cmd.read_pdbstr("""\ HEADER PROTEIN FIBRIL 24-SEP-18 6MK1 \ TITLE CRYO-EM OF SELF-ASSEMBLY PEPTIDE FILAMENT HEAT_R1 \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: PEPTIDE HEAT_R1; \ COMPND 3 CHAIN: A, a, B, b, C, c, D, d, E, e, F, f, G, g, H, h, I, i, J, j, K, \ COMPND 4 k, L, l, M, m, N, n, O, o, P, p, Q, q, R, r, S, s, T, t, U, u, V, v, \ COMPND 5 W, w, X, x, Y, y, Z, z; \ COMPND 6 ENGINEERED: YES \ SOURCE MOL_ID: 1; \ SOURCE 2 SYNTHETIC: YES; \ SOURCE 3 ORGANISM_SCIENTIFIC: METHANOTHERMOBACTER THERMAUTOTROPHICUS; \ SOURCE 4 ORGANISM_TAXID: 145262 \ KEYWDS FILAMENT, SELF-ASSEMBLY PEPTIDE FILAMENT, PROTEIN FIBRIL \ EXPDTA ELECTRON MICROSCOPY \ AUTHOR F.WANG,S.A.HUGHES,A.ORLOVA,V.P.CONTICELLO,E.H.EGELMAN \ REVDAT 4 13-MAR-24 6MK1 1 REMARK \ REVDAT 3 27-NOV-19 6MK1 1 REMARK \ REVDAT 2 13-NOV-19 6MK1 1 JRNL \ REVDAT 1 26-JUN-19 6MK1 0 \ JRNL AUTH S.A.HUGHES,F.WANG,S.WANG,M.A.B.KREUTZBERGER,T.OSINSKI, \ JRNL AUTH 2 A.ORLOVA,J.S.WALL,X.ZUO,E.H.EGELMAN,V.P.CONTICELLO \ JRNL TITL AMBIDEXTROUS HELICAL NANOTUBES FROM SELF-ASSEMBLY OF \ JRNL TITL 2 DESIGNED HELICAL HAIRPIN MOTIFS. \ JRNL REF PROC.NATL.ACAD.SCI.USA V. 116 14456 2019 \ JRNL REFN ESSN 1091-6490 \ JRNL PMID 31262809 \ JRNL DOI 10.1073/PNAS.1903910116 \ REMARK 2 \ REMARK 2 RESOLUTION. 6.00 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 SOFTWARE PACKAGES : EMAN2, CTFFIND, UCSF CHIMERA, PHENIX, \ REMARK 3 COOT, PHENIX, SPIDER \ REMARK 3 RECONSTRUCTION SCHEMA : BACK PROJECTION \ REMARK 3 \ REMARK 3 EM MAP-MODEL FITTING AND REFINEMENT \ REMARK 3 PDB ENTRY : NULL \ REMARK 3 REFINEMENT SPACE : NULL \ REMARK 3 REFINEMENT PROTOCOL : NULL \ REMARK 3 REFINEMENT TARGET : NULL \ REMARK 3 OVERALL ANISOTROPIC B VALUE : NULL \ REMARK 3 \ REMARK 3 FITTING PROCEDURE : NULL \ REMARK 3 \ REMARK 3 EM IMAGE RECONSTRUCTION STATISTICS \ REMARK 3 NOMINAL PIXEL SIZE (ANGSTROMS) : NULL \ REMARK 3 ACTUAL PIXEL SIZE (ANGSTROMS) : NULL \ REMARK 3 EFFECTIVE RESOLUTION (ANGSTROMS) : 6.000 \ REMARK 3 NUMBER OF PARTICLES : 56421 \ REMARK 3 CTF CORRECTION METHOD : PHASE FLIPPING AND AMPLITUDE \ REMARK 3 CORRECTION \ REMARK 3 \ REMARK 3 EM RECONSTRUCTION MAGNIFICATION CALIBRATION: NULL \ REMARK 3 \ REMARK 3 OTHER DETAILS: MODEL: MAP FSC 0.38 CUT OFF, D99 AND D MODEL \ REMARK 4 \ REMARK 4 6MK1 COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 25-SEP-18. \ REMARK 100 THE DEPOSITION ID IS D_1000237084. \ REMARK 245 \ REMARK 245 EXPERIMENTAL DETAILS \ REMARK 245 RECONSTRUCTION METHOD : HELICAL \ REMARK 245 SPECIMEN TYPE : NULL \ REMARK 245 \ REMARK 245 ELECTRON MICROSCOPE SAMPLE \ REMARK 245 SAMPLE TYPE : FILAMENT \ REMARK 245 PARTICLE TYPE : HELICAL \ REMARK 245 NAME OF SAMPLE : SELF-ASSEMBLED PEPTIDE FILAMENT \ REMARK 245 SAMPLE CONCENTRATION (MG ML-1) : NULL \ REMARK 245 SAMPLE SUPPORT DETAILS : UNSPECIFIED \ REMARK 245 SAMPLE VITRIFICATION DETAILS : NULL \ REMARK 245 SAMPLE BUFFER : NULL \ REMARK 245 PH : 6.00 \ REMARK 245 SAMPLE DETAILS : NULL \ REMARK 245 \ REMARK 245 DATA ACQUISITION \ REMARK 245 DATE OF EXPERIMENT : NULL \ REMARK 245 NUMBER OF MICROGRAPHS-IMAGES : NULL \ REMARK 245 TEMPERATURE (KELVIN) : NULL \ REMARK 245 MICROSCOPE MODEL : FEI TITAN KRIOS \ REMARK 245 DETECTOR TYPE : FEI FALCON II (4K X 4K) \ REMARK 245 MINIMUM DEFOCUS (NM) : NULL \ REMARK 245 MAXIMUM DEFOCUS (NM) : NULL \ REMARK 245 MINIMUM TILT ANGLE (DEGREES) : NULL \ REMARK 245 MAXIMUM TILT ANGLE (DEGREES) : NULL \ REMARK 245 NOMINAL CS : NULL \ REMARK 245 IMAGING MODE : BRIGHT FIELD \ REMARK 245 ELECTRON DOSE (ELECTRONS NM**-2) : 7000.00 \ REMARK 245 ILLUMINATION MODE : FLOOD BEAM \ REMARK 245 NOMINAL MAGNIFICATION : NULL \ REMARK 245 CALIBRATED MAGNIFICATION : NULL \ REMARK 245 SOURCE : FIELD EMISSION GUN \ REMARK 245 ACCELERATION VOLTAGE (KV) : 300 \ REMARK 245 IMAGING DETAILS : NULL \ REMARK 247 \ REMARK 247 ELECTRON MICROSCOPY \ REMARK 247 THE COORDINATES IN THIS ENTRY WERE GENERATED FROM ELECTRON \ REMARK 247 MICROSCOPY DATA. PROTEIN DATA BANK CONVENTIONS REQUIRE \ REMARK 247 THAT CRYST1 AND SCALE RECORDS BE INCLUDED, BUT THE VALUES \ REMARK 247 ON THESE RECORDS ARE MEANINGLESS EXCEPT FOR THE CALCULATION \ REMARK 247 OF THE STRUCTURE FACTORS. \ REMARK 300 \ REMARK 300 BIOMOLECULE: 1 \ REMARK 300 SEE REMARK 350 FOR THE AUTHOR PROVIDED AND/OR PROGRAM \ REMARK 300 GENERATED ASSEMBLY INFORMATION FOR THE STRUCTURE IN \ REMARK 300 THIS ENTRY. THE REMARK MAY ALSO PROVIDE INFORMATION ON \ REMARK 300 BURIED SURFACE AREA. \ REMARK 300 REMARK: APPLY HELICAL PARAMETERS TO PAIRS OF CHAINS (E.G., A AND A) \ REMARK 300 TO BUILD HELICAL ASSEMBLY. \ REMARK 300 THE ASSEMBLY REPRESENTED IN THIS ENTRY HAS REGULAR \ REMARK 300 HELICAL SYMMETRY WITH THE FOLLOWING PARAMETERS: \ REMARK 300 ROTATION PER SUBUNIT (TWIST) = 34.80 DEGREES \ REMARK 300 RISE PER SUBUNIT (HEIGHT) = 3.02 ANGSTROMS \ 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: 52-MERIC \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: A, a, B, b, C, c, D, d, E, e, \ REMARK 350 AND CHAINS: F, f, G, g, H, h, I, i, J, \ REMARK 350 AND CHAINS: j, K, k, L, l, M, m, N, n, O, \ REMARK 350 AND CHAINS: o, P, p, Q, q, R, r, S, s, \ REMARK 350 AND CHAINS: T, t, U, u, V, v, W, w, X, x, \ REMARK 350 AND CHAINS: Y, y, Z, 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 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 ARG r 20 H ALA r 24 1.59 \ REMARK 500 O ARG o 20 H ALA o 24 1.59 \ REMARK 500 O ARG n 20 H ALA n 24 1.59 \ REMARK 500 O ARG t 20 H ALA t 24 1.59 \ REMARK 500 O ARG k 20 H ALA k 24 1.59 \ REMARK 500 O ARG s 20 H ALA s 24 1.59 \ REMARK 500 O ARG w 20 H ALA w 24 1.59 \ REMARK 500 O ARG l 20 H ALA l 24 1.59 \ REMARK 500 O ARG v 20 H ALA v 24 1.59 \ REMARK 500 O ARG q 20 H ALA q 24 1.59 \ REMARK 500 O ARG p 20 H ALA p 24 1.59 \ REMARK 500 O ARG u 20 H ALA u 24 1.59 \ REMARK 500 O ARG y 20 H ALA y 24 1.59 \ REMARK 500 O ARG z 20 H ALA z 24 1.59 \ REMARK 500 O ARG x 20 H ALA x 24 1.59 \ REMARK 500 O ARG c 20 H ALA c 24 1.59 \ REMARK 500 O ARG g 20 H ALA g 24 1.59 \ REMARK 500 O ARG b 20 H ALA b 24 1.59 \ REMARK 500 O ARG j 20 H ALA j 24 1.59 \ REMARK 500 O ARG i 20 H ALA i 24 1.59 \ REMARK 500 O ARG f 20 H ALA f 24 1.59 \ REMARK 500 O ARG h 20 H ALA h 24 1.59 \ REMARK 500 O ARG a 20 H ALA a 24 1.59 \ REMARK 500 O ARG e 20 H ALA e 24 1.59 \ REMARK 500 O ARG d 20 H ALA d 24 1.59 \ REMARK 500 O ARG m 20 H ALA m 24 1.60 \ 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 TYR a 18 16.15 59.48 \ REMARK 500 TYR b 18 16.21 59.38 \ REMARK 500 TYR c 18 16.25 59.43 \ REMARK 500 TYR d 18 16.20 59.48 \ REMARK 500 TYR e 18 16.18 59.45 \ REMARK 500 TYR f 18 16.24 59.44 \ REMARK 500 TYR g 18 16.17 59.48 \ REMARK 500 TYR h 18 16.16 59.49 \ REMARK 500 TYR i 18 16.23 59.43 \ REMARK 500 TYR j 18 16.19 59.46 \ REMARK 500 TYR k 18 16.12 59.50 \ REMARK 500 TYR l 18 16.25 59.43 \ REMARK 500 TYR m 18 16.17 59.47 \ REMARK 500 TYR n 18 16.16 59.51 \ REMARK 500 TYR o 18 16.27 59.39 \ REMARK 500 TYR p 18 16.20 59.47 \ REMARK 500 TYR q 18 16.17 59.48 \ REMARK 500 TYR r 18 16.16 59.43 \ REMARK 500 TYR s 18 16.17 59.52 \ REMARK 500 TYR t 18 16.17 59.44 \ REMARK 500 TYR u 18 16.14 59.50 \ REMARK 500 TYR v 18 16.16 59.47 \ REMARK 500 TYR w 18 16.14 59.56 \ REMARK 500 TYR x 18 16.12 59.56 \ REMARK 500 TYR y 18 16.11 59.50 \ REMARK 500 TYR z 18 16.21 59.44 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: EMD-9136 RELATED DB: EMDB \ REMARK 900 CRYO-EM OF SELF-ASSEMBLY PEPTIDE FILAMENT HEAT_R1 \ DBREF 6MK1 A 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 a 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 B 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 b 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 C 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 c 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 D 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 d 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 E 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 e 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 F 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 f 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 G 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 g 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 H 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 h 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 I 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 i 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 J 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 j 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 K 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 k 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 L 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 l 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 M 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 m 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 N 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 n 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 O 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 o 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 P 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 p 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 Q 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 q 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 R 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 r 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 S 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 s 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 T 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 t 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 U 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 u 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 V 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 v 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 W 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 w 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 X 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 x 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 Y 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 y 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 Z 1 30 PDB 6MK1 6MK1 1 30 \ DBREF 6MK1 z 1 30 PDB 6MK1 6MK1 1 30 \ SEQRES 1 A 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 A 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 A 30 LEU GLY ARG ILE \ SEQRES 1 a 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 a 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 a 30 LEU GLY ARG ILE \ SEQRES 1 B 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 B 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 B 30 LEU GLY ARG ILE \ SEQRES 1 b 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 b 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 b 30 LEU GLY ARG ILE \ SEQRES 1 C 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 C 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 C 30 LEU GLY ARG ILE \ SEQRES 1 c 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 c 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 c 30 LEU GLY ARG ILE \ SEQRES 1 D 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 D 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 D 30 LEU GLY ARG ILE \ SEQRES 1 d 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 d 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 d 30 LEU GLY ARG ILE \ SEQRES 1 E 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 E 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 E 30 LEU GLY ARG ILE \ SEQRES 1 e 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 e 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 e 30 LEU GLY ARG ILE \ SEQRES 1 F 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 F 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 F 30 LEU GLY ARG ILE \ SEQRES 1 f 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 f 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 f 30 LEU GLY ARG ILE \ SEQRES 1 G 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 G 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 G 30 LEU GLY ARG ILE \ SEQRES 1 g 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 g 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 g 30 LEU GLY ARG ILE \ SEQRES 1 H 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 H 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 H 30 LEU GLY ARG ILE \ SEQRES 1 h 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 h 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 h 30 LEU GLY ARG ILE \ SEQRES 1 I 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 I 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 I 30 LEU GLY ARG ILE \ SEQRES 1 i 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 i 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 i 30 LEU GLY ARG ILE \ SEQRES 1 J 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 J 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 J 30 LEU GLY ARG ILE \ SEQRES 1 j 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 j 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 j 30 LEU GLY ARG ILE \ SEQRES 1 K 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 K 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 K 30 LEU GLY ARG ILE \ SEQRES 1 k 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 k 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 k 30 LEU GLY ARG ILE \ SEQRES 1 L 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 L 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 L 30 LEU GLY ARG ILE \ SEQRES 1 l 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 l 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 l 30 LEU GLY ARG ILE \ SEQRES 1 M 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 M 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 M 30 LEU GLY ARG ILE \ SEQRES 1 m 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 m 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 m 30 LEU GLY ARG ILE \ SEQRES 1 N 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 N 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 N 30 LEU GLY ARG ILE \ SEQRES 1 n 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 n 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 n 30 LEU GLY ARG ILE \ SEQRES 1 O 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 O 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 O 30 LEU GLY ARG ILE \ SEQRES 1 o 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 o 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 o 30 LEU GLY ARG ILE \ SEQRES 1 P 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 P 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 P 30 LEU GLY ARG ILE \ SEQRES 1 p 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 p 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 p 30 LEU GLY ARG ILE \ SEQRES 1 Q 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 Q 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 Q 30 LEU GLY ARG ILE \ SEQRES 1 q 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 q 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 q 30 LEU GLY ARG ILE \ SEQRES 1 R 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 R 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 R 30 LEU GLY ARG ILE \ SEQRES 1 r 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 r 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 r 30 LEU GLY ARG ILE \ SEQRES 1 S 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 S 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 S 30 LEU GLY ARG ILE \ SEQRES 1 s 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 s 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 s 30 LEU GLY ARG ILE \ SEQRES 1 T 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 T 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 T 30 LEU GLY ARG ILE \ SEQRES 1 t 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 t 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 t 30 LEU GLY ARG ILE \ SEQRES 1 U 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 U 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 U 30 LEU GLY ARG ILE \ SEQRES 1 u 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 u 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 u 30 LEU GLY ARG ILE \ SEQRES 1 V 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 V 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 V 30 LEU GLY ARG ILE \ SEQRES 1 v 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 v 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 v 30 LEU GLY ARG ILE \ SEQRES 1 W 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 W 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 W 30 LEU GLY ARG ILE \ SEQRES 1 w 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 w 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 w 30 LEU GLY ARG ILE \ SEQRES 1 X 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 X 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 X 30 LEU GLY ARG ILE \ SEQRES 1 x 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 x 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 x 30 LEU GLY ARG ILE \ SEQRES 1 Y 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 Y 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 Y 30 LEU GLY ARG ILE \ SEQRES 1 y 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 y 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 y 30 LEU GLY ARG ILE \ SEQRES 1 Z 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 Z 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 Z 30 LEU GLY ARG ILE \ SEQRES 1 z 30 ASP GLU ARG ALA VAL GLU ALA LEU ILE LYS ALA LEU LYS \ SEQRES 2 z 30 ASP PRO ASP TRP TYR VAL ARG LYS ALA ALA ALA GLU ALA \ SEQRES 3 z 30 LEU GLY ARG ILE \ HELIX 1 AA1 ASP A 1 LYS A 13 1 13 \ HELIX 2 AA2 ASP A 16 ILE A 30 1 15 \ HELIX 3 AA3 GLU a 2 LEU a 12 1 11 \ HELIX 4 AA4 TYR a 18 GLY a 28 1 11 \ HELIX 5 AA5 GLU B 2 LYS B 13 1 12 \ HELIX 6 AA6 ASP B 16 ILE B 30 1 15 \ HELIX 7 AA7 GLU b 2 LEU b 12 1 11 \ HELIX 8 AA8 TYR b 18 GLY b 28 1 11 \ HELIX 9 AA9 GLU C 2 LYS C 13 1 12 \ HELIX 10 AB1 ASP C 16 ILE C 30 1 15 \ HELIX 11 AB2 GLU c 2 LEU c 12 1 11 \ HELIX 12 AB3 TYR c 18 GLY c 28 1 11 \ HELIX 13 AB4 GLU D 2 LYS D 13 1 12 \ HELIX 14 AB5 ASP D 16 ILE D 30 1 15 \ HELIX 15 AB6 GLU d 2 LEU d 12 1 11 \ HELIX 16 AB7 TYR d 18 GLY d 28 1 11 \ HELIX 17 AB8 GLU E 2 LYS E 13 1 12 \ HELIX 18 AB9 ASP E 16 ILE E 30 1 15 \ HELIX 19 AC1 GLU e 2 LEU e 12 1 11 \ HELIX 20 AC2 TYR e 18 GLY e 28 1 11 \ HELIX 21 AC3 GLU F 2 LYS F 13 1 12 \ HELIX 22 AC4 ASP F 16 ILE F 30 1 15 \ HELIX 23 AC5 GLU f 2 LEU f 12 1 11 \ HELIX 24 AC6 TYR f 18 GLY f 28 1 11 \ HELIX 25 AC7 GLU G 2 LYS G 13 1 12 \ HELIX 26 AC8 ASP G 16 ILE G 30 1 15 \ HELIX 27 AC9 GLU g 2 LEU g 12 1 11 \ HELIX 28 AD1 TYR g 18 GLY g 28 1 11 \ HELIX 29 AD2 GLU H 2 LYS H 13 1 12 \ HELIX 30 AD3 ASP H 16 ILE H 30 1 15 \ HELIX 31 AD4 GLU h 2 LEU h 12 1 11 \ HELIX 32 AD5 TYR h 18 GLY h 28 1 11 \ HELIX 33 AD6 GLU I 2 LYS I 13 1 12 \ HELIX 34 AD7 ASP I 16 ILE I 30 1 15 \ HELIX 35 AD8 GLU i 2 LEU i 12 1 11 \ HELIX 36 AD9 TYR i 18 GLY i 28 1 11 \ HELIX 37 AE1 GLU J 2 LYS J 13 1 12 \ HELIX 38 AE2 ASP J 16 ILE J 30 1 15 \ HELIX 39 AE3 GLU j 2 LEU j 12 1 11 \ HELIX 40 AE4 TYR j 18 GLY j 28 1 11 \ HELIX 41 AE5 GLU K 2 LYS K 13 1 12 \ HELIX 42 AE6 ASP K 16 ILE K 30 1 15 \ HELIX 43 AE7 GLU k 2 LEU k 12 1 11 \ HELIX 44 AE8 TYR k 18 GLY k 28 1 11 \ HELIX 45 AE9 GLU L 2 LYS L 13 1 12 \ HELIX 46 AF1 ASP L 16 ILE L 30 1 15 \ HELIX 47 AF2 GLU l 2 LEU l 12 1 11 \ HELIX 48 AF3 TYR l 18 GLY l 28 1 11 \ HELIX 49 AF4 GLU M 2 LYS M 13 1 12 \ HELIX 50 AF5 ASP M 16 ILE M 30 1 15 \ HELIX 51 AF6 GLU m 2 LEU m 12 1 11 \ HELIX 52 AF7 TYR m 18 GLY m 28 1 11 \ HELIX 53 AF8 GLU N 2 LYS N 13 1 12 \ HELIX 54 AF9 ASP N 16 ILE N 30 1 15 \ HELIX 55 AG1 GLU n 2 LEU n 12 1 11 \ HELIX 56 AG2 TYR n 18 GLY n 28 1 11 \ HELIX 57 AG3 GLU O 2 LYS O 13 1 12 \ HELIX 58 AG4 ASP O 16 ILE O 30 1 15 \ HELIX 59 AG5 GLU o 2 LEU o 12 1 11 \ HELIX 60 AG6 TYR o 18 GLY o 28 1 11 \ HELIX 61 AG7 GLU P 2 LYS P 13 1 12 \ HELIX 62 AG8 ASP P 16 ILE P 30 1 15 \ HELIX 63 AG9 GLU p 2 LEU p 12 1 11 \ HELIX 64 AH1 TYR p 18 GLY p 28 1 11 \ HELIX 65 AH2 GLU Q 2 LYS Q 13 1 12 \ HELIX 66 AH3 ASP Q 16 ILE Q 30 1 15 \ HELIX 67 AH4 GLU q 2 LEU q 12 1 11 \ HELIX 68 AH5 TYR q 18 GLY q 28 1 11 \ HELIX 69 AH6 GLU R 2 LYS R 13 1 12 \ HELIX 70 AH7 ASP R 16 ILE R 30 1 15 \ HELIX 71 AH8 GLU r 2 LEU r 12 1 11 \ HELIX 72 AH9 TYR r 18 GLY r 28 1 11 \ HELIX 73 AI1 GLU S 2 LYS S 13 1 12 \ HELIX 74 AI2 ASP S 16 ILE S 30 1 15 \ HELIX 75 AI3 GLU s 2 LEU s 12 1 11 \ HELIX 76 AI4 TYR s 18 GLY s 28 1 11 \ HELIX 77 AI5 GLU T 2 LYS T 13 1 12 \ HELIX 78 AI6 ASP T 16 ILE T 30 1 15 \ HELIX 79 AI7 GLU t 2 LEU t 12 1 11 \ HELIX 80 AI8 TYR t 18 GLY t 28 1 11 \ HELIX 81 AI9 GLU U 2 LYS U 13 1 12 \ HELIX 82 AJ1 ASP U 16 ILE U 30 1 15 \ HELIX 83 AJ2 GLU u 2 LEU u 12 1 11 \ HELIX 84 AJ3 TYR u 18 GLY u 28 1 11 \ HELIX 85 AJ4 GLU V 2 LYS V 13 1 12 \ HELIX 86 AJ5 ASP V 16 ILE V 30 1 15 \ HELIX 87 AJ6 GLU v 2 LEU v 12 1 11 \ HELIX 88 AJ7 TYR v 18 GLY v 28 1 11 \ HELIX 89 AJ8 GLU W 2 LYS W 13 1 12 \ HELIX 90 AJ9 ASP W 16 ILE W 30 1 15 \ HELIX 91 AK1 GLU w 2 LEU w 12 1 11 \ HELIX 92 AK2 TYR w 18 GLY w 28 1 11 \ HELIX 93 AK3 GLU X 2 LYS X 13 1 12 \ HELIX 94 AK4 ASP X 16 ILE X 30 1 15 \ HELIX 95 AK5 GLU x 2 LEU x 12 1 11 \ HELIX 96 AK6 TYR x 18 GLY x 28 1 11 \ HELIX 97 AK7 GLU Y 2 LYS Y 13 1 12 \ HELIX 98 AK8 ASP Y 16 ILE Y 30 1 15 \ HELIX 99 AK9 GLU y 2 LEU y 12 1 11 \ HELIX 100 AL1 TYR y 18 GLY y 28 1 11 \ HELIX 101 AL2 GLU Z 2 LYS Z 13 1 12 \ HELIX 102 AL3 ASP Z 16 ILE Z 30 1 15 \ HELIX 103 AL4 GLU z 2 LEU z 12 1 11 \ HELIX 104 AL5 TYR z 18 GLY z 28 1 11 \ CRYST1 1.000 1.000 1.000 90.00 90.00 90.00 P 1 1 \ 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 1.000000 0.000000 0.000000 0.00000 \ SCALE2 0.000000 1.000000 0.000000 0.00000 \ SCALE3 0.000000 0.000000 1.000000 0.00000 \ TER 483 ILE A 30 \ TER 966 ILE a 30 \ TER 1449 ILE B 30 \ TER 1932 ILE b 30 \ TER 2415 ILE C 30 \ TER 2898 ILE c 30 \ TER 3381 ILE D 30 \ TER 3864 ILE d 30 \ TER 4347 ILE E 30 \ TER 4830 ILE e 30 \ TER 5313 ILE F 30 \ TER 5796 ILE f 30 \ TER 6279 ILE G 30 \ TER 6762 ILE g 30 \ TER 7245 ILE H 30 \ TER 7728 ILE h 30 \ TER 8211 ILE I 30 \ TER 8694 ILE i 30 \ ATOM 8695 N ASP J 1 -24.331 -7.316 -14.960 1.00144.00 N \ ATOM 8696 CA ASP J 1 -25.594 -7.600 -14.297 1.00144.00 C \ ATOM 8697 C ASP J 1 -26.098 -8.982 -14.554 1.00144.00 C \ ATOM 8698 O ASP J 1 -26.173 -9.442 -15.677 1.00144.00 O \ ATOM 8699 CB ASP J 1 -26.665 -6.652 -14.750 1.00185.14 C \ ATOM 8700 CG ASP J 1 -27.959 -6.792 -13.957 1.00185.14 C \ ATOM 8701 OD1 ASP J 1 -27.982 -7.505 -12.931 1.00185.14 O \ ATOM 8702 OD2 ASP J 1 -28.979 -6.218 -14.394 1.00185.14 O \ ATOM 8703 H1 ASP J 1 -23.743 -6.955 -14.443 1.00172.80 H \ ATOM 8704 HA ASP J 1 -25.475 -7.506 -13.341 1.00172.80 H \ ATOM 8705 HB2 ASP J 1 -26.328 -5.749 -14.658 1.00222.17 H \ ATOM 8706 HB3 ASP J 1 -26.842 -6.853 -15.682 1.00222.17 H \ ATOM 8707 N GLU J 2 -26.550 -9.570 -13.458 1.00144.00 N \ ATOM 8708 CA GLU J 2 -26.897 -10.979 -13.412 1.00144.00 C \ ATOM 8709 C GLU J 2 -28.286 -11.247 -13.980 1.00144.00 C \ ATOM 8710 O GLU J 2 -28.477 -12.193 -14.751 1.00144.00 O \ ATOM 8711 CB GLU J 2 -26.779 -11.409 -11.966 1.00193.43 C \ ATOM 8712 CG GLU J 2 -25.316 -11.369 -11.482 1.00193.43 C \ ATOM 8713 CD GLU J 2 -25.120 -11.308 -9.974 1.00193.43 C \ ATOM 8714 OE1 GLU J 2 -26.081 -10.954 -9.256 1.00193.43 O \ ATOM 8715 OE2 GLU J 2 -23.990 -11.611 -9.515 1.00193.43 O \ ATOM 8716 H GLU J 2 -26.626 -9.183 -12.696 1.00172.80 H \ ATOM 8717 HA GLU J 2 -26.263 -11.499 -13.932 1.00172.80 H \ ATOM 8718 HB2 GLU J 2 -27.326 -10.829 -11.419 1.00232.12 H \ ATOM 8719 HB3 GLU J 2 -27.098 -12.316 -11.990 1.00232.12 H \ ATOM 8720 HG2 GLU J 2 -24.881 -12.165 -11.809 1.00232.12 H \ ATOM 8721 HG3 GLU J 2 -24.887 -10.578 -11.841 1.00232.12 H \ ATOM 8722 N ARG J 3 -29.286 -10.462 -13.570 1.00144.00 N \ ATOM 8723 CA ARG J 3 -30.599 -10.555 -14.204 1.00144.00 C \ ATOM 8724 C ARG J 3 -30.494 -10.370 -15.701 1.00144.00 C \ ATOM 8725 O ARG J 3 -31.207 -11.026 -16.470 1.00144.00 O \ ATOM 8726 CB ARG J 3 -31.522 -9.496 -13.654 1.00211.56 C \ ATOM 8727 CG ARG J 3 -31.864 -9.691 -12.256 1.00211.56 C \ ATOM 8728 CD ARG J 3 -32.699 -8.537 -11.846 1.00211.56 C \ ATOM 8729 NE ARG J 3 -32.722 -8.484 -10.397 1.00211.56 N \ ATOM 8730 CZ ARG J 3 -33.354 -7.559 -9.686 1.00211.56 C \ ATOM 8731 NH1 ARG J 3 -34.137 -6.669 -10.290 1.00211.56 N \ ATOM 8732 NH2 ARG J 3 -33.209 -7.576 -8.357 1.00211.56 N \ ATOM 8733 H ARG J 3 -29.232 -9.883 -12.933 1.00172.80 H \ ATOM 8734 HA ARG J 3 -30.997 -11.419 -14.025 1.00172.80 H \ ATOM 8735 HB2 ARG J 3 -31.041 -8.661 -13.722 1.00253.87 H \ ATOM 8736 HB3 ARG J 3 -32.340 -9.456 -14.167 1.00253.87 H \ ATOM 8737 HG2 ARG J 3 -32.367 -10.522 -12.161 1.00253.87 H \ ATOM 8738 HG3 ARG J 3 -31.060 -9.710 -11.713 1.00253.87 H \ ATOM 8739 HD2 ARG J 3 -32.270 -7.724 -12.188 1.00253.87 H \ ATOM 8740 HD3 ARG J 3 -33.596 -8.630 -12.223 1.00253.87 H \ ATOM 8741 HE ARG J 3 -32.852 -9.283 -10.084 1.00253.87 H \ ATOM 8742 HH11 ARG J 3 -34.200 -6.628 -11.155 1.00253.87 H \ ATOM 8743 HH12 ARG J 3 -34.586 -6.136 -9.814 1.00253.87 H \ ATOM 8744 HH21 ARG J 3 -32.780 -8.168 -8.028 1.00253.87 H \ ATOM 8745 HH22 ARG J 3 -33.592 -7.110 -7.824 1.00253.87 H \ ATOM 8746 N ALA J 4 -29.639 -9.444 -16.128 1.00144.00 N \ ATOM 8747 CA ALA J 4 -29.396 -9.287 -17.549 1.00144.00 C \ ATOM 8748 C ALA J 4 -28.892 -10.590 -18.141 1.00144.00 C \ ATOM 8749 O ALA J 4 -29.380 -11.026 -19.183 1.00144.00 O \ ATOM 8750 CB ALA J 4 -28.411 -8.150 -17.797 1.00196.36 C \ ATOM 8751 H ALA J 4 -29.201 -8.901 -15.624 1.00172.80 H \ ATOM 8752 HA ALA J 4 -30.238 -9.046 -17.983 1.00172.80 H \ ATOM 8753 HB1 ALA J 4 -28.352 -7.981 -18.749 1.00235.64 H \ ATOM 8754 HB2 ALA J 4 -28.726 -7.353 -17.346 1.00235.64 H \ ATOM 8755 HB3 ALA J 4 -27.543 -8.395 -17.448 1.00235.64 H \ ATOM 8756 N VAL J 5 -27.977 -11.268 -17.445 1.00144.00 N \ ATOM 8757 CA VAL J 5 -27.549 -12.597 -17.880 1.00144.00 C \ ATOM 8758 C VAL J 5 -28.742 -13.539 -17.937 1.00144.00 C \ ATOM 8759 O VAL J 5 -28.917 -14.278 -18.911 1.00144.00 O \ ATOM 8760 CB VAL J 5 -26.443 -13.150 -16.955 1.00209.44 C \ ATOM 8761 CG1 VAL J 5 -26.048 -14.566 -17.333 1.00209.44 C \ ATOM 8762 CG2 VAL J 5 -25.218 -12.282 -17.009 1.00209.44 C \ ATOM 8763 H VAL J 5 -27.607 -10.983 -16.730 1.00172.80 H \ ATOM 8764 HA VAL J 5 -27.186 -12.511 -18.772 1.00172.80 H \ ATOM 8765 HB VAL J 5 -26.748 -13.166 -16.043 1.00251.33 H \ ATOM 8766 HG11 VAL J 5 -25.306 -14.809 -16.761 1.00251.33 H \ ATOM 8767 HG12 VAL J 5 -26.771 -15.193 -17.193 1.00251.33 H \ ATOM 8768 HG13 VAL J 5 -25.762 -14.566 -18.257 1.00251.33 H \ ATOM 8769 HG21 VAL J 5 -24.549 -12.633 -16.404 1.00251.33 H \ ATOM 8770 HG22 VAL J 5 -24.872 -12.256 -17.913 1.00251.33 H \ ATOM 8771 HG23 VAL J 5 -25.443 -11.393 -16.741 1.00251.33 H \ ATOM 8772 N GLU J 6 -29.572 -13.539 -16.891 1.00144.00 N \ ATOM 8773 CA GLU J 6 -30.754 -14.396 -16.872 1.00144.00 C \ ATOM 8774 C GLU J 6 -31.655 -14.112 -18.067 1.00144.00 C \ ATOM 8775 O GLU J 6 -32.156 -15.039 -18.713 1.00144.00 O \ ATOM 8776 CB GLU J 6 -31.518 -14.194 -15.563 1.00193.43 C \ ATOM 8777 CG GLU J 6 -30.761 -14.664 -14.334 1.00193.43 C \ ATOM 8778 CD GLU J 6 -31.509 -14.392 -13.043 1.00193.43 C \ ATOM 8779 OE1 GLU J 6 -32.566 -13.730 -13.094 1.00193.43 O \ ATOM 8780 OE2 GLU J 6 -31.033 -14.835 -11.976 1.00193.43 O \ ATOM 8781 H GLU J 6 -29.479 -13.044 -16.196 1.00172.80 H \ ATOM 8782 HA GLU J 6 -30.474 -15.319 -16.928 1.00172.80 H \ ATOM 8783 HB2 GLU J 6 -31.704 -13.246 -15.461 1.00232.12 H \ ATOM 8784 HB3 GLU J 6 -32.354 -14.685 -15.616 1.00232.12 H \ ATOM 8785 HG2 GLU J 6 -30.610 -15.619 -14.412 1.00232.12 H \ ATOM 8786 HG3 GLU J 6 -29.914 -14.194 -14.294 1.00232.12 H \ ATOM 8787 N ALA J 7 -31.858 -12.835 -18.385 1.00144.00 N \ ATOM 8788 CA ALA J 7 -32.613 -12.482 -19.580 1.00144.00 C \ ATOM 8789 C ALA J 7 -31.905 -12.973 -20.834 1.00144.00 C \ ATOM 8790 O ALA J 7 -32.547 -13.454 -21.774 1.00144.00 O \ ATOM 8791 CB ALA J 7 -32.810 -10.971 -19.639 1.00196.36 C \ ATOM 8792 H ALA J 7 -31.560 -12.162 -17.942 1.00172.80 H \ ATOM 8793 HA ALA J 7 -33.489 -12.895 -19.554 1.00172.80 H \ ATOM 8794 HB1 ALA J 7 -33.326 -10.739 -20.427 1.00235.64 H \ ATOM 8795 HB2 ALA J 7 -33.268 -10.668 -18.841 1.00235.64 H \ ATOM 8796 HB3 ALA J 7 -31.939 -10.546 -19.690 1.00235.64 H \ ATOM 8797 N LEU J 8 -30.578 -12.859 -20.864 1.00144.00 N \ ATOM 8798 CA LEU J 8 -29.823 -13.335 -22.014 1.00144.00 C \ ATOM 8799 C LEU J 8 -29.913 -14.850 -22.135 1.00144.00 C \ ATOM 8800 O LEU J 8 -29.891 -15.396 -23.244 1.00144.00 O \ ATOM 8801 CB LEU J 8 -28.369 -12.887 -21.893 1.00213.17 C \ ATOM 8802 CG LEU J 8 -28.063 -11.386 -21.986 1.00213.17 C \ ATOM 8803 CD1 LEU J 8 -26.603 -11.119 -21.676 1.00213.17 C \ ATOM 8804 CD2 LEU J 8 -28.429 -10.799 -23.321 1.00213.17 C \ ATOM 8805 H LEU J 8 -30.096 -12.519 -20.240 1.00172.80 H \ ATOM 8806 HA LEU J 8 -30.190 -12.945 -22.819 1.00172.80 H \ ATOM 8807 HB2 LEU J 8 -28.075 -13.158 -21.015 1.00255.80 H \ ATOM 8808 HB3 LEU J 8 -27.837 -13.329 -22.573 1.00255.80 H \ ATOM 8809 HG LEU J 8 -28.575 -10.896 -21.343 1.00255.80 H \ ATOM 8810 HD11 LEU J 8 -26.436 -10.163 -21.702 1.00255.80 H \ ATOM 8811 HD12 LEU J 8 -26.393 -11.455 -20.791 1.00255.80 H \ ATOM 8812 HD13 LEU J 8 -26.044 -11.562 -22.334 1.00255.80 H \ ATOM 8813 HD21 LEU J 8 -28.205 -9.854 -23.298 1.00255.80 H \ ATOM 8814 HD22 LEU J 8 -27.920 -11.238 -24.017 1.00255.80 H \ ATOM 8815 HD23 LEU J 8 -29.380 -10.900 -23.470 1.00255.80 H \ ATOM 8816 N ILE J 9 -30.003 -15.549 -21.005 1.00144.00 N \ ATOM 8817 CA ILE J 9 -30.268 -16.982 -21.050 1.00144.00 C \ ATOM 8818 C ILE J 9 -31.658 -17.227 -21.613 1.00144.00 C \ ATOM 8819 O ILE J 9 -31.879 -18.161 -22.392 1.00144.00 O \ ATOM 8820 CB ILE J 9 -30.093 -17.607 -19.652 1.00213.17 C \ ATOM 8821 CG1 ILE J 9 -28.635 -17.464 -19.192 1.00213.17 C \ ATOM 8822 CG2 ILE J 9 -30.493 -19.101 -19.651 1.00213.17 C \ ATOM 8823 CD1 ILE J 9 -28.395 -17.767 -17.725 1.00213.17 C \ ATOM 8824 H ILE J 9 -29.911 -15.220 -20.217 1.00172.80 H \ ATOM 8825 HA ILE J 9 -29.625 -17.386 -21.654 1.00172.80 H \ ATOM 8826 HB ILE J 9 -30.662 -17.115 -19.041 1.00255.80 H \ ATOM 8827 HG12 ILE J 9 -28.085 -18.065 -19.718 1.00255.80 H \ ATOM 8828 HG13 ILE J 9 -28.328 -16.560 -19.343 1.00255.80 H \ ATOM 8829 HG21 ILE J 9 -30.358 -19.471 -18.768 1.00255.80 H \ ATOM 8830 HG22 ILE J 9 -31.427 -19.220 -19.872 1.00255.80 H \ ATOM 8831 HG23 ILE J 9 -29.934 -19.559 -20.298 1.00255.80 H \ ATOM 8832 HD11 ILE J 9 -27.456 -17.611 -17.532 1.00255.80 H \ ATOM 8833 HD12 ILE J 9 -28.947 -17.170 -17.197 1.00255.80 H \ ATOM 8834 HD13 ILE J 9 -28.615 -18.691 -17.538 1.00255.80 H \ ATOM 8835 N LYS J 10 -32.625 -16.402 -21.216 1.00144.00 N \ ATOM 8836 CA LYS J 10 -33.938 -16.482 -21.837 1.00144.00 C \ ATOM 8837 C LYS J 10 -33.863 -16.092 -23.299 1.00144.00 C \ ATOM 8838 O LYS J 10 -34.645 -16.587 -24.119 1.00144.00 O \ ATOM 8839 CB LYS J 10 -34.922 -15.586 -21.101 1.00215.96 C \ ATOM 8840 CG LYS J 10 -35.182 -16.042 -19.703 1.00215.96 C \ ATOM 8841 CD LYS J 10 -36.155 -15.132 -19.012 1.00215.96 C \ ATOM 8842 CE LYS J 10 -36.462 -15.651 -17.629 1.00215.96 C \ ATOM 8843 NZ LYS J 10 -35.263 -15.587 -16.747 1.00215.96 N \ ATOM 8844 H LYS J 10 -32.537 -15.786 -20.621 1.00172.80 H \ ATOM 8845 HA LYS J 10 -34.260 -17.396 -21.789 1.00172.80 H \ ATOM 8846 HB2 LYS J 10 -34.560 -14.686 -21.073 1.00259.15 H \ ATOM 8847 HB3 LYS J 10 -35.758 -15.579 -21.591 1.00259.15 H \ ATOM 8848 HG2 LYS J 10 -35.551 -16.936 -19.734 1.00259.15 H \ ATOM 8849 HG3 LYS J 10 -34.347 -16.029 -19.220 1.00259.15 H \ ATOM 8850 HD2 LYS J 10 -35.760 -14.248 -18.945 1.00259.15 H \ ATOM 8851 HD3 LYS J 10 -36.970 -15.089 -19.535 1.00259.15 H \ ATOM 8852 HE2 LYS J 10 -37.171 -15.112 -17.248 1.00259.15 H \ ATOM 8853 HE3 LYS J 10 -36.736 -16.577 -17.711 1.00259.15 H \ ATOM 8854 HZ1 LYS J 10 -35.459 -15.895 -15.937 1.00259.15 H \ ATOM 8855 HZ2 LYS J 10 -34.606 -16.077 -17.091 1.00259.15 H \ ATOM 8856 HZ3 LYS J 10 -34.994 -14.741 -16.685 1.00259.15 H \ ATOM 8857 N ALA J 11 -32.924 -15.217 -23.644 1.00144.00 N \ ATOM 8858 CA ALA J 11 -32.682 -14.941 -25.048 1.00144.00 C \ ATOM 8859 C ALA J 11 -32.026 -16.135 -25.730 1.00144.00 C \ ATOM 8860 O ALA J 11 -32.194 -16.324 -26.940 1.00144.00 O \ ATOM 8861 CB ALA J 11 -31.836 -13.684 -25.191 1.00196.36 C \ ATOM 8862 H ALA J 11 -32.421 -14.782 -23.098 1.00172.80 H \ ATOM 8863 HA ALA J 11 -33.524 -14.751 -25.475 1.00172.80 H \ ATOM 8864 HB1 ALA J 11 -31.731 -13.473 -26.126 1.00235.64 H \ ATOM 8865 HB2 ALA J 11 -32.277 -12.946 -24.748 1.00235.64 H \ ATOM 8866 HB3 ALA J 11 -30.965 -13.823 -24.796 1.00235.64 H \ ATOM 8867 N LEU J 12 -31.290 -16.959 -24.973 1.00144.00 N \ ATOM 8868 CA LEU J 12 -30.865 -18.254 -25.494 1.00144.00 C \ ATOM 8869 C LEU J 12 -32.012 -19.251 -25.545 1.00144.00 C \ ATOM 8870 O LEU J 12 -31.892 -20.276 -26.224 1.00144.00 O \ ATOM 8871 CB LEU J 12 -29.717 -18.834 -24.668 1.00213.17 C \ ATOM 8872 CG LEU J 12 -28.381 -18.102 -24.698 1.00213.17 C \ ATOM 8873 CD1 LEU J 12 -27.445 -18.767 -23.720 1.00213.17 C \ ATOM 8874 CD2 LEU J 12 -27.770 -18.121 -26.083 1.00213.17 C \ ATOM 8875 H LEU J 12 -31.025 -16.788 -24.174 1.00172.80 H \ ATOM 8876 HA LEU J 12 -30.544 -18.127 -26.390 1.00172.80 H \ ATOM 8877 HB2 LEU J 12 -29.981 -18.889 -23.743 1.00255.80 H \ ATOM 8878 HB3 LEU J 12 -29.535 -19.724 -25.005 1.00255.80 H \ ATOM 8879 HG LEU J 12 -28.501 -17.173 -24.442 1.00255.80 H \ ATOM 8880 HD11 LEU J 12 -26.586 -18.319 -23.754 1.00255.80 H \ ATOM 8881 HD12 LEU J 12 -27.826 -18.703 -22.831 1.00255.80 H \ ATOM 8882 HD13 LEU J 12 -27.344 -19.696 -23.982 1.00255.80 H \ ATOM 8883 HD21 LEU J 12 -26.929 -17.640 -26.053 1.00255.80 H \ ATOM 8884 HD22 LEU J 12 -27.612 -19.037 -26.358 1.00255.80 H \ ATOM 8885 HD23 LEU J 12 -28.368 -17.693 -26.706 1.00255.80 H \ ATOM 8886 N LYS J 13 -33.116 -18.968 -24.864 1.00144.00 N \ ATOM 8887 CA LYS J 13 -34.361 -19.702 -25.030 1.00144.00 C \ ATOM 8888 C LYS J 13 -35.323 -19.027 -26.006 1.00144.00 C \ ATOM 8889 O LYS J 13 -36.480 -19.449 -26.106 1.00144.00 O \ ATOM 8890 CB LYS J 13 -35.026 -19.869 -23.666 1.00215.96 C \ ATOM 8891 CG LYS J 13 -34.237 -20.753 -22.721 1.00215.96 C \ ATOM 8892 CD LYS J 13 -34.935 -20.891 -21.394 1.00215.96 C \ ATOM 8893 CE LYS J 13 -34.148 -21.766 -20.444 1.00215.96 C \ ATOM 8894 NZ LYS J 13 -34.839 -21.887 -19.137 1.00215.96 N \ ATOM 8895 H LYS J 13 -33.170 -18.346 -24.281 1.00172.80 H \ ATOM 8896 HA LYS J 13 -34.165 -20.582 -25.381 1.00172.80 H \ ATOM 8897 HB2 LYS J 13 -35.102 -18.986 -23.272 1.00259.15 H \ ATOM 8898 HB3 LYS J 13 -35.906 -20.248 -23.797 1.00259.15 H \ ATOM 8899 HG2 LYS J 13 -34.143 -21.628 -23.127 1.00259.15 H \ ATOM 8900 HG3 LYS J 13 -33.365 -20.350 -22.583 1.00259.15 H \ ATOM 8901 HD2 LYS J 13 -35.032 -20.005 -21.010 1.00259.15 H \ ATOM 8902 HD3 LYS J 13 -35.806 -21.286 -21.550 1.00259.15 H \ ATOM 8903 HE2 LYS J 13 -34.060 -22.646 -20.840 1.00259.15 H \ ATOM 8904 HE3 LYS J 13 -33.275 -21.366 -20.307 1.00259.15 H \ ATOM 8905 HZ1 LYS J 13 -34.369 -22.399 -18.580 1.00259.15 H \ ATOM 8906 HZ2 LYS J 13 -34.933 -21.075 -18.784 1.00259.15 H \ ATOM 8907 HZ3 LYS J 13 -35.642 -22.248 -19.261 1.00259.15 H \ ATOM 8908 N ASP J 14 -34.881 -18.007 -26.726 1.00144.00 N \ ATOM 8909 CA ASP J 14 -35.769 -17.231 -27.588 1.00144.00 C \ ATOM 8910 C ASP J 14 -36.065 -17.986 -28.878 1.00144.00 C \ ATOM 8911 O ASP J 14 -35.124 -18.234 -29.643 1.00144.00 O \ ATOM 8912 CB ASP J 14 -35.121 -15.881 -27.895 1.00185.14 C \ ATOM 8913 CG ASP J 14 -36.049 -14.911 -28.651 1.00185.14 C \ ATOM 8914 OD1 ASP J 14 -37.041 -15.326 -29.267 1.00185.14 O \ ATOM 8915 OD2 ASP J 14 -35.836 -13.689 -28.557 1.00185.14 O \ ATOM 8916 H ASP J 14 -34.061 -17.741 -26.738 1.00172.80 H \ ATOM 8917 HA ASP J 14 -36.565 -17.031 -27.085 1.00172.80 H \ ATOM 8918 HB2 ASP J 14 -34.887 -15.444 -27.077 1.00222.17 H \ ATOM 8919 HB3 ASP J 14 -34.314 -16.032 -28.417 1.00222.17 H \ ATOM 8920 N PRO J 15 -37.373 -18.304 -29.210 1.00144.00 N \ ATOM 8921 CA PRO J 15 -37.695 -19.149 -30.378 1.00144.00 C \ ATOM 8922 C PRO J 15 -36.965 -18.810 -31.659 1.00144.00 C \ ATOM 8923 O PRO J 15 -36.673 -19.689 -32.474 1.00144.00 O \ ATOM 8924 CB PRO J 15 -39.197 -18.920 -30.562 1.00523.71 C \ ATOM 8925 CG PRO J 15 -39.684 -18.588 -29.230 1.00523.71 C \ ATOM 8926 CD PRO J 15 -38.610 -17.797 -28.585 1.00523.71 C \ ATOM 8927 HA PRO J 15 -37.521 -20.080 -30.188 1.00172.80 H \ ATOM 8928 HB2 PRO J 15 -39.315 -18.170 -31.170 1.00628.45 H \ ATOM 8929 HB3 PRO J 15 -39.609 -19.719 -30.919 1.00628.45 H \ ATOM 8930 HG2 PRO J 15 -40.480 -18.041 -29.311 1.00628.45 H \ ATOM 8931 HG3 PRO J 15 -39.858 -19.398 -28.730 1.00628.45 H \ ATOM 8932 HD2 PRO J 15 -38.758 -16.857 -28.772 1.00628.45 H \ ATOM 8933 HD3 PRO J 15 -38.579 -17.962 -27.639 1.00628.45 H \ ATOM 8934 N ASP J 16 -36.659 -17.536 -31.834 1.00144.00 N \ ATOM 8935 CA ASP J 16 -35.818 -17.098 -32.935 1.00144.00 C \ ATOM 8936 C ASP J 16 -34.365 -17.425 -32.597 1.00144.00 C \ ATOM 8937 O ASP J 16 -33.728 -16.723 -31.810 1.00144.00 O \ ATOM 8938 CB ASP J 16 -36.031 -15.609 -33.161 1.00185.14 C \ ATOM 8939 CG ASP J 16 -35.457 -15.144 -34.451 1.00185.14 C \ ATOM 8940 OD1 ASP J 16 -34.855 -15.977 -35.159 1.00185.14 O \ ATOM 8941 OD2 ASP J 16 -35.588 -13.942 -34.749 1.00185.14 O \ ATOM 8942 H ASP J 16 -36.918 -16.881 -31.334 1.00172.80 H \ ATOM 8943 HA ASP J 16 -36.047 -17.550 -33.761 1.00172.80 H \ ATOM 8944 HB2 ASP J 16 -36.979 -15.383 -33.157 1.00222.17 H \ ATOM 8945 HB3 ASP J 16 -35.571 -15.090 -32.489 1.00222.17 H \ ATOM 8946 N TRP J 17 -33.822 -18.491 -33.199 1.00144.00 N \ ATOM 8947 CA TRP J 17 -32.429 -18.859 -32.943 1.00144.00 C \ ATOM 8948 C TRP J 17 -31.465 -17.792 -33.384 1.00144.00 C \ ATOM 8949 O TRP J 17 -30.304 -17.807 -32.963 1.00144.00 O \ ATOM 8950 CB TRP J 17 -32.033 -20.161 -33.632 1.00199.37 C \ ATOM 8951 CG TRP J 17 -32.138 -20.285 -35.159 1.00199.37 C \ ATOM 8952 CD1 TRP J 17 -33.174 -20.839 -35.859 1.00199.37 C \ ATOM 8953 CD2 TRP J 17 -31.151 -19.901 -36.150 1.00199.37 C \ ATOM 8954 NE1 TRP J 17 -32.901 -20.823 -37.212 1.00199.37 N \ ATOM 8955 CE2 TRP J 17 -31.674 -20.252 -37.416 1.00199.37 C \ ATOM 8956 CE3 TRP J 17 -29.892 -19.292 -36.089 1.00199.37 C \ ATOM 8957 CZ2 TRP J 17 -30.963 -20.032 -38.610 1.00199.37 C \ ATOM 8958 CZ3 TRP J 17 -29.212 -19.028 -37.293 1.00199.37 C \ ATOM 8959 CH2 TRP J 17 -29.736 -19.424 -38.521 1.00199.37 C \ ATOM 8960 H TRP J 17 -34.230 -18.983 -33.760 1.00172.80 H \ ATOM 8961 HA TRP J 17 -32.279 -18.933 -31.981 1.00172.80 H \ ATOM 8962 HB2 TRP J 17 -31.097 -20.298 -33.412 1.00239.24 H \ ATOM 8963 HB3 TRP J 17 -32.599 -20.850 -33.257 1.00239.24 H \ ATOM 8964 HD1 TRP J 17 -33.945 -21.199 -35.478 1.00239.24 H \ ATOM 8965 HE1 TRP J 17 -33.419 -21.126 -37.840 1.00239.24 H \ ATOM 8966 HE3 TRP J 17 -29.494 -19.060 -35.282 1.00239.24 H \ ATOM 8967 HZ2 TRP J 17 -31.313 -20.248 -39.447 1.00239.24 H \ ATOM 8968 HZ3 TRP J 17 -28.361 -18.659 -37.263 1.00239.24 H \ ATOM 8969 HH2 TRP J 17 -29.241 -19.246 -39.291 1.00239.24 H \ ATOM 8970 N TYR J 18 -31.915 -16.891 -34.241 1.00144.00 N \ ATOM 8971 CA TYR J 18 -31.176 -15.670 -34.465 1.00144.00 C \ ATOM 8972 C TYR J 18 -30.882 -14.989 -33.135 1.00144.00 C \ ATOM 8973 O TYR J 18 -29.761 -14.523 -32.916 1.00144.00 O \ ATOM 8974 CB TYR J 18 -31.987 -14.758 -35.389 1.00199.37 C \ ATOM 8975 CG TYR J 18 -32.342 -15.346 -36.751 1.00199.37 C \ ATOM 8976 CD1 TYR J 18 -31.685 -16.434 -37.267 1.00199.37 C \ ATOM 8977 CD2 TYR J 18 -33.342 -14.787 -37.537 1.00199.37 C \ ATOM 8978 CE1 TYR J 18 -32.026 -16.920 -38.477 1.00199.37 C \ ATOM 8979 CE2 TYR J 18 -33.655 -15.301 -38.760 1.00199.37 C \ ATOM 8980 CZ TYR J 18 -32.987 -16.372 -39.214 1.00199.37 C \ ATOM 8981 OH TYR J 18 -33.257 -16.941 -40.427 1.00199.37 O \ ATOM 8982 H TYR J 18 -32.645 -16.985 -34.688 1.00172.80 H \ ATOM 8983 HA TYR J 18 -30.329 -15.847 -34.896 1.00172.80 H \ ATOM 8984 HB2 TYR J 18 -32.804 -14.578 -34.930 1.00239.25 H \ ATOM 8985 HB3 TYR J 18 -31.497 -13.929 -35.567 1.00239.25 H \ ATOM 8986 HD1 TYR J 18 -31.022 -16.879 -36.775 1.00239.25 H \ ATOM 8987 HD2 TYR J 18 -33.816 -14.059 -37.221 1.00239.25 H \ ATOM 8988 HE1 TYR J 18 -31.619 -17.629 -38.811 1.00239.25 H \ ATOM 8989 HE2 TYR J 18 -34.328 -14.943 -39.288 1.00239.25 H \ ATOM 8990 HH TYR J 18 -33.195 -16.349 -41.003 1.00239.25 H \ ATOM 8991 N VAL J 19 -31.882 -14.873 -32.255 1.00144.00 N \ ATOM 8992 CA VAL J 19 -31.682 -14.178 -30.984 1.00144.00 C \ ATOM 8993 C VAL J 19 -30.681 -14.930 -30.133 1.00144.00 C \ ATOM 8994 O VAL J 19 -29.797 -14.331 -29.506 1.00144.00 O \ ATOM 8995 CB VAL J 19 -33.016 -14.018 -30.235 1.00209.44 C \ ATOM 8996 CG1 VAL J 19 -32.787 -13.396 -28.858 1.00209.44 C \ ATOM 8997 CG2 VAL J 19 -33.950 -13.158 -31.007 1.00209.44 C \ ATOM 8998 H VAL J 19 -32.682 -15.166 -32.375 1.00172.80 H \ ATOM 8999 HA VAL J 19 -31.301 -13.305 -31.134 1.00172.80 H \ ATOM 9000 HB VAL J 19 -33.408 -14.891 -30.135 1.00251.33 H \ ATOM 9001 HG11 VAL J 19 -33.625 -13.180 -28.455 1.00251.33 H \ ATOM 9002 HG12 VAL J 19 -32.305 -13.968 -28.249 1.00251.33 H \ ATOM 9003 HG13 VAL J 19 -32.296 -12.568 -28.997 1.00251.33 H \ ATOM 9004 HG21 VAL J 19 -34.801 -13.080 -30.573 1.00251.33 H \ ATOM 9005 HG22 VAL J 19 -33.495 -12.310 -30.984 1.00251.33 H \ ATOM 9006 HG23 VAL J 19 -34.047 -13.468 -31.915 1.00251.33 H \ ATOM 9007 N ARG J 20 -30.863 -16.244 -30.045 1.00144.00 N \ ATOM 9008 CA ARG J 20 -29.966 -17.103 -29.289 1.00144.00 C \ ATOM 9009 C ARG J 20 -28.521 -16.859 -29.691 1.00144.00 C \ ATOM 9010 O ARG J 20 -27.622 -16.783 -28.847 1.00144.00 O \ ATOM 9011 CB ARG J 20 -30.349 -18.553 -29.553 1.00211.56 C \ ATOM 9012 CG ARG J 20 -31.729 -18.946 -29.089 1.00211.56 C \ ATOM 9013 CD ARG J 20 -31.919 -20.421 -29.359 1.00211.56 C \ ATOM 9014 NE ARG J 20 -33.178 -20.968 -28.852 1.00211.56 N \ ATOM 9015 CZ ARG J 20 -34.324 -21.001 -29.529 1.00211.56 C \ ATOM 9016 NH1 ARG J 20 -34.417 -20.489 -30.745 1.00211.56 N \ ATOM 9017 NH2 ARG J 20 -35.406 -21.530 -28.980 1.00211.56 N \ ATOM 9018 H ARG J 20 -31.507 -16.662 -30.431 1.00172.80 H \ ATOM 9019 HA ARG J 20 -30.051 -16.896 -28.343 1.00172.80 H \ ATOM 9020 HB2 ARG J 20 -30.316 -18.671 -30.515 1.00253.87 H \ ATOM 9021 HB3 ARG J 20 -29.694 -19.123 -29.126 1.00253.87 H \ ATOM 9022 HG2 ARG J 20 -31.806 -18.770 -28.153 1.00253.87 H \ ATOM 9023 HG3 ARG J 20 -32.388 -18.424 -29.577 1.00253.87 H \ ATOM 9024 HD2 ARG J 20 -31.869 -20.552 -30.316 1.00253.87 H \ ATOM 9025 HD3 ARG J 20 -31.188 -20.886 -28.931 1.00253.87 H \ ATOM 9026 HE ARG J 20 -33.184 -21.261 -28.042 1.00253.87 H \ ATOM 9027 HH11 ARG J 20 -33.733 -20.133 -31.110 1.00253.87 H \ ATOM 9028 HH12 ARG J 20 -35.164 -20.509 -31.156 1.00253.87 H \ ATOM 9029 HH21 ARG J 20 -35.396 -21.868 -28.191 1.00253.87 H \ ATOM 9030 HH22 ARG J 20 -36.143 -21.534 -29.417 1.00253.87 H \ ATOM 9031 N LYS J 21 -28.289 -16.731 -30.993 1.00144.00 N \ ATOM 9032 CA LYS J 21 -26.970 -16.392 -31.503 1.00144.00 C \ ATOM 9033 C LYS J 21 -26.501 -15.056 -30.948 1.00144.00 C \ ATOM 9034 O LYS J 21 -25.390 -14.937 -30.420 1.00144.00 O \ ATOM 9035 CB LYS J 21 -27.037 -16.358 -33.024 1.00215.96 C \ ATOM 9036 CG LYS J 21 -25.740 -16.071 -33.723 1.00215.96 C \ ATOM 9037 CD LYS J 21 -25.913 -16.185 -35.219 1.00215.96 C \ ATOM 9038 CE LYS J 21 -26.710 -15.030 -35.793 1.00215.96 C \ ATOM 9039 NZ LYS J 21 -26.763 -15.122 -37.271 1.00215.96 N \ ATOM 9040 H LYS J 21 -28.882 -16.834 -31.604 1.00172.80 H \ ATOM 9041 HA LYS J 21 -26.325 -17.068 -31.244 1.00172.80 H \ ATOM 9042 HB2 LYS J 21 -27.361 -17.215 -33.344 1.00259.15 H \ ATOM 9043 HB3 LYS J 21 -27.648 -15.656 -33.269 1.00259.15 H \ ATOM 9044 HG2 LYS J 21 -25.441 -15.171 -33.524 1.00259.15 H \ ATOM 9045 HG3 LYS J 21 -25.071 -16.715 -33.447 1.00259.15 H \ ATOM 9046 HD2 LYS J 21 -25.039 -16.199 -35.640 1.00259.15 H \ ATOM 9047 HD3 LYS J 21 -26.395 -17.000 -35.421 1.00259.15 H \ ATOM 9048 HE2 LYS J 21 -27.623 -15.062 -35.469 1.00259.15 H \ ATOM 9049 HE3 LYS J 21 -26.291 -14.192 -35.544 1.00259.15 H \ ATOM 9050 HZ1 LYS J 21 -27.225 -14.440 -37.605 1.00259.15 H \ ATOM 9051 HZ2 LYS J 21 -25.932 -15.098 -37.589 1.00259.15 H \ ATOM 9052 HZ3 LYS J 21 -27.147 -15.884 -37.526 1.00259.15 H \ ATOM 9053 N ALA J 22 -27.348 -14.033 -31.062 1.00144.00 N \ ATOM 9054 CA ALA J 22 -27.009 -12.725 -30.517 1.00144.00 C \ ATOM 9055 C ALA J 22 -26.843 -12.794 -29.008 1.00144.00 C \ ATOM 9056 O ALA J 22 -25.948 -12.156 -28.440 1.00144.00 O \ ATOM 9057 CB ALA J 22 -28.092 -11.718 -30.889 1.00196.36 C \ ATOM 9058 H ALA J 22 -28.117 -14.071 -31.446 1.00172.80 H \ ATOM 9059 HA ALA J 22 -26.169 -12.425 -30.893 1.00172.80 H \ ATOM 9060 HB1 ALA J 22 -27.824 -10.847 -30.556 1.00235.64 H \ ATOM 9061 HB2 ALA J 22 -28.171 -11.693 -31.854 1.00235.64 H \ ATOM 9062 HB3 ALA J 22 -28.931 -11.996 -30.485 1.00235.64 H \ ATOM 9063 N ALA J 23 -27.698 -13.570 -28.344 1.00144.00 N \ ATOM 9064 CA ALA J 23 -27.620 -13.706 -26.896 1.00144.00 C \ ATOM 9065 C ALA J 23 -26.305 -14.343 -26.482 1.00144.00 C \ ATOM 9066 O ALA J 23 -25.619 -13.851 -25.579 1.00144.00 O \ ATOM 9067 CB ALA J 23 -28.793 -14.541 -26.398 1.00196.36 C \ ATOM 9068 H ALA J 23 -28.318 -14.032 -28.709 1.00172.80 H \ ATOM 9069 HA ALA J 23 -27.656 -12.826 -26.493 1.00172.80 H \ ATOM 9070 HB1 ALA J 23 -28.783 -14.549 -25.427 1.00235.64 H \ ATOM 9071 HB2 ALA J 23 -29.597 -14.131 -26.740 1.00235.64 H \ ATOM 9072 HB3 ALA J 23 -28.691 -15.432 -26.758 1.00235.64 H \ ATOM 9073 N ALA J 24 -25.948 -15.453 -27.128 1.00144.00 N \ ATOM 9074 CA ALA J 24 -24.670 -16.100 -26.859 1.00144.00 C \ ATOM 9075 C ALA J 24 -23.526 -15.129 -27.090 1.00144.00 C \ ATOM 9076 O ALA J 24 -22.594 -15.038 -26.284 1.00144.00 O \ ATOM 9077 CB ALA J 24 -24.508 -17.329 -27.752 1.00196.36 C \ ATOM 9078 H ALA J 24 -26.417 -15.834 -27.737 1.00172.80 H \ ATOM 9079 HA ALA J 24 -24.633 -16.380 -25.933 1.00172.80 H \ ATOM 9080 HB1 ALA J 24 -23.652 -17.744 -27.564 1.00235.64 H \ ATOM 9081 HB2 ALA J 24 -25.229 -17.953 -27.586 1.00235.64 H \ ATOM 9082 HB3 ALA J 24 -24.532 -17.034 -28.676 1.00235.64 H \ ATOM 9083 N GLU J 25 -23.599 -14.380 -28.188 1.00144.00 N \ ATOM 9084 CA GLU J 25 -22.581 -13.388 -28.493 1.00144.00 C \ ATOM 9085 C GLU J 25 -22.486 -12.356 -27.377 1.00144.00 C \ ATOM 9086 O GLU J 25 -21.389 -12.008 -26.926 1.00144.00 O \ ATOM 9087 CB GLU J 25 -22.910 -12.730 -29.833 1.00193.43 C \ ATOM 9088 CG GLU J 25 -21.784 -11.886 -30.405 1.00193.43 C \ ATOM 9089 CD GLU J 25 -21.731 -10.504 -29.828 1.00193.43 C \ ATOM 9090 OE1 GLU J 25 -22.798 -9.964 -29.475 1.00193.43 O \ ATOM 9091 OE2 GLU J 25 -20.613 -9.970 -29.706 1.00193.43 O \ ATOM 9092 H GLU J 25 -24.230 -14.423 -28.769 1.00172.80 H \ ATOM 9093 HA GLU J 25 -21.718 -13.815 -28.572 1.00172.80 H \ ATOM 9094 HB2 GLU J 25 -23.093 -13.425 -30.481 1.00232.12 H \ ATOM 9095 HB3 GLU J 25 -23.700 -12.177 -29.722 1.00232.12 H \ ATOM 9096 HG2 GLU J 25 -20.926 -12.305 -30.222 1.00232.12 H \ ATOM 9097 HG3 GLU J 25 -21.906 -11.779 -31.360 1.00232.12 H \ ATOM 9098 N ALA J 26 -23.637 -11.854 -26.925 1.00144.00 N \ ATOM 9099 CA ALA J 26 -23.652 -10.909 -25.815 1.00144.00 C \ ATOM 9100 C ALA J 26 -23.043 -11.526 -24.570 1.00144.00 C \ ATOM 9101 O ALA J 26 -22.281 -10.875 -23.847 1.00144.00 O \ ATOM 9102 CB ALA J 26 -25.083 -10.470 -25.530 1.00196.36 C \ ATOM 9103 H ALA J 26 -24.412 -12.047 -27.242 1.00172.80 H \ ATOM 9104 HA ALA J 26 -23.119 -10.131 -26.046 1.00172.80 H \ ATOM 9105 HB1 ALA J 26 -25.055 -9.792 -24.836 1.00235.64 H \ ATOM 9106 HB2 ALA J 26 -25.452 -10.110 -26.345 1.00235.64 H \ ATOM 9107 HB3 ALA J 26 -25.588 -11.244 -25.239 1.00235.64 H \ ATOM 9108 N LEU J 27 -23.366 -12.787 -24.307 1.00144.00 N \ ATOM 9109 CA LEU J 27 -22.767 -13.476 -23.178 1.00144.00 C \ ATOM 9110 C LEU J 27 -21.288 -13.719 -23.409 1.00144.00 C \ ATOM 9111 O LEU J 27 -20.523 -13.853 -22.449 1.00144.00 O \ ATOM 9112 CB LEU J 27 -23.515 -14.782 -22.933 1.00213.17 C \ ATOM 9113 CG LEU J 27 -24.966 -14.584 -22.490 1.00213.17 C \ ATOM 9114 CD1 LEU J 27 -25.687 -15.904 -22.506 1.00213.17 C \ ATOM 9115 CD2 LEU J 27 -25.040 -13.957 -21.105 1.00213.17 C \ ATOM 9116 H LEU J 27 -23.911 -13.262 -24.772 1.00172.80 H \ ATOM 9117 HA LEU J 27 -22.816 -12.911 -22.394 1.00172.80 H \ ATOM 9118 HB2 LEU J 27 -23.525 -15.279 -23.766 1.00255.80 H \ ATOM 9119 HB3 LEU J 27 -23.049 -15.290 -22.252 1.00255.80 H \ ATOM 9120 HG LEU J 27 -25.406 -13.988 -23.115 1.00255.80 H \ ATOM 9121 HD11 LEU J 27 -26.602 -15.771 -22.222 1.00255.80 H \ ATOM 9122 HD12 LEU J 27 -25.659 -16.248 -23.411 1.00255.80 H \ ATOM 9123 HD13 LEU J 27 -25.225 -16.502 -21.909 1.00255.80 H \ ATOM 9124 HD21 LEU J 27 -25.961 -13.912 -20.829 1.00255.80 H \ ATOM 9125 HD22 LEU J 27 -24.537 -14.499 -20.482 1.00255.80 H \ ATOM 9126 HD23 LEU J 27 -24.660 -13.065 -21.139 1.00255.80 H \ ATOM 9127 N GLY J 28 -20.865 -13.768 -24.671 1.00144.00 N \ ATOM 9128 CA GLY J 28 -19.441 -13.777 -24.947 1.00144.00 C \ ATOM 9129 C GLY J 28 -18.760 -12.530 -24.458 1.00144.00 C \ ATOM 9130 O GLY J 28 -17.698 -12.591 -23.820 1.00144.00 O \ ATOM 9131 H GLY J 28 -21.366 -13.799 -25.369 1.00172.80 H \ ATOM 9132 HA2 GLY J 28 -19.035 -14.525 -24.485 1.00172.80 H \ ATOM 9133 HA3 GLY J 28 -19.282 -13.871 -25.902 1.00172.80 H \ ATOM 9134 N ARG J 29 -19.351 -11.360 -24.727 1.00144.00 N \ ATOM 9135 CA ARG J 29 -18.838 -10.112 -24.187 1.00144.00 C \ ATOM 9136 C ARG J 29 -18.781 -10.174 -22.667 1.00144.00 C \ ATOM 9137 O ARG J 29 -17.834 -9.679 -22.046 1.00144.00 O \ ATOM 9138 CB ARG J 29 -19.727 -8.949 -24.619 1.00211.56 C \ ATOM 9139 CG ARG J 29 -19.881 -8.722 -26.120 1.00211.56 C \ ATOM 9140 CD ARG J 29 -18.720 -8.008 -26.793 1.00211.56 C \ ATOM 9141 NE ARG J 29 -17.539 -8.808 -27.107 1.00211.56 N \ ATOM 9142 CZ ARG J 29 -17.467 -9.676 -28.117 1.00211.56 C \ ATOM 9143 NH1 ARG J 29 -18.526 -9.977 -28.859 1.00211.56 N \ ATOM 9144 NH2 ARG J 29 -16.330 -10.307 -28.359 1.00211.56 N \ ATOM 9145 H ARG J 29 -20.066 -11.279 -25.209 1.00172.80 H \ ATOM 9146 HA ARG J 29 -17.934 -9.964 -24.518 1.00172.80 H \ ATOM 9147 HB2 ARG J 29 -20.614 -9.126 -24.280 1.00253.87 H \ ATOM 9148 HB3 ARG J 29 -19.388 -8.139 -24.214 1.00253.87 H \ ATOM 9149 HG2 ARG J 29 -20.011 -9.570 -26.573 1.00253.87 H \ ATOM 9150 HG3 ARG J 29 -20.654 -8.147 -26.253 1.00253.87 H \ ATOM 9151 HD2 ARG J 29 -19.022 -7.626 -27.628 1.00253.87 H \ ATOM 9152 HD3 ARG J 29 -18.415 -7.296 -26.222 1.00253.87 H \ ATOM 9153 HE ARG J 29 -17.127 -9.087 -26.396 1.00253.87 H \ ATOM 9154 HH11 ARG J 29 -19.286 -9.601 -28.757 1.00253.87 H \ ATOM 9155 HH12 ARG J 29 -18.449 -10.563 -29.489 1.00253.87 H \ ATOM 9156 HH21 ARG J 29 -15.636 -10.129 -27.929 1.00253.87 H \ ATOM 9157 HH22 ARG J 29 -16.288 -10.891 -28.956 1.00253.87 H \ ATOM 9158 N ILE J 30 -19.789 -10.790 -22.060 1.00144.00 N \ ATOM 9159 CA ILE J 30 -19.890 -10.921 -20.618 1.00144.00 C \ ATOM 9160 C ILE J 30 -19.296 -12.266 -20.228 1.00144.00 C \ ATOM 9161 O ILE J 30 -18.337 -12.729 -20.845 1.00144.00 O \ ATOM 9162 CB ILE J 30 -21.367 -10.770 -20.171 1.00213.17 C \ ATOM 9163 CG1 ILE J 30 -21.933 -9.408 -20.618 1.00213.17 C \ ATOM 9164 CG2 ILE J 30 -21.536 -10.958 -18.660 1.00213.17 C \ ATOM 9165 CD1 ILE J 30 -21.227 -8.171 -20.046 1.00213.17 C \ ATOM 9166 H ILE J 30 -20.445 -11.159 -22.477 1.00172.80 H \ ATOM 9167 HA ILE J 30 -19.356 -10.244 -20.182 1.00172.80 H \ ATOM 9168 HB ILE J 30 -21.874 -11.462 -20.625 1.00255.80 H \ ATOM 9169 HG12 ILE J 30 -21.887 -9.338 -21.586 1.00255.80 H \ ATOM 9170 HG13 ILE J 30 -22.859 -9.354 -20.338 1.00255.80 H \ ATOM 9171 HG21 ILE J 30 -22.470 -10.817 -18.442 1.00255.80 H \ ATOM 9172 HG22 ILE J 30 -21.286 -11.857 -18.405 1.00255.80 H \ ATOM 9173 HG23 ILE J 30 -20.984 -10.313 -18.196 1.00255.80 H \ ATOM 9174 HD11 ILE J 30 -21.658 -7.371 -20.385 1.00255.80 H \ ATOM 9175 HD12 ILE J 30 -21.281 -8.183 -19.079 1.00255.80 H \ ATOM 9176 HD13 ILE J 30 -20.297 -8.170 -20.317 1.00255.80 H \ TER 9177 ILE J 30 \ TER 9660 ILE j 30 \ TER 10143 ILE K 30 \ TER 10626 ILE k 30 \ TER 11109 ILE L 30 \ TER 11592 ILE l 30 \ TER 12075 ILE M 30 \ TER 12558 ILE m 30 \ TER 13041 ILE N 30 \ TER 13524 ILE n 30 \ TER 14007 ILE O 30 \ TER 14490 ILE o 30 \ TER 14973 ILE P 30 \ TER 15456 ILE p 30 \ TER 15939 ILE Q 30 \ TER 16422 ILE q 30 \ TER 16905 ILE R 30 \ TER 17388 ILE r 30 \ TER 17871 ILE S 30 \ TER 18354 ILE s 30 \ TER 18837 ILE T 30 \ TER 19320 ILE t 30 \ TER 19803 ILE U 30 \ TER 20286 ILE u 30 \ TER 20769 ILE V 30 \ TER 21252 ILE v 30 \ TER 21735 ILE W 30 \ TER 22218 ILE w 30 \ TER 22701 ILE X 30 \ TER 23184 ILE x 30 \ TER 23667 ILE Y 30 \ TER 24150 ILE y 30 \ TER 24633 ILE Z 30 \ TER 25116 ILE z 30 \ MASTER 187 0 0 104 0 0 0 612324 52 0 156 \ END \ """, "6mk1chainJ") cmd.hide("all") cmd.color('grey70', "6mk1chainJ") cmd.show('cartoon', "6mk1chainJ") cmd.center("6mk1chainJ", state=0, origin=1) cmd.zoom("6mk1chainJ", animate=-1) cmd.select("e6mk1J1", "c. J & i. 1-30") cmd.color("red", "e6mk1J1") cmd.disable("e6mk1J1")