 88.854 141.497 90.00 106.09 90.00 P 1 21 1 36 \ 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 0.012761 0.000000 0.003681 0.00000 \ SCALE2 0.000000 0.011254 0.000000 0.00000 \ SCALE3 0.000000 0.000000 0.007355 0.00000 \ MTRIX1 1 0.746620 0.658860 -0.091940 15.22963 1 \ MTRIX2 1 -0.664140 0.746190 -0.045930 15.85378 1 \ MTRIX3 1 0.038350 0.095360 0.994700 -16.36996 1 \ MTRIX1 2 0.157770 0.968100 -0.194640 38.02905 1 \ MTRIX2 2 -0.986830 0.147470 -0.066430 23.55966 1 \ MTRIX3 2 -0.035600 0.202560 0.978620 -29.27322 1 \ MTRIX1 3 -0.485210 0.826860 -0.284390 61.50296 1 \ MTRIX2 3 -0.860960 -0.508570 -0.009760 15.84473 1 \ MTRIX3 3 -0.152700 0.240110 0.958660 -40.81126 1 \ MTRIX1 4 -0.791390 0.349280 -0.501700 93.90946 1 \ MTRIX2 4 -0.359540 -0.929690 -0.080100 14.95492 1 \ MTRIX3 4 -0.494400 0.116990 0.861330 -39.47005 1 \ MTRIX1 5 -0.837370 -0.294660 -0.460420 97.65797 1 \ MTRIX2 5 0.323220 -0.946160 0.017690 -5.90727 1 \ MTRIX3 5 -0.440840 -0.134000 0.887530 -57.20253 1 \ MTRIX1 6 -0.440420 -0.813650 -0.379470 88.93050 1 \ MTRIX2 6 0.856130 -0.507890 0.095370 -23.17625 1 \ MTRIX3 6 -0.270330 -0.282870 0.920280 -77.81499 1 \ MTRIX1 7 0.192800 -0.935190 -0.297080 75.42363 1 \ MTRIX2 7 0.981030 0.177500 0.077910 -24.16298 1 \ MTRIX3 7 -0.020120 -0.306460 0.951670 -100.36301 1 \ MTRIX1 8 0.754700 -0.616480 -0.224460 63.15993 1 \ MTRIX2 8 0.636100 0.771340 0.020270 -12.69641 1 \ MTRIX3 8 0.160640 -0.158080 0.974270 -120.93924 1 \ MTRIX1 9 -0.744860 -0.660080 0.097380 -15.87128 1 \ MTRIX2 9 0.665880 -0.744660 0.045720 -22.22866 1 \ MTRIX3 9 0.042340 0.098900 0.994200 -16.36768 1 \ MTRIX1 10 -0.158300 -0.967580 0.196820 -38.27025 1 \ MTRIX2 10 0.986800 -0.148160 0.065300 -29.86706 1 \ MTRIX3 10 -0.034020 0.204560 0.978260 -29.24180 1 \ MTRIX1 11 0.488620 -0.821290 0.294510 -62.50208 1 \ MTRIX2 11 0.858760 0.512370 0.004050 -21.58858 1 \ MTRIX3 11 -0.154230 0.250940 0.955640 -40.30556 1 \ MTRIX1 12 0.787870 -0.351990 0.505340 -94.23322 1 \ MTRIX2 12 0.365050 0.927790 0.077100 -21.22643 1 \ MTRIX3 12 -0.495990 0.123730 0.859470 -39.15549 1 \ MTRIX1 13 -0.834720 -0.306250 -0.457670 18.86055 1 \ MTRIX2 13 -0.335400 0.941890 -0.018550 -44.63328 1 \ MTRIX3 13 0.436760 0.138020 -0.888930 57.49371 1 \ MTRIX1 14 -0.440360 -0.811440 -0.384260 11.03672 1 \ MTRIX2 14 -0.854150 0.510490 -0.099140 -27.26027 1 \ MTRIX3 14 0.276610 0.284560 -0.917890 77.49428 1 \ MTRIX1 15 0.186280 -0.936390 -0.297440 -2.78840 1 \ MTRIX2 15 -0.982340 -0.172160 -0.073260 -27.02833 1 \ MTRIX3 15 0.017390 0.305840 -0.951920 100.45814 1 \ MTRIX1 16 0.766980 -0.601510 -0.223430 -15.37999 1 \ MTRIX2 16 -0.620340 -0.784110 -0.018520 -38.80547 1 \ MTRIX3 16 -0.164050 0.152810 -0.974540 120.95715 1 \ MTRIX1 17 0.999990 0.004730 0.000110 -39.10907 1 \ MTRIX2 17 0.004730 -0.999980 -0.003040 -50.61503 1 \ MTRIX3 17 0.000100 0.003040 -1.000000 136.01256 1 \ MTRIX1 18 -1.000000 -0.001320 -0.000140 -0.04513 1 \ MTRIX2 18 0.001320 -1.000000 0.000840 -6.47015 1 \ MTRIX3 18 -0.000140 0.000840 1.000000 0.01532 1 \ MTRIX1 19 0.796200 0.365720 -0.481990 22.89502 1 \ MTRIX2 19 0.351760 -0.927970 -0.123050 -42.31796 1 \ MTRIX3 19 -0.492270 -0.071570 -0.867490 53.78956 1 \ TER 367 GLY A 371 \ TER 746 GLY B 371 \ TER 1129 VAL C 373 \ TER 1504 GLY D 371 \ TER 1871 GLY E 371 \ TER 2230 GLY F 371 \ TER 2597 GLY G 371 \ TER 2956 GLY H 371 \ TER 3315 GLY I 371 \ ATOM 3316 N LEU J 326 -25.150 -9.006 82.504 1.00 85.72 N \ ATOM 3317 CA LEU J 326 -24.215 -8.208 83.400 1.00 86.05 C \ ATOM 3318 C LEU J 326 -24.564 -6.699 83.477 1.00 85.90 C \ ATOM 3319 O LEU J 326 -25.728 -6.341 83.325 1.00 86.88 O \ ATOM 3320 CB LEU J 326 -22.726 -8.430 83.061 1.00 86.07 C \ ATOM 3321 CG LEU J 326 -21.779 -8.814 84.209 1.00 85.82 C \ ATOM 3322 CD1 LEU J 326 -20.570 -7.941 84.089 1.00 85.47 C \ ATOM 3323 CD2 LEU J 326 -22.389 -8.664 85.614 1.00 85.78 C \ ATOM 3324 N ASP J 327 -23.596 -5.810 83.693 1.00 84.51 N \ ATOM 3325 CA ASP J 327 -23.938 -4.591 84.410 1.00 84.09 C \ ATOM 3326 C ASP J 327 -22.707 -3.696 84.603 1.00 83.62 C \ ATOM 3327 O ASP J 327 -21.729 -4.126 85.212 1.00 83.98 O \ ATOM 3328 CB ASP J 327 -24.484 -5.042 85.761 1.00 84.52 C \ ATOM 3329 CG ASP J 327 -25.130 -3.939 86.535 1.00 85.93 C \ ATOM 3330 OD1 ASP J 327 -24.955 -2.758 86.170 1.00 87.38 O \ ATOM 3331 OD2 ASP J 327 -25.807 -4.269 87.537 1.00 86.83 O \ ATOM 3332 N PRO J 328 -22.754 -2.434 84.126 1.00 82.93 N \ ATOM 3333 CA PRO J 328 -21.505 -1.728 83.858 1.00 82.61 C \ ATOM 3334 C PRO J 328 -20.598 -1.615 85.087 1.00 82.77 C \ ATOM 3335 O PRO J 328 -19.401 -1.851 84.971 1.00 82.81 O \ ATOM 3336 CB PRO J 328 -21.955 -0.347 83.406 1.00 82.22 C \ ATOM 3337 CG PRO J 328 -23.373 -0.463 83.120 1.00 82.35 C \ ATOM 3338 CD PRO J 328 -23.923 -1.579 83.889 1.00 82.91 C \ ATOM 3339 N GLU J 329 -21.169 -1.277 86.246 1.00 82.68 N \ ATOM 3340 CA GLU J 329 -20.417 -1.123 87.477 1.00 82.58 C \ ATOM 3341 C GLU J 329 -19.689 -2.410 87.801 1.00 82.75 C \ ATOM 3342 O GLU J 329 -18.541 -2.392 88.258 1.00 82.89 O \ ATOM 3343 CB GLU J 329 -21.328 -0.770 88.642 1.00 82.61 C \ ATOM 3344 CG GLU J 329 -21.992 0.573 88.557 1.00 83.33 C \ ATOM 3345 CD GLU J 329 -23.388 0.512 87.982 1.00 84.59 C \ ATOM 3346 OE1 GLU J 329 -23.618 -0.281 87.034 1.00 85.25 O \ ATOM 3347 OE2 GLU J 329 -24.249 1.281 88.473 1.00 84.90 O \ ATOM 3348 N GLU J 330 -20.361 -3.528 87.573 1.00 82.92 N \ ATOM 3349 CA GLU J 330 -19.772 -4.819 87.858 1.00 83.56 C \ ATOM 3350 C GLU J 330 -18.764 -5.162 86.796 1.00 83.49 C \ ATOM 3351 O GLU J 330 -17.676 -5.644 87.102 1.00 83.71 O \ ATOM 3352 CB GLU J 330 -20.842 -5.916 87.993 1.00 83.68 C \ ATOM 3353 CG GLU J 330 -21.198 -6.281 89.471 1.00 85.97 C \ ATOM 3354 CD GLU J 330 -21.483 -5.050 90.397 1.00 88.52 C \ ATOM 3355 OE1 GLU J 330 -21.645 -3.916 89.878 1.00 88.98 O \ ATOM 3356 OE2 GLU J 330 -21.545 -5.227 91.649 1.00 89.21 O \ ATOM 3357 N ARG J 331 -19.107 -4.879 85.548 1.00 83.53 N \ ATOM 3358 CA ARG J 331 -18.258 -5.281 84.444 1.00 83.70 C \ ATOM 3359 C ARG J 331 -16.951 -4.514 84.380 1.00 83.59 C \ ATOM 3360 O ARG J 331 -15.912 -5.102 84.149 1.00 83.77 O \ ATOM 3361 CB ARG J 331 -18.988 -5.116 83.123 1.00 84.01 C \ ATOM 3362 CG ARG J 331 -18.183 -5.626 81.947 1.00 84.95 C \ ATOM 3363 CD ARG J 331 -18.535 -4.797 80.748 1.00 87.69 C \ ATOM 3364 NE ARG J 331 -18.653 -5.667 79.584 1.00 91.04 N \ ATOM 3365 CZ ARG J 331 -19.788 -6.274 79.232 1.00 91.75 C \ ATOM 3366 NH1 ARG J 331 -20.883 -6.078 79.982 1.00 91.57 N \ ATOM 3367 NH2 ARG J 331 -19.830 -7.066 78.146 1.00 90.82 N \ ATOM 3368 N TYR J 332 -17.015 -3.203 84.562 1.00 83.67 N \ ATOM 3369 CA TYR J 332 -15.824 -2.358 84.503 1.00 83.88 C \ ATOM 3370 C TYR J 332 -15.269 -1.932 85.875 1.00 84.08 C \ ATOM 3371 O TYR J 332 -14.621 -0.858 85.982 1.00 84.00 O \ ATOM 3372 CB TYR J 332 -16.112 -1.101 83.688 1.00 84.01 C \ ATOM 3373 CG TYR J 332 -16.528 -1.372 82.268 1.00 84.38 C \ ATOM 3374 CD1 TYR J 332 -17.740 -0.903 81.780 1.00 84.26 C \ ATOM 3375 CD2 TYR J 332 -15.717 -2.101 81.413 1.00 84.14 C \ ATOM 3376 CE1 TYR J 332 -18.122 -1.139 80.476 1.00 83.97 C \ ATOM 3377 CE2 TYR J 332 -16.102 -2.346 80.106 1.00 84.52 C \ ATOM 3378 CZ TYR J 332 -17.299 -1.860 79.653 1.00 84.19 C \ ATOM 3379 OH TYR J 332 -17.664 -2.117 78.374 1.00 84.87 O \ ATOM 3380 N GLU J 333 -15.505 -2.764 86.899 1.00 83.83 N \ ATOM 3381 CA GLU J 333 -15.112 -2.421 88.258 1.00 83.57 C \ ATOM 3382 C GLU J 333 -13.637 -2.049 88.327 1.00 83.29 C \ ATOM 3383 O GLU J 333 -13.293 -0.928 88.704 1.00 82.98 O \ ATOM 3384 CB GLU J 333 -15.422 -3.554 89.220 1.00 83.62 C \ ATOM 3385 CG GLU J 333 -15.266 -3.164 90.714 1.00 84.85 C \ ATOM 3386 CD GLU J 333 -15.025 -4.367 91.615 1.00 86.63 C \ ATOM 3387 OE1 GLU J 333 -14.326 -5.314 91.187 1.00 87.74 O \ ATOM 3388 OE2 GLU J 333 -15.541 -4.373 92.745 1.00 86.73 O \ ATOM 3389 N HIS J 334 -12.772 -2.960 87.914 1.00 83.19 N \ ATOM 3390 CA HIS J 334 -11.360 -2.681 88.000 1.00 84.06 C \ ATOM 3391 C HIS J 334 -10.948 -1.405 87.269 1.00 83.35 C \ ATOM 3392 O HIS J 334 -10.149 -0.604 87.766 1.00 83.42 O \ ATOM 3393 CB HIS J 334 -10.521 -3.939 87.712 1.00 84.69 C \ ATOM 3394 CG HIS J 334 -10.553 -4.920 88.864 1.00 89.07 C \ ATOM 3395 ND1 HIS J 334 -11.205 -6.141 88.806 1.00 91.72 N \ ATOM 3396 CD2 HIS J 334 -10.087 -4.815 90.140 1.00 91.66 C \ ATOM 3397 CE1 HIS J 334 -11.097 -6.763 89.973 1.00 91.87 C \ ATOM 3398 NE2 HIS J 334 -10.421 -5.982 90.800 1.00 92.26 N \ ATOM 3399 N GLN J 335 -11.570 -1.162 86.126 1.00 83.14 N \ ATOM 3400 CA GLN J 335 -11.234 0.024 85.325 1.00 82.65 C \ ATOM 3401 C GLN J 335 -11.807 1.323 85.912 1.00 82.69 C \ ATOM 3402 O GLN J 335 -11.073 2.331 86.101 1.00 82.84 O \ ATOM 3403 CB GLN J 335 -11.706 -0.144 83.891 1.00 82.46 C \ ATOM 3404 CG GLN J 335 -11.118 -1.309 83.138 1.00 81.88 C \ ATOM 3405 CD GLN J 335 -11.998 -2.512 83.212 1.00 81.92 C \ ATOM 3406 OE1 GLN J 335 -12.680 -2.720 84.202 1.00 82.84 O \ ATOM 3407 NE2 GLN J 335 -11.993 -3.319 82.179 1.00 81.64 N \ ATOM 3408 N LEU J 336 -13.112 1.305 86.197 1.00 81.98 N \ ATOM 3409 CA LEU J 336 -13.726 2.399 86.919 1.00 81.60 C \ ATOM 3410 C LEU J 336 -12.906 2.824 88.165 1.00 82.13 C \ ATOM 3411 O LEU J 336 -12.753 4.027 88.447 1.00 82.21 O \ ATOM 3412 CB LEU J 336 -15.118 2.016 87.351 1.00 81.16 C \ ATOM 3413 CG LEU J 336 -16.168 2.014 86.264 1.00 79.97 C \ ATOM 3414 CD1 LEU J 336 -17.439 1.424 86.767 1.00 78.63 C \ ATOM 3415 CD2 LEU J 336 -16.408 3.402 85.827 1.00 78.66 C \ ATOM 3416 N ARG J 337 -12.366 1.853 88.901 1.00 82.04 N \ ATOM 3417 CA ARG J 337 -11.585 2.222 90.035 1.00 82.12 C \ ATOM 3418 C ARG J 337 -10.334 3.005 89.648 1.00 82.45 C \ ATOM 3419 O ARG J 337 -10.045 4.057 90.242 1.00 82.41 O \ ATOM 3420 CB ARG J 337 -11.236 1.014 90.854 1.00 82.04 C \ ATOM 3421 CG ARG J 337 -11.325 1.319 92.301 1.00 81.54 C \ ATOM 3422 CD ARG J 337 -10.036 1.173 92.916 1.00 81.14 C \ ATOM 3423 NE ARG J 337 -10.205 0.653 94.265 1.00 81.53 N \ ATOM 3424 CZ ARG J 337 -10.259 1.402 95.346 1.00 80.27 C \ ATOM 3425 NH1 ARG J 337 -10.163 2.696 95.201 1.00 80.34 N \ ATOM 3426 NH2 ARG J 337 -10.375 0.842 96.549 1.00 80.18 N \ ATOM 3427 N GLN J 338 -9.616 2.532 88.634 1.00 82.57 N \ ATOM 3428 CA GLN J 338 -8.394 3.225 88.220 1.00 82.86 C \ ATOM 3429 C GLN J 338 -8.688 4.639 87.771 1.00 82.95 C \ ATOM 3430 O GLN J 338 -7.968 5.589 88.153 1.00 82.88 O \ ATOM 3431 CB GLN J 338 -7.728 2.503 87.080 1.00 82.64 C \ ATOM 3432 CG GLN J 338 -7.120 1.231 87.492 1.00 83.85 C \ ATOM 3433 CD GLN J 338 -6.479 0.540 86.322 1.00 85.52 C \ ATOM 3434 OE1 GLN J 338 -5.447 1.009 85.804 1.00 85.99 O \ ATOM 3435 NE2 GLN J 338 -7.074 -0.583 85.886 1.00 85.75 N \ ATOM 3436 N LEU J 339 -9.748 4.768 86.965 1.00 82.70 N \ ATOM 3437 CA LEU J 339 -10.155 6.066 86.471 1.00 82.75 C \ ATOM 3438 C LEU J 339 -10.497 7.040 87.614 1.00 82.86 C \ ATOM 3439 O LEU J 339 -9.986 8.179 87.664 1.00 82.59 O \ ATOM 3440 CB LEU J 339 -11.325 5.909 85.515 1.00 82.70 C \ ATOM 3441 CG LEU J 339 -10.989 5.271 84.165 1.00 82.21 C \ ATOM 3442 CD1 LEU J 339 -12.292 5.103 83.382 1.00 81.49 C \ ATOM 3443 CD2 LEU J 339 -9.984 6.127 83.403 1.00 81.17 C \ ATOM 3444 N ASN J 340 -11.340 6.563 88.528 1.00 82.83 N \ ATOM 3445 CA ASN J 340 -11.680 7.320 89.696 1.00 82.73 C \ ATOM 3446 C ASN J 340 -10.451 7.648 90.476 1.00 83.06 C \ ATOM 3447 O ASN J 340 -10.368 8.718 91.086 1.00 83.49 O \ ATOM 3448 CB ASN J 340 -12.699 6.602 90.553 1.00 82.43 C \ ATOM 3449 CG ASN J 340 -14.104 6.881 90.108 1.00 82.35 C \ ATOM 3450 OD1 ASN J 340 -14.772 7.793 90.612 1.00 81.99 O \ ATOM 3451 ND2 ASN J 340 -14.558 6.122 89.106 1.00 83.06 N \ ATOM 3452 N ASP J 341 -9.454 6.778 90.415 1.00 83.20 N \ ATOM 3453 CA ASP J 341 -8.273 7.043 91.229 1.00 83.52 C \ ATOM 3454 C ASP J 341 -7.364 8.093 90.619 1.00 83.41 C \ ATOM 3455 O ASP J 341 -6.488 8.640 91.284 1.00 83.05 O \ ATOM 3456 CB ASP J 341 -7.557 5.740 91.551 1.00 83.70 C \ ATOM 3457 CG ASP J 341 -8.349 4.895 92.522 1.00 84.12 C \ ATOM 3458 OD1 ASP J 341 -9.229 5.483 93.215 1.00 85.70 O \ ATOM 3459 OD2 ASP J 341 -8.114 3.672 92.585 1.00 82.73 O \ ATOM 3460 N MET J 342 -7.610 8.385 89.353 1.00 83.53 N \ ATOM 3461 CA MET J 342 -6.879 9.404 88.672 1.00 83.65 C \ ATOM 3462 C MET J 342 -7.687 10.677 88.619 1.00 83.45 C \ ATOM 3463 O MET J 342 -7.311 11.601 87.937 1.00 83.69 O \ ATOM 3464 CB MET J 342 -6.552 8.939 87.275 1.00 83.45 C \ ATOM 3465 CG MET J 342 -5.421 7.975 87.219 1.00 83.66 C \ ATOM 3466 SD MET J 342 -5.405 7.190 85.604 1.00 85.24 S \ ATOM 3467 CE MET J 342 -3.678 7.434 85.164 1.00 85.47 C \ ATOM 3468 N GLY J 343 -8.799 10.744 89.332 1.00 83.36 N \ ATOM 3469 CA GLY J 343 -9.614 11.960 89.327 1.00 83.39 C \ ATOM 3470 C GLY J 343 -10.775 12.009 88.331 1.00 83.69 C \ ATOM 3471 O GLY J 343 -11.496 13.009 88.259 1.00 83.90 O \ ATOM 3472 N PHE J 344 -10.971 10.939 87.559 1.00 83.36 N \ ATOM 3473 CA PHE J 344 -12.047 10.904 86.607 1.00 83.17 C \ ATOM 3474 C PHE J 344 -13.337 10.381 87.241 1.00 83.28 C \ ATOM 3475 O PHE J 344 -13.690 9.207 87.104 1.00 83.43 O \ ATOM 3476 CB PHE J 344 -11.619 10.133 85.362 1.00 83.07 C \ ATOM 3477 CG PHE J 344 -10.533 10.812 84.613 1.00 82.84 C \ ATOM 3478 CD1 PHE J 344 -9.217 10.510 84.876 1.00 83.17 C \ ATOM 3479 CD2 PHE J 344 -10.816 11.808 83.685 1.00 82.41 C \ ATOM 3480 CE1 PHE J 344 -8.189 11.169 84.192 1.00 82.75 C \ ATOM 3481 CE2 PHE J 344 -9.804 12.462 83.002 1.00 82.57 C \ ATOM 3482 CZ PHE J 344 -8.490 12.139 83.251 1.00 82.87 C \ ATOM 3483 N PHE J 345 -14.046 11.282 87.918 1.00 82.96 N \ ATOM 3484 CA PHE J 345 -15.231 10.918 88.670 1.00 82.81 C \ ATOM 3485 C PHE J 345 -16.547 10.721 87.885 1.00 83.31 C \ ATOM 3486 O PHE J 345 -17.547 10.306 88.454 1.00 83.72 O \ ATOM 3487 CB PHE J 345 -15.460 11.974 89.743 1.00 82.37 C \ ATOM 3488 CG PHE J 345 -14.280 12.186 90.642 1.00 82.15 C \ ATOM 3489 CD1 PHE J 345 -13.911 13.465 91.031 1.00 81.76 C \ ATOM 3490 CD2 PHE J 345 -13.523 11.104 91.092 1.00 82.25 C \ ATOM 3491 CE1 PHE J 345 -12.831 13.660 91.834 1.00 81.64 C \ ATOM 3492 CE2 PHE J 345 -12.435 11.299 91.906 1.00 81.68 C \ ATOM 3493 CZ PHE J 345 -12.086 12.578 92.279 1.00 81.74 C \ ATOM 3494 N ASP J 346 -16.594 11.041 86.599 1.00 83.68 N \ ATOM 3495 CA ASP J 346 -17.888 11.052 85.922 1.00 83.75 C \ ATOM 3496 C ASP J 346 -18.203 9.663 85.352 1.00 83.56 C \ ATOM 3497 O ASP J 346 -17.568 9.174 84.405 1.00 83.09 O \ ATOM 3498 CB ASP J 346 -17.946 12.136 84.848 1.00 84.07 C \ ATOM 3499 CG ASP J 346 -19.253 12.122 84.076 1.00 85.72 C \ ATOM 3500 OD1 ASP J 346 -20.043 11.135 84.191 1.00 86.94 O \ ATOM 3501 OD2 ASP J 346 -19.487 13.114 83.342 1.00 87.55 O \ ATOM 3502 N PHE J 347 -19.206 9.031 85.946 1.00 83.30 N \ ATOM 3503 CA PHE J 347 -19.475 7.617 85.689 1.00 82.98 C \ ATOM 3504 C PHE J 347 -19.881 7.425 84.264 1.00 83.29 C \ ATOM 3505 O PHE J 347 -19.249 6.653 83.546 1.00 83.24 O \ ATOM 3506 CB PHE J 347 -20.583 7.127 86.612 1.00 82.67 C \ ATOM 3507 CG PHE J 347 -21.052 5.738 86.330 1.00 82.27 C \ ATOM 3508 CD1 PHE J 347 -20.238 4.640 86.608 1.00 82.88 C \ ATOM 3509 CD2 PHE J 347 -22.317 5.518 85.828 1.00 80.88 C \ ATOM 3510 CE1 PHE J 347 -20.685 3.349 86.368 1.00 82.12 C \ ATOM 3511 CE2 PHE J 347 -22.772 4.238 85.608 1.00 80.82 C \ ATOM 3512 CZ PHE J 347 -21.965 3.147 85.868 1.00 81.10 C \ ATOM 3513 N ASP J 348 -20.928 8.150 83.855 1.00 83.66 N \ ATOM 3514 CA ASP J 348 -21.456 8.099 82.483 1.00 83.61 C \ ATOM 3515 C ASP J 348 -20.398 8.338 81.437 1.00 83.69 C \ ATOM 3516 O ASP J 348 -20.311 7.563 80.494 1.00 84.02 O \ ATOM 3517 CB ASP J 348 -22.599 9.070 82.318 1.00 83.72 C \ ATOM 3518 CG ASP J 348 -23.857 8.588 83.002 1.00 84.85 C \ ATOM 3519 OD1 ASP J 348 -24.065 7.348 82.967 1.00 85.86 O \ ATOM 3520 OD2 ASP J 348 -24.623 9.422 83.562 1.00 85.63 O \ ATOM 3521 N ARG J 349 -19.572 9.379 81.619 1.00 83.63 N \ ATOM 3522 CA ARG J 349 -18.385 9.570 80.777 1.00 83.79 C \ ATOM 3523 C ARG J 349 -17.453 8.370 80.797 1.00 83.69 C \ ATOM 3524 O ARG J 349 -17.059 7.899 79.747 1.00 83.88 O \ ATOM 3525 CB ARG J 349 -17.606 10.798 81.165 1.00 83.82 C \ ATOM 3526 CG ARG J 349 -18.001 12.023 80.426 1.00 85.47 C \ ATOM 3527 CD ARG J 349 -17.141 13.216 80.859 1.00 88.22 C \ ATOM 3528 NE ARG J 349 -16.568 13.860 79.679 1.00 92.08 N \ ATOM 3529 CZ ARG J 349 -15.270 13.846 79.341 1.00 93.00 C \ ATOM 3530 NH1 ARG J 349 -14.365 13.259 80.118 1.00 92.93 N \ ATOM 3531 NH2 ARG J 349 -14.867 14.444 78.216 1.00 93.06 N \ ATOM 3532 N ASN J 350 -17.109 7.868 81.984 1.00 83.68 N \ ATOM 3533 CA ASN J 350 -16.179 6.752 82.081 1.00 83.37 C \ ATOM 3534 C ASN J 350 -16.704 5.517 81.376 1.00 83.16 C \ ATOM 3535 O ASN J 350 -15.971 4.899 80.598 1.00 83.28 O \ ATOM 3536 CB ASN J 350 -15.899 6.397 83.528 1.00 83.46 C \ ATOM 3537 CG ASN J 350 -15.114 7.444 84.247 1.00 84.58 C \ ATOM 3538 OD1 ASN J 350 -14.511 8.344 83.644 1.00 86.79 O \ ATOM 3539 ND2 ASN J 350 -15.118 7.347 85.579 1.00 85.20 N \ ATOM 3540 N VAL J 351 -17.961 5.151 81.641 1.00 82.69 N \ ATOM 3541 CA VAL J 351 -18.513 3.958 81.009 1.00 82.45 C \ ATOM 3542 C VAL J 351 -18.472 4.161 79.506 1.00 82.61 C \ ATOM 3543 O VAL J 351 -17.991 3.293 78.781 1.00 82.58 O \ ATOM 3544 CB VAL J 351 -19.932 3.621 81.481 1.00 82.17 C \ ATOM 3545 CG1 VAL J 351 -20.437 2.393 80.798 1.00 81.47 C \ ATOM 3546 CG2 VAL J 351 -19.917 3.378 82.948 1.00 82.42 C \ ATOM 3547 N ALA J 352 -18.921 5.342 79.056 1.00 82.69 N \ ATOM 3548 CA ALA J 352 -18.936 5.692 77.633 1.00 82.34 C \ ATOM 3549 C ALA J 352 -17.568 5.458 77.026 1.00 82.23 C \ ATOM 3550 O ALA J 352 -17.430 4.735 76.037 1.00 82.54 O \ ATOM 3551 CB ALA J 352 -19.351 7.094 77.461 1.00 82.29 C \ ATOM 3552 N ALA J 353 -16.561 6.029 77.660 1.00 81.89 N \ ATOM 3553 CA ALA J 353 -15.202 5.934 77.180 1.00 82.07 C \ ATOM 3554 C ALA J 353 -14.721 4.495 77.168 1.00 82.33 C \ ATOM 3555 O ALA J 353 -14.059 4.077 76.226 1.00 82.84 O \ ATOM 3556 CB ALA J 353 -14.279 6.790 78.034 1.00 81.90 C \ ATOM 3557 N LEU J 354 -15.058 3.744 78.211 1.00 82.22 N \ ATOM 3558 CA LEU J 354 -14.564 2.377 78.348 1.00 82.17 C \ ATOM 3559 C LEU J 354 -15.223 1.391 77.360 1.00 82.34 C \ ATOM 3560 O LEU J 354 -14.592 0.443 76.899 1.00 82.37 O \ ATOM 3561 CB LEU J 354 -14.782 1.890 79.779 1.00 82.21 C \ ATOM 3562 CG LEU J 354 -13.708 2.312 80.799 1.00 81.75 C \ ATOM 3563 CD1 LEU J 354 -14.247 2.044 82.146 1.00 81.41 C \ ATOM 3564 CD2 LEU J 354 -12.418 1.549 80.625 1.00 81.65 C \ ATOM 3565 N ARG J 355 -16.493 1.620 77.044 1.00 82.06 N \ ATOM 3566 CA ARG J 355 -17.172 0.797 76.111 1.00 81.76 C \ ATOM 3567 C ARG J 355 -16.432 0.926 74.769 1.00 82.05 C \ ATOM 3568 O ARG J 355 -16.216 -0.067 74.038 1.00 82.01 O \ ATOM 3569 CB ARG J 355 -18.643 1.222 76.030 1.00 81.64 C \ ATOM 3570 CG ARG J 355 -19.435 0.673 77.182 1.00 81.53 C \ ATOM 3571 CD ARG J 355 -20.922 0.739 76.977 1.00 81.70 C \ ATOM 3572 NE ARG J 355 -21.413 0.058 75.780 1.00 81.18 N \ ATOM 3573 CZ ARG J 355 -22.010 0.715 74.786 1.00 82.07 C \ ATOM 3574 NH1 ARG J 355 -22.139 2.045 74.886 1.00 82.67 N \ ATOM 3575 NH2 ARG J 355 -22.465 0.070 73.697 1.00 81.46 N \ ATOM 3576 N ARG J 356 -16.018 2.155 74.463 1.00 81.92 N \ ATOM 3577 CA ARG J 356 -15.479 2.464 73.156 1.00 81.56 C \ ATOM 3578 C ARG J 356 -14.096 1.907 73.060 1.00 81.69 C \ ATOM 3579 O ARG J 356 -13.633 1.602 71.975 1.00 82.00 O \ ATOM 3580 CB ARG J 356 -15.446 3.963 72.947 1.00 81.55 C \ ATOM 3581 CG ARG J 356 -16.774 4.562 72.584 1.00 81.35 C \ ATOM 3582 CD ARG J 356 -16.846 6.072 72.864 1.00 81.11 C \ ATOM 3583 NE ARG J 356 -17.272 6.787 71.669 1.00 81.17 N \ ATOM 3584 CZ ARG J 356 -16.453 7.490 70.902 1.00 80.71 C \ ATOM 3585 NH1 ARG J 356 -15.158 7.606 71.237 1.00 80.94 N \ ATOM 3586 NH2 ARG J 356 -16.930 8.061 69.806 1.00 80.28 N \ ATOM 3587 N SER J 357 -13.410 1.791 74.191 1.00 81.75 N \ ATOM 3588 CA SER J 357 -12.045 1.287 74.185 1.00 81.72 C \ ATOM 3589 C SER J 357 -12.029 -0.171 74.491 1.00 81.69 C \ ATOM 3590 O SER J 357 -10.983 -0.736 74.710 1.00 81.74 O \ ATOM 3591 CB SER J 357 -11.221 1.976 75.236 1.00 81.79 C \ ATOM 3592 OG SER J 357 -11.636 1.537 76.522 1.00 82.11 O \ ATOM 3593 N GLY J 358 -13.198 -0.776 74.539 1.00 82.06 N \ ATOM 3594 CA GLY J 358 -13.298 -2.205 74.821 1.00 82.64 C \ ATOM 3595 C GLY J 358 -12.845 -2.606 76.221 1.00 82.83 C \ ATOM 3596 O GLY J 358 -12.450 -3.738 76.455 1.00 83.23 O \ ATOM 3597 N GLY J 359 -12.911 -1.695 77.173 1.00 82.58 N \ ATOM 3598 CA GLY J 359 -12.455 -2.041 78.470 1.00 82.58 C \ ATOM 3599 C GLY J 359 -11.039 -1.548 78.734 1.00 83.20 C \ ATOM 3600 O GLY J 359 -10.614 -1.528 79.899 1.00 84.03 O \ ATOM 3601 N SER J 360 -10.294 -1.114 77.710 1.00 83.03 N \ ATOM 3602 CA SER J 360 -8.935 -0.579 77.940 1.00 82.83 C \ ATOM 3603 C SER J 360 -8.823 0.728 78.731 1.00 82.85 C \ ATOM 3604 O SER J 360 -9.180 1.760 78.210 1.00 83.14 O \ ATOM 3605 CB SER J 360 -8.201 -0.401 76.621 1.00 82.69 C \ ATOM 3606 OG SER J 360 -6.932 0.216 76.830 1.00 82.72 O \ ATOM 3607 N VAL J 361 -8.275 0.692 79.948 1.00 82.90 N \ ATOM 3608 CA VAL J 361 -8.098 1.912 80.734 1.00 82.85 C \ ATOM 3609 C VAL J 361 -7.253 2.855 79.929 1.00 83.08 C \ ATOM 3610 O VAL J 361 -7.619 4.004 79.711 1.00 83.20 O \ ATOM 3611 CB VAL J 361 -7.388 1.676 82.082 1.00 82.70 C \ ATOM 3612 CG1 VAL J 361 -7.125 2.980 82.777 1.00 81.83 C \ ATOM 3613 CG2 VAL J 361 -8.218 0.800 82.961 1.00 83.23 C \ ATOM 3614 N GLN J 362 -6.113 2.358 79.483 1.00 83.25 N \ ATOM 3615 CA GLN J 362 -5.198 3.140 78.680 1.00 83.58 C \ ATOM 3616 C GLN J 362 -5.935 3.958 77.569 1.00 83.55 C \ ATOM 3617 O GLN J 362 -5.713 5.178 77.422 1.00 83.37 O \ ATOM 3618 CB GLN J 362 -4.162 2.182 78.120 1.00 83.77 C \ ATOM 3619 CG GLN J 362 -3.376 2.705 76.988 1.00 85.34 C \ ATOM 3620 CD GLN J 362 -1.986 2.243 77.074 1.00 87.82 C \ ATOM 3621 OE1 GLN J 362 -1.286 2.556 78.048 1.00 89.95 O \ ATOM 3622 NE2 GLN J 362 -1.548 1.480 76.068 1.00 87.64 N \ ATOM 3623 N GLY J 363 -6.829 3.283 76.830 1.00 83.38 N \ ATOM 3624 CA GLY J 363 -7.625 3.891 75.768 1.00 82.92 C \ ATOM 3625 C GLY J 363 -8.691 4.855 76.243 1.00 82.93 C \ ATOM 3626 O GLY J 363 -8.833 5.951 75.715 1.00 83.13 O \ ATOM 3627 N ALA J 364 -9.468 4.454 77.232 1.00 82.91 N \ ATOM 3628 CA ALA J 364 -10.501 5.351 77.758 1.00 83.17 C \ ATOM 3629 C ALA J 364 -9.866 6.648 78.342 1.00 83.43 C \ ATOM 3630 O ALA J 364 -10.409 7.735 78.175 1.00 83.66 O \ ATOM 3631 CB ALA J 364 -11.365 4.638 78.772 1.00 82.78 C \ ATOM 3632 N LEU J 365 -8.709 6.531 78.984 1.00 83.19 N \ ATOM 3633 CA LEU J 365 -7.989 7.685 79.441 1.00 83.29 C \ ATOM 3634 C LEU J 365 -7.820 8.693 78.314 1.00 83.38 C \ ATOM 3635 O LEU J 365 -8.137 9.879 78.437 1.00 83.47 O \ ATOM 3636 CB LEU J 365 -6.610 7.264 79.964 1.00 83.37 C \ ATOM 3637 CG LEU J 365 -6.234 7.499 81.419 1.00 83.19 C \ ATOM 3638 CD1 LEU J 365 -4.734 7.487 81.472 1.00 82.84 C \ ATOM 3639 CD2 LEU J 365 -6.793 8.840 81.887 1.00 82.45 C \ ATOM 3640 N ASP J 366 -7.300 8.203 77.207 1.00 83.41 N \ ATOM 3641 CA ASP J 366 -6.958 9.061 76.107 1.00 83.53 C \ ATOM 3642 C ASP J 366 -8.216 9.752 75.601 1.00 83.51 C \ ATOM 3643 O ASP J 366 -8.217 10.964 75.377 1.00 83.47 O \ ATOM 3644 CB ASP J 366 -6.299 8.224 75.029 1.00 83.65 C \ ATOM 3645 CG ASP J 366 -5.919 9.036 73.827 1.00 84.80 C \ ATOM 3646 OD1 ASP J 366 -6.645 8.942 72.802 1.00 86.15 O \ ATOM 3647 OD2 ASP J 366 -4.909 9.772 73.906 1.00 85.83 O \ ATOM 3648 N SER J 367 -9.281 8.967 75.453 1.00 83.61 N \ ATOM 3649 CA SER J 367 -10.616 9.476 75.151 1.00 83.87 C \ ATOM 3650 C SER J 367 -11.077 10.554 76.093 1.00 83.46 C \ ATOM 3651 O SER J 367 -11.605 11.561 75.651 1.00 83.96 O \ ATOM 3652 CB SER J 367 -11.650 8.360 75.243 1.00 84.22 C \ ATOM 3653 OG SER J 367 -11.834 7.675 73.996 1.00 87.36 O \ ATOM 3654 N LEU J 368 -10.892 10.338 77.392 1.00 83.00 N \ ATOM 3655 CA LEU J 368 -11.383 11.262 78.398 1.00 82.28 C \ ATOM 3656 C LEU J 368 -10.631 12.559 78.342 1.00 82.23 C \ ATOM 3657 O LEU J 368 -11.168 13.607 78.656 1.00 82.51 O \ ATOM 3658 CB LEU J 368 -11.282 10.667 79.781 1.00 81.73 C \ ATOM 3659 CG LEU J 368 -12.294 9.589 80.048 1.00 81.62 C \ ATOM 3660 CD1 LEU J 368 -11.849 8.814 81.188 1.00 83.03 C \ ATOM 3661 CD2 LEU J 368 -13.693 10.138 80.302 1.00 81.74 C \ ATOM 3662 N LEU J 369 -9.380 12.502 77.925 1.00 82.20 N \ ATOM 3663 CA LEU J 369 -8.567 13.715 77.864 1.00 82.02 C \ ATOM 3664 C LEU J 369 -8.768 14.544 76.594 1.00 82.21 C \ ATOM 3665 O LEU J 369 -8.141 15.596 76.471 1.00 82.40 O \ ATOM 3666 CB LEU J 369 -7.079 13.409 78.103 1.00 81.78 C \ ATOM 3667 CG LEU J 369 -6.786 12.797 79.479 1.00 80.77 C \ ATOM 3668 CD1 LEU J 369 -5.389 12.232 79.590 1.00 79.61 C \ ATOM 3669 CD2 LEU J 369 -7.036 13.790 80.555 1.00 79.66 C \ ATOM 3670 N ASN J 370 -9.625 14.101 75.660 1.00 82.35 N \ ATOM 3671 CA ASN J 370 -10.064 15.018 74.576 1.00 82.54 C \ ATOM 3672 C ASN J 370 -11.575 15.163 74.383 1.00 82.66 C \ ATOM 3673 O ASN J 370 -12.008 15.401 73.270 1.00 82.97 O \ ATOM 3674 CB ASN J 370 -9.359 14.758 73.235 1.00 82.43 C \ ATOM 3675 CG ASN J 370 -8.125 13.901 73.386 1.00 82.48 C \ ATOM 3676 OD1 ASN J 370 -7.055 14.389 73.733 1.00 82.70 O \ ATOM 3677 ND2 ASN J 370 -8.272 12.606 73.126 1.00 82.16 N \ ATOM 3678 N GLY J 371 -12.334 15.324 75.478 1.00 82.89 N \ ATOM 3679 CA GLY J 371 -11.837 15.907 76.750 1.00 82.65 C \ ATOM 3680 C GLY J 371 -11.777 17.435 76.797 1.00 82.58 C \ ATOM 3681 O GLY J 371 -10.839 18.059 76.281 1.00 82.29 O \ TER 3682 GLY J 371 \ TER 4057 ASP K 372 \ TER 4424 GLY L 371 \ TER 4783 GLY M 371 \ TER 5150 GLY N 371 \ TER 5517 GLY O 371 \ TER 5872 ASN P 370 \ TER 6247 GLY Q 371 \ TER 6614 GLY R 371 \ TER 7187 GLN S 74 \ TER 7760 GLN T 74 \ TER 8327 GLN U 74 \ HETATM 8375 O HOH J2001 -12.958 -6.147 81.089 1.00 29.20 O \ HETATM 8376 O HOH J2002 -19.950 14.706 80.133 1.00 60.94 O \ HETATM 8377 O HOH J2003 -13.058 11.624 71.897 1.00 65.86 O \ HETATM 8378 O HOH J2004 -12.463 5.173 74.417 1.00 41.62 O \ HETATM 8379 O HOH J2005 -14.942 10.773 76.143 1.00 61.53 O \ HETATM 8380 O HOH J2006 -13.963 13.200 73.887 1.00 49.62 O \ MASTER 580 0 0 81 15 0 0 63 8407 21 0 90 \ END \ """, "2bwechainJ") cmd.hide("all") cmd.color('grey70', "2bwechainJ") cmd.show('cartoon', "2bwechainJ") cmd.center("2bwechainJ", state=0, origin=1) cmd.zoom("2bwechainJ", animate=-1) cmd.select("e2bweJ1", "c. J & i. 328-371") cmd.color("red", "e2bweJ1") cmd.disable("e2bweJ1")