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 \ 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 \ ATOM 12076 N ASP m 1 21.661 -21.761 -4.846 1.00144.00 N \ ATOM 12077 CA ASP m 1 21.471 -20.351 -4.537 1.00144.00 C \ ATOM 12078 C ASP m 1 22.188 -19.469 -5.574 1.00144.00 C \ ATOM 12079 O ASP m 1 22.528 -19.934 -6.661 1.00144.00 O \ ATOM 12080 CB ASP m 1 21.965 -20.058 -3.112 1.00185.14 C \ ATOM 12081 CG ASP m 1 23.443 -20.343 -2.933 1.00185.14 C \ ATOM 12082 OD1 ASP m 1 24.072 -20.886 -3.865 1.00185.14 O \ ATOM 12083 OD2 ASP m 1 23.977 -20.024 -1.851 1.00185.14 O \ ATOM 12084 H1 ASP m 1 21.894 -22.248 -4.182 1.00172.80 H \ ATOM 12085 HA ASP m 1 20.526 -20.167 -4.574 1.00172.80 H \ ATOM 12086 HB2 ASP m 1 21.834 -19.130 -2.881 1.00222.17 H \ ATOM 12087 HB3 ASP m 1 21.507 -20.606 -2.464 1.00222.17 H \ ATOM 12088 N GLU m 2 22.450 -18.206 -5.224 1.00144.00 N \ ATOM 12089 CA GLU m 2 23.094 -17.247 -6.116 1.00144.00 C \ ATOM 12090 C GLU m 2 24.524 -17.615 -6.507 1.00144.00 C \ ATOM 12091 O GLU m 2 25.142 -16.910 -7.311 1.00144.00 O \ ATOM 12092 CB GLU m 2 23.087 -15.861 -5.472 1.00193.43 C \ ATOM 12093 CG GLU m 2 23.931 -15.720 -4.219 1.00193.43 C \ ATOM 12094 CD GLU m 2 23.184 -16.085 -2.956 1.00193.43 C \ ATOM 12095 OE1 GLU m 2 22.093 -16.678 -3.056 1.00193.43 O \ ATOM 12096 OE2 GLU m 2 23.691 -15.795 -1.859 1.00193.43 O \ ATOM 12097 H GLU m 2 22.262 -17.847 -4.477 1.00172.80 H \ ATOM 12098 HA GLU m 2 22.579 -17.193 -6.934 1.00172.80 H \ ATOM 12099 HB2 GLU m 2 23.426 -15.218 -6.109 1.00232.12 H \ ATOM 12100 HB3 GLU m 2 22.173 -15.627 -5.234 1.00232.12 H \ ATOM 12101 HG2 GLU m 2 24.757 -16.226 -4.240 1.00232.12 H \ ATOM 12102 HG3 GLU m 2 24.157 -14.792 -4.126 1.00232.12 H \ ATOM 12103 N ARG m 3 25.068 -18.706 -5.955 1.00144.00 N \ ATOM 12104 CA ARG m 3 26.311 -19.260 -6.487 1.00144.00 C \ ATOM 12105 C ARG m 3 26.176 -19.591 -7.966 1.00144.00 C \ ATOM 12106 O ARG m 3 27.181 -19.662 -8.684 1.00144.00 O \ ATOM 12107 CB ARG m 3 26.718 -20.511 -5.710 1.00211.56 C \ ATOM 12108 CG ARG m 3 27.023 -20.290 -4.232 1.00211.56 C \ ATOM 12109 CD ARG m 3 28.375 -19.612 -3.989 1.00211.56 C \ ATOM 12110 NE ARG m 3 28.354 -18.182 -4.289 1.00211.56 N \ ATOM 12111 CZ ARG m 3 27.823 -17.246 -3.506 1.00211.56 C \ ATOM 12112 NH1 ARG m 3 27.256 -17.555 -2.346 1.00211.56 N \ ATOM 12113 NH2 ARG m 3 27.866 -15.975 -3.886 1.00211.56 N \ ATOM 12114 H ARG m 3 24.746 -19.132 -5.284 1.00172.80 H \ ATOM 12115 HA ARG m 3 27.015 -18.612 -6.415 1.00172.80 H \ ATOM 12116 HB2 ARG m 3 26.002 -21.161 -5.764 1.00253.87 H \ ATOM 12117 HB3 ARG m 3 27.509 -20.883 -6.125 1.00253.87 H \ ATOM 12118 HG2 ARG m 3 26.341 -19.722 -3.843 1.00253.87 H \ ATOM 12119 HG3 ARG m 3 27.044 -21.150 -3.786 1.00253.87 H \ ATOM 12120 HD2 ARG m 3 28.634 -19.727 -3.063 1.00253.87 H \ ATOM 12121 HD3 ARG m 3 29.044 -20.024 -4.557 1.00253.87 H \ ATOM 12122 HE ARG m 3 28.577 -17.947 -5.088 1.00253.87 H \ ATOM 12123 HH11 ARG m 3 27.222 -18.366 -2.076 1.00253.87 H \ ATOM 12124 HH12 ARG m 3 26.927 -16.939 -1.842 1.00253.87 H \ ATOM 12125 HH21 ARG m 3 28.228 -15.758 -4.637 1.00253.87 H \ ATOM 12126 HH22 ARG m 3 27.536 -15.347 -3.397 1.00253.87 H \ ATOM 12127 N ALA m 4 24.945 -19.811 -8.423 1.00144.00 N \ ATOM 12128 CA ALA m 4 24.571 -19.799 -9.826 1.00144.00 C \ ATOM 12129 C ALA m 4 25.226 -18.660 -10.596 1.00144.00 C \ ATOM 12130 O ALA m 4 25.634 -18.845 -11.746 1.00144.00 O \ ATOM 12131 CB ALA m 4 23.054 -19.684 -9.927 1.00196.36 C \ ATOM 12132 H ALA m 4 24.279 -19.980 -7.909 1.00172.80 H \ ATOM 12133 HA ALA m 4 24.848 -20.631 -10.232 1.00172.80 H \ ATOM 12134 HB1 ALA m 4 22.808 -19.646 -10.855 1.00235.64 H \ ATOM 12135 HB2 ALA m 4 22.663 -20.454 -9.490 1.00235.64 H \ ATOM 12136 HB3 ALA m 4 22.784 -18.871 -9.471 1.00235.64 H \ ATOM 12137 N VAL m 5 25.314 -17.477 -9.980 1.00144.00 N \ ATOM 12138 CA VAL m 5 25.999 -16.352 -10.611 1.00144.00 C \ ATOM 12139 C VAL m 5 27.428 -16.741 -10.952 1.00144.00 C \ ATOM 12140 O VAL m 5 27.881 -16.578 -12.086 1.00144.00 O \ ATOM 12141 CB VAL m 5 25.964 -15.114 -9.696 1.00209.44 C \ ATOM 12142 CG1 VAL m 5 26.747 -13.936 -10.308 1.00209.44 C \ ATOM 12143 CG2 VAL m 5 24.534 -14.691 -9.446 1.00209.44 C \ ATOM 12144 H VAL m 5 25.007 -17.313 -9.195 1.00172.80 H \ ATOM 12145 HA VAL m 5 25.549 -16.135 -11.443 1.00172.80 H \ ATOM 12146 HB VAL m 5 26.379 -15.347 -8.853 1.00251.33 H \ ATOM 12147 HG11 VAL m 5 26.641 -13.166 -9.725 1.00251.33 H \ ATOM 12148 HG12 VAL m 5 27.692 -14.139 -10.376 1.00251.33 H \ ATOM 12149 HG13 VAL m 5 26.386 -13.739 -11.186 1.00251.33 H \ ATOM 12150 HG21 VAL m 5 24.542 -13.898 -8.887 1.00251.33 H \ ATOM 12151 HG22 VAL m 5 24.130 -14.502 -10.307 1.00251.33 H \ ATOM 12152 HG23 VAL m 5 24.059 -15.405 -8.998 1.00251.33 H \ ATOM 12153 N GLU m 6 28.154 -17.270 -9.976 1.00144.00 N \ ATOM 12154 CA GLU m 6 29.519 -17.695 -10.247 1.00144.00 C \ ATOM 12155 C GLU m 6 29.538 -18.840 -11.249 1.00144.00 C \ ATOM 12156 O GLU m 6 30.513 -19.006 -11.991 1.00144.00 O \ ATOM 12157 CB GLU m 6 30.209 -18.092 -8.945 1.00193.43 C \ ATOM 12158 CG GLU m 6 30.513 -16.926 -8.009 1.00193.43 C \ ATOM 12159 CD GLU m 6 29.296 -16.430 -7.254 1.00193.43 C \ ATOM 12160 OE1 GLU m 6 28.188 -16.920 -7.528 1.00193.43 O \ ATOM 12161 OE2 GLU m 6 29.446 -15.566 -6.371 1.00193.43 O \ ATOM 12162 H GLU m 6 27.868 -17.425 -9.183 1.00172.80 H \ ATOM 12163 HA GLU m 6 30.011 -16.957 -10.642 1.00172.80 H \ ATOM 12164 HB2 GLU m 6 29.639 -18.721 -8.477 1.00232.12 H \ ATOM 12165 HB3 GLU m 6 31.050 -18.518 -9.175 1.00232.12 H \ ATOM 12166 HG2 GLU m 6 31.177 -17.203 -7.362 1.00232.12 H \ ATOM 12167 HG3 GLU m 6 30.867 -16.201 -8.552 1.00232.12 H \ ATOM 12168 N ALA m 7 28.468 -19.634 -11.291 1.00144.00 N \ ATOM 12169 CA ALA m 7 28.320 -20.591 -12.376 1.00144.00 C \ ATOM 12170 C ALA m 7 28.028 -19.876 -13.685 1.00144.00 C \ ATOM 12171 O ALA m 7 28.450 -20.333 -14.753 1.00144.00 O \ ATOM 12172 CB ALA m 7 27.221 -21.597 -12.051 1.00196.36 C \ ATOM 12173 H ALA m 7 27.827 -19.632 -10.720 1.00172.80 H \ ATOM 12174 HA ALA m 7 29.153 -21.074 -12.497 1.00172.80 H \ ATOM 12175 HB1 ALA m 7 27.206 -22.264 -12.753 1.00235.64 H \ ATOM 12176 HB2 ALA m 7 27.420 -22.010 -11.198 1.00235.64 H \ ATOM 12177 HB3 ALA m 7 26.371 -21.142 -12.013 1.00235.64 H \ ATOM 12178 N LEU m 8 27.314 -18.746 -13.629 1.00144.00 N \ ATOM 12179 CA LEU m 8 27.168 -17.949 -14.840 1.00144.00 C \ ATOM 12180 C LEU m 8 28.525 -17.432 -15.296 1.00144.00 C \ ATOM 12181 O LEU m 8 28.809 -17.398 -16.498 1.00144.00 O \ ATOM 12182 CB LEU m 8 26.182 -16.789 -14.643 1.00213.17 C \ ATOM 12183 CG LEU m 8 24.707 -17.094 -14.367 1.00213.17 C \ ATOM 12184 CD1 LEU m 8 23.969 -15.796 -14.092 1.00213.17 C \ ATOM 12185 CD2 LEU m 8 24.074 -17.790 -15.530 1.00213.17 C \ ATOM 12186 H LEU m 8 26.925 -18.432 -12.933 1.00172.80 H \ ATOM 12187 HA LEU m 8 26.804 -18.520 -15.518 1.00172.80 H \ ATOM 12188 HB2 LEU m 8 26.482 -16.203 -13.946 1.00255.80 H \ ATOM 12189 HB3 LEU m 8 26.188 -16.284 -15.471 1.00255.80 H \ ATOM 12190 HG LEU m 8 24.624 -17.668 -13.598 1.00255.80 H \ ATOM 12191 HD11 LEU m 8 23.033 -15.993 -13.935 1.00255.80 H \ ATOM 12192 HD12 LEU m 8 24.357 -15.377 -13.311 1.00255.80 H \ ATOM 12193 HD13 LEU m 8 24.061 -15.213 -14.863 1.00255.80 H \ ATOM 12194 HD21 LEU m 8 23.135 -17.943 -15.350 1.00255.80 H \ ATOM 12195 HD22 LEU m 8 24.167 -17.193 -16.271 1.00255.80 H \ ATOM 12196 HD23 LEU m 8 24.524 -18.627 -15.714 1.00255.80 H \ ATOM 12197 N ILE m 9 29.397 -17.065 -14.351 1.00144.00 N \ ATOM 12198 CA ILE m 9 30.735 -16.596 -14.701 1.00144.00 C \ ATOM 12199 C ILE m 9 31.501 -17.686 -15.440 1.00144.00 C \ ATOM 12200 O ILE m 9 32.283 -17.412 -16.351 1.00144.00 O \ ATOM 12201 CB ILE m 9 31.504 -16.138 -13.447 1.00213.17 C \ ATOM 12202 CG1 ILE m 9 30.772 -15.011 -12.702 1.00213.17 C \ ATOM 12203 CG2 ILE m 9 32.937 -15.681 -13.795 1.00213.17 C \ ATOM 12204 CD1 ILE m 9 30.553 -13.718 -13.484 1.00213.17 C \ ATOM 12205 H ILE m 9 29.239 -17.089 -13.507 1.00172.80 H \ ATOM 12206 HA ILE m 9 30.648 -15.854 -15.312 1.00172.80 H \ ATOM 12207 HB ILE m 9 31.571 -16.905 -12.863 1.00255.80 H \ ATOM 12208 HG12 ILE m 9 29.910 -15.332 -12.425 1.00255.80 H \ ATOM 12209 HG13 ILE m 9 31.298 -14.793 -11.918 1.00255.80 H \ ATOM 12210 HG21 ILE m 9 33.359 -15.345 -12.991 1.00255.80 H \ ATOM 12211 HG22 ILE m 9 33.469 -16.417 -14.135 1.00255.80 H \ ATOM 12212 HG23 ILE m 9 32.891 -14.979 -14.462 1.00255.80 H \ ATOM 12213 HD11 ILE m 9 30.080 -13.093 -12.911 1.00255.80 H \ ATOM 12214 HD12 ILE m 9 31.412 -13.344 -13.733 1.00255.80 H \ ATOM 12215 HD13 ILE m 9 30.025 -13.900 -14.275 1.00255.80 H \ ATOM 12216 N LYS m 10 31.339 -18.930 -15.006 1.00144.00 N \ ATOM 12217 CA LYS m 10 31.931 -20.031 -15.756 1.00144.00 C \ ATOM 12218 C LYS m 10 31.166 -20.271 -17.046 1.00144.00 C \ ATOM 12219 O LYS m 10 31.748 -20.668 -18.063 1.00144.00 O \ ATOM 12220 CB LYS m 10 31.939 -21.279 -14.895 1.00215.96 C \ ATOM 12221 CG LYS m 10 32.794 -21.129 -13.661 1.00215.96 C \ ATOM 12222 CD LYS m 10 32.828 -22.408 -12.848 1.00215.96 C \ ATOM 12223 CE LYS m 10 31.500 -22.693 -12.156 1.00215.96 C \ ATOM 12224 NZ LYS m 10 31.173 -21.659 -11.137 1.00215.96 N \ ATOM 12225 H LYS m 10 30.909 -19.158 -14.297 1.00172.80 H \ ATOM 12226 HA LYS m 10 32.847 -19.811 -15.992 1.00172.80 H \ ATOM 12227 HB2 LYS m 10 31.023 -21.430 -14.631 1.00259.15 H \ ATOM 12228 HB3 LYS m 10 32.270 -22.017 -15.426 1.00259.15 H \ ATOM 12229 HG2 LYS m 10 33.698 -20.908 -13.940 1.00259.15 H \ ATOM 12230 HG3 LYS m 10 32.438 -20.410 -13.120 1.00259.15 H \ ATOM 12231 HD2 LYS m 10 33.039 -23.137 -13.450 1.00259.15 H \ ATOM 12232 HD3 LYS m 10 33.523 -22.320 -12.175 1.00259.15 H \ ATOM 12233 HE2 LYS m 10 30.792 -22.720 -12.814 1.00259.15 H \ ATOM 12234 HE3 LYS m 10 31.569 -23.555 -11.725 1.00259.15 H \ ATOM 12235 HZ1 LYS m 10 30.387 -21.839 -10.761 1.00259.15 H \ ATOM 12236 HZ2 LYS m 10 31.808 -21.648 -10.514 1.00259.15 H \ ATOM 12237 HZ3 LYS m 10 31.128 -20.862 -11.524 1.00259.15 H \ ATOM 12238 N ALA m 11 29.858 -20.021 -17.026 1.00144.00 N \ ATOM 12239 CA ALA m 11 29.068 -20.075 -18.246 1.00144.00 C \ ATOM 12240 C ALA m 11 29.456 -18.970 -19.213 1.00144.00 C \ ATOM 12241 O ALA m 11 29.158 -19.072 -20.406 1.00144.00 O \ ATOM 12242 CB ALA m 11 27.586 -19.976 -17.905 1.00196.36 C \ ATOM 12243 H ALA m 11 29.415 -19.801 -16.325 1.00172.80 H \ ATOM 12244 HA ALA m 11 29.223 -20.922 -18.695 1.00172.80 H \ ATOM 12245 HB1 ALA m 11 27.041 -20.037 -18.696 1.00235.64 H \ ATOM 12246 HB2 ALA m 11 27.350 -20.673 -17.274 1.00235.64 H \ ATOM 12247 HB3 ALA m 11 27.445 -19.116 -17.519 1.00235.64 H \ ATOM 12248 N LEU m 12 30.166 -17.943 -18.739 1.00144.00 N \ ATOM 12249 CA LEU m 12 30.711 -16.930 -19.633 1.00144.00 C \ ATOM 12250 C LEU m 12 31.872 -17.444 -20.481 1.00144.00 C \ ATOM 12251 O LEU m 12 32.484 -16.652 -21.205 1.00144.00 O \ ATOM 12252 CB LEU m 12 31.149 -15.716 -18.825 1.00213.17 C \ ATOM 12253 CG LEU m 12 30.103 -14.864 -18.110 1.00213.17 C \ ATOM 12254 CD1 LEU m 12 30.821 -13.827 -17.331 1.00213.17 C \ ATOM 12255 CD2 LEU m 12 29.154 -14.207 -19.077 1.00213.17 C \ ATOM 12256 H LEU m 12 30.349 -17.814 -17.908 1.00172.80 H \ ATOM 12257 HA LEU m 12 30.021 -16.647 -20.233 1.00172.80 H \ ATOM 12258 HB2 LEU m 12 31.776 -16.010 -18.179 1.00255.80 H \ ATOM 12259 HB3 LEU m 12 31.614 -15.124 -19.397 1.00255.80 H \ ATOM 12260 HG LEU m 12 29.584 -15.391 -17.502 1.00255.80 H \ ATOM 12261 HD11 LEU m 12 30.175 -13.289 -16.851 1.00255.80 H \ ATOM 12262 HD12 LEU m 12 31.434 -14.256 -16.715 1.00255.80 H \ ATOM 12263 HD13 LEU m 12 31.317 -13.286 -17.963 1.00255.80 H \ ATOM 12264 HD21 LEU m 12 28.529 -13.650 -18.588 1.00255.80 H \ ATOM 12265 HD22 LEU m 12 29.674 -13.657 -19.682 1.00255.80 H \ ATOM 12266 HD23 LEU m 12 28.671 -14.884 -19.575 1.00255.80 H \ ATOM 12267 N LYS m 13 32.201 -18.733 -20.373 1.00144.00 N \ ATOM 12268 CA LYS m 13 33.085 -19.430 -21.297 1.00144.00 C \ ATOM 12269 C LYS m 13 32.903 -19.043 -22.766 1.00144.00 C \ ATOM 12270 O LYS m 13 33.869 -18.629 -23.417 1.00144.00 O \ ATOM 12271 CB LYS m 13 32.858 -20.931 -21.083 1.00215.96 C \ ATOM 12272 CG LYS m 13 33.663 -21.879 -21.943 1.00215.96 C \ ATOM 12273 CD LYS m 13 35.132 -21.792 -21.655 1.00215.96 C \ ATOM 12274 CE LYS m 13 35.881 -22.863 -22.422 1.00215.96 C \ ATOM 12275 NZ LYS m 13 35.812 -22.638 -23.894 1.00215.96 N \ ATOM 12276 H LYS m 13 31.948 -19.250 -19.741 1.00172.80 H \ ATOM 12277 HA LYS m 13 34.004 -19.223 -21.086 1.00172.80 H \ ATOM 12278 HB2 LYS m 13 33.100 -21.123 -20.167 1.00259.15 H \ ATOM 12279 HB3 LYS m 13 31.917 -21.125 -21.224 1.00259.15 H \ ATOM 12280 HG2 LYS m 13 33.373 -22.782 -21.749 1.00259.15 H \ ATOM 12281 HG3 LYS m 13 33.516 -21.699 -22.875 1.00259.15 H \ ATOM 12282 HD2 LYS m 13 35.451 -20.920 -21.934 1.00259.15 H \ ATOM 12283 HD3 LYS m 13 35.271 -21.933 -20.707 1.00259.15 H \ ATOM 12284 HE2 LYS m 13 36.818 -22.856 -22.172 1.00259.15 H \ ATOM 12285 HE3 LYS m 13 35.479 -23.730 -22.253 1.00259.15 H \ ATOM 12286 HZ1 LYS m 13 36.260 -23.262 -24.342 1.00259.15 H \ ATOM 12287 HZ2 LYS m 13 34.965 -22.652 -24.169 1.00259.15 H \ ATOM 12288 HZ3 LYS m 13 36.159 -21.848 -24.110 1.00259.15 H \ ATOM 12289 N ASP m 14 31.669 -19.151 -23.313 1.00144.00 N \ ATOM 12290 CA ASP m 14 31.546 -19.206 -24.773 1.00144.00 C \ ATOM 12291 C ASP m 14 30.225 -18.640 -25.326 1.00144.00 C \ ATOM 12292 O ASP m 14 29.157 -19.219 -25.089 1.00144.00 O \ ATOM 12293 CB ASP m 14 31.746 -20.658 -25.180 1.00185.14 C \ ATOM 12294 CG ASP m 14 31.947 -20.839 -26.674 1.00185.14 C \ ATOM 12295 OD1 ASP m 14 31.778 -19.870 -27.445 1.00185.14 O \ ATOM 12296 OD2 ASP m 14 32.313 -21.959 -27.075 1.00185.14 O \ ATOM 12297 H ASP m 14 30.918 -19.204 -22.884 1.00172.80 H \ ATOM 12298 HA ASP m 14 32.302 -18.795 -25.197 1.00172.80 H \ ATOM 12299 HB2 ASP m 14 32.518 -21.009 -24.723 1.00222.17 H \ ATOM 12300 HB3 ASP m 14 30.982 -21.130 -24.883 1.00222.17 H \ ATOM 12301 N PRO m 15 30.258 -17.505 -26.029 1.00144.00 N \ ATOM 12302 CA PRO m 15 29.075 -16.959 -26.719 1.00144.00 C \ ATOM 12303 C PRO m 15 28.957 -17.356 -28.178 1.00144.00 C \ ATOM 12304 O PRO m 15 28.297 -16.650 -28.947 1.00144.00 O \ ATOM 12305 CB PRO m 15 29.292 -15.448 -26.602 1.00523.71 C \ ATOM 12306 CG PRO m 15 30.757 -15.335 -26.708 1.00523.71 C \ ATOM 12307 CD PRO m 15 31.313 -16.495 -25.932 1.00523.71 C \ ATOM 12308 HA PRO m 15 28.243 -17.187 -26.278 1.00172.80 H \ ATOM 12309 HB2 PRO m 15 28.850 -14.977 -27.323 1.00628.45 H \ ATOM 12310 HB3 PRO m 15 28.937 -15.144 -25.746 1.00628.45 H \ ATOM 12311 HG2 PRO m 15 30.975 -15.426 -27.644 1.00628.45 H \ ATOM 12312 HG3 PRO m 15 31.037 -14.473 -26.378 1.00628.45 H \ ATOM 12313 HD2 PRO m 15 32.143 -16.805 -26.302 1.00628.45 H \ ATOM 12314 HD3 PRO m 15 31.418 -16.364 -24.993 1.00628.45 H \ ATOM 12315 N ASP m 16 29.689 -18.372 -28.602 1.00144.00 N \ ATOM 12316 CA ASP m 16 29.245 -19.206 -29.698 1.00144.00 C \ ATOM 12317 C ASP m 16 28.740 -20.536 -29.187 1.00144.00 C \ ATOM 12318 O ASP m 16 28.178 -21.313 -29.967 1.00144.00 O \ ATOM 12319 CB ASP m 16 30.366 -19.426 -30.717 1.00185.14 C \ ATOM 12320 CG ASP m 16 30.735 -18.154 -31.460 1.00185.14 C \ ATOM 12321 OD1 ASP m 16 29.852 -17.285 -31.634 1.00185.14 O \ ATOM 12322 OD2 ASP m 16 31.907 -18.020 -31.871 1.00185.14 O \ ATOM 12323 H ASP m 16 30.433 -18.605 -28.256 1.00172.80 H \ ATOM 12324 HA ASP m 16 28.492 -18.784 -30.134 1.00172.80 H \ ATOM 12325 HB2 ASP m 16 31.148 -19.731 -30.246 1.00222.17 H \ ATOM 12326 HB3 ASP m 16 30.048 -20.071 -31.369 1.00222.17 H \ ATOM 12327 N TRP m 17 28.931 -20.803 -27.891 1.00144.00 N \ ATOM 12328 CA TRP m 17 28.028 -21.689 -27.185 1.00144.00 C \ ATOM 12329 C TRP m 17 26.760 -20.969 -26.766 1.00144.00 C \ ATOM 12330 O TRP m 17 25.786 -21.619 -26.384 1.00144.00 O \ ATOM 12331 CB TRP m 17 28.633 -22.287 -25.916 1.00199.37 C \ ATOM 12332 CG TRP m 17 29.721 -23.285 -26.049 1.00199.37 C \ ATOM 12333 CD1 TRP m 17 30.192 -23.856 -27.185 1.00199.37 C \ ATOM 12334 CD2 TRP m 17 30.469 -23.850 -24.971 1.00199.37 C \ ATOM 12335 NE1 TRP m 17 31.198 -24.745 -26.883 1.00199.37 N \ ATOM 12336 CE2 TRP m 17 31.385 -24.757 -25.527 1.00199.37 C \ ATOM 12337 CE3 TRP m 17 30.453 -23.667 -23.586 1.00199.37 C \ ATOM 12338 CZ2 TRP m 17 32.276 -25.483 -24.746 1.00199.37 C \ ATOM 12339 CZ3 TRP m 17 31.327 -24.383 -22.816 1.00199.37 C \ ATOM 12340 CH2 TRP m 17 32.233 -25.281 -23.393 1.00199.37 C \ ATOM 12341 H TRP m 17 29.523 -20.439 -27.393 1.00172.80 H \ ATOM 12342 HA TRP m 17 27.831 -22.392 -27.787 1.00172.80 H \ ATOM 12343 HB2 TRP m 17 28.870 -21.593 -25.310 1.00239.24 H \ ATOM 12344 HB3 TRP m 17 27.907 -22.761 -25.505 1.00239.24 H \ ATOM 12345 HD1 TRP m 17 29.870 -23.654 -28.030 1.00239.24 H \ ATOM 12346 HE1 TRP m 17 31.627 -25.210 -27.460 1.00239.24 H \ ATOM 12347 HE3 TRP m 17 29.857 -23.063 -23.209 1.00239.24 H \ ATOM 12348 HZ2 TRP m 17 32.866 -26.081 -25.143 1.00239.24 H \ ATOM 12349 HZ3 TRP m 17 31.313 -24.255 -21.893 1.00239.24 H \ ATOM 12350 HH2 TRP m 17 32.815 -25.759 -22.841 1.00239.24 H \ ATOM 12351 N TYR m 18 26.781 -19.639 -26.710 1.00144.00 N \ ATOM 12352 CA TYR m 18 25.674 -18.843 -26.196 1.00144.00 C \ ATOM 12353 C TYR m 18 25.338 -19.172 -24.757 1.00144.00 C \ ATOM 12354 O TYR m 18 24.262 -18.816 -24.267 1.00144.00 O \ ATOM 12355 CB TYR m 18 24.433 -19.033 -27.053 1.00199.37 C \ ATOM 12356 CG TYR m 18 24.631 -18.708 -28.495 1.00199.37 C \ ATOM 12357 CD1 TYR m 18 25.662 -17.885 -28.940 1.00199.37 C \ ATOM 12358 CD2 TYR m 18 23.808 -19.269 -29.421 1.00199.37 C \ ATOM 12359 CE1 TYR m 18 25.825 -17.621 -30.273 1.00199.37 C \ ATOM 12360 CE2 TYR m 18 23.961 -19.025 -30.713 1.00199.37 C \ ATOM 12361 CZ TYR m 18 24.961 -18.207 -31.161 1.00199.37 C \ ATOM 12362 OH TYR m 18 25.045 -17.977 -32.508 1.00199.37 O \ ATOM 12363 H TYR m 18 27.420 -19.142 -26.990 1.00172.80 H \ ATOM 12364 HA TYR m 18 25.922 -17.912 -26.193 1.00172.80 H \ ATOM 12365 HB2 TYR m 18 24.186 -19.950 -27.024 1.00239.25 H \ ATOM 12366 HB3 TYR m 18 23.711 -18.471 -26.726 1.00239.25 H \ ATOM 12367 HD1 TYR m 18 26.266 -17.515 -28.325 1.00239.25 H \ ATOM 12368 HD2 TYR m 18 23.132 -19.842 -29.148 1.00239.25 H \ ATOM 12369 HE1 TYR m 18 26.536 -17.074 -30.573 1.00239.25 H \ ATOM 12370 HE2 TYR m 18 23.384 -19.455 -31.247 1.00239.25 H \ ATOM 12371 HH TYR m 18 24.341 -17.508 -32.718 1.00239.25 H \ ATOM 12372 N VAL m 19 26.254 -19.846 -24.083 1.00144.00 N \ ATOM 12373 CA VAL m 19 26.138 -20.153 -22.680 1.00144.00 C \ ATOM 12374 C VAL m 19 26.654 -18.975 -21.893 1.00144.00 C \ ATOM 12375 O VAL m 19 26.175 -18.680 -20.798 1.00144.00 O \ ATOM 12376 CB VAL m 19 26.928 -21.454 -22.423 1.00209.44 C \ ATOM 12377 CG1 VAL m 19 27.011 -21.807 -20.975 1.00209.44 C \ ATOM 12378 CG2 VAL m 19 26.276 -22.594 -23.163 1.00209.44 C \ ATOM 12379 H VAL m 19 27.023 -20.090 -24.386 1.00172.80 H \ ATOM 12380 HA VAL m 19 25.207 -20.280 -22.451 1.00172.80 H \ ATOM 12381 HB VAL m 19 27.822 -21.327 -22.774 1.00251.33 H \ ATOM 12382 HG11 VAL m 19 27.464 -22.660 -20.910 1.00251.33 H \ ATOM 12383 HG12 VAL m 19 27.536 -21.139 -20.522 1.00251.33 H \ ATOM 12384 HG13 VAL m 19 26.107 -21.866 -20.628 1.00251.33 H \ ATOM 12385 HG21 VAL m 19 26.768 -23.411 -23.017 1.00251.33 H \ ATOM 12386 HG22 VAL m 19 25.381 -22.688 -22.825 1.00251.33 H \ ATOM 12387 HG23 VAL m 19 26.228 -22.393 -24.108 1.00251.33 H \ ATOM 12388 N ARG m 20 27.633 -18.304 -22.496 1.00144.00 N \ ATOM 12389 CA ARG m 20 27.910 -16.920 -22.164 1.00144.00 C \ ATOM 12390 C ARG m 20 26.715 -16.038 -22.479 1.00144.00 C \ ATOM 12391 O ARG m 20 26.277 -15.257 -21.634 1.00144.00 O \ ATOM 12392 CB ARG m 20 29.129 -16.429 -22.938 1.00211.56 C \ ATOM 12393 CG ARG m 20 29.480 -15.009 -22.588 1.00211.56 C \ ATOM 12394 CD ARG m 20 30.625 -14.490 -23.313 1.00211.56 C \ ATOM 12395 NE ARG m 20 30.837 -13.151 -22.873 1.00211.56 N \ ATOM 12396 CZ ARG m 20 31.568 -12.855 -21.823 1.00211.56 C \ ATOM 12397 NH1 ARG m 20 32.246 -13.770 -21.149 1.00211.56 N \ ATOM 12398 NH2 ARG m 20 31.638 -11.620 -21.456 1.00211.56 N \ ATOM 12399 H ARG m 20 28.138 -18.619 -23.118 1.00172.80 H \ ATOM 12400 HA ARG m 20 28.067 -16.841 -21.219 1.00172.80 H \ ATOM 12401 HB2 ARG m 20 29.892 -17.000 -22.745 1.00253.87 H \ ATOM 12402 HB3 ARG m 20 28.927 -16.452 -23.886 1.00253.87 H \ ATOM 12403 HG2 ARG m 20 28.767 -14.399 -22.808 1.00253.87 H \ ATOM 12404 HG3 ARG m 20 29.682 -14.955 -21.653 1.00253.87 H \ ATOM 12405 HD2 ARG m 20 31.402 -15.041 -23.185 1.00253.87 H \ ATOM 12406 HD3 ARG m 20 30.380 -14.414 -24.219 1.00253.87 H \ ATOM 12407 HE ARG m 20 30.931 -12.597 -23.526 1.00253.87 H \ ATOM 12408 HH11 ARG m 20 32.240 -14.608 -21.336 1.00253.87 H \ ATOM 12409 HH12 ARG m 20 32.713 -13.514 -20.459 1.00253.87 H \ ATOM 12410 HH21 ARG m 20 31.234 -11.014 -21.912 1.00253.87 H \ ATOM 12411 HH22 ARG m 20 32.141 -11.396 -20.796 1.00253.87 H \ ATOM 12412 N LYS m 21 26.227 -16.096 -23.720 1.00144.00 N \ ATOM 12413 CA LYS m 21 25.111 -15.245 -24.124 1.00144.00 C \ ATOM 12414 C LYS m 21 23.925 -15.448 -23.200 1.00144.00 C \ ATOM 12415 O LYS m 21 23.316 -14.486 -22.718 1.00144.00 O \ ATOM 12416 CB LYS m 21 24.711 -15.566 -25.558 1.00215.96 C \ ATOM 12417 CG LYS m 21 23.653 -14.660 -26.151 1.00215.96 C \ ATOM 12418 CD LYS m 21 23.290 -15.106 -27.543 1.00215.96 C \ ATOM 12419 CE LYS m 21 24.326 -14.702 -28.562 1.00215.96 C \ ATOM 12420 NZ LYS m 21 23.849 -15.143 -29.892 1.00215.96 N \ ATOM 12421 H LYS m 21 26.508 -16.620 -24.341 1.00172.80 H \ ATOM 12422 HA LYS m 21 25.367 -14.311 -24.085 1.00172.80 H \ ATOM 12423 HB2 LYS m 21 25.497 -15.552 -26.122 1.00259.15 H \ ATOM 12424 HB3 LYS m 21 24.312 -16.448 -25.546 1.00259.15 H \ ATOM 12425 HG2 LYS m 21 22.845 -14.680 -25.616 1.00259.15 H \ ATOM 12426 HG3 LYS m 21 23.990 -13.751 -26.203 1.00259.15 H \ ATOM 12427 HD2 LYS m 21 23.234 -16.065 -27.557 1.00259.15 H \ ATOM 12428 HD3 LYS m 21 22.431 -14.721 -27.780 1.00259.15 H \ ATOM 12429 HE2 LYS m 21 24.386 -13.726 -28.547 1.00259.15 H \ ATOM 12430 HE3 LYS m 21 25.172 -15.133 -28.388 1.00259.15 H \ ATOM 12431 HZ1 LYS m 21 24.493 -15.136 -30.490 1.00259.15 H \ ATOM 12432 HZ2 LYS m 21 23.574 -15.969 -29.867 1.00259.15 H \ ATOM 12433 HZ3 LYS m 21 23.209 -14.578 -30.134 1.00259.15 H \ ATOM 12434 N ALA m 22 23.593 -16.706 -22.935 1.00144.00 N \ ATOM 12435 CA ALA m 22 22.566 -17.000 -21.953 1.00144.00 C \ ATOM 12436 C ALA m 22 23.000 -16.558 -20.568 1.00144.00 C \ ATOM 12437 O ALA m 22 22.167 -16.127 -19.764 1.00144.00 O \ ATOM 12438 CB ALA m 22 22.250 -18.490 -21.974 1.00196.36 C \ ATOM 12439 H ALA m 22 23.953 -17.393 -23.299 1.00172.80 H \ ATOM 12440 HA ALA m 22 21.763 -16.507 -22.169 1.00172.80 H \ ATOM 12441 HB1 ALA m 22 21.538 -18.666 -21.341 1.00235.64 H \ ATOM 12442 HB2 ALA m 22 21.965 -18.714 -22.872 1.00235.64 H \ ATOM 12443 HB3 ALA m 22 23.053 -18.983 -21.738 1.00235.64 H \ ATOM 12444 N ALA m 23 24.299 -16.646 -20.269 1.00144.00 N \ ATOM 12445 CA ALA m 23 24.770 -16.137 -18.988 1.00144.00 C \ ATOM 12446 C ALA m 23 24.656 -14.624 -18.936 1.00144.00 C \ ATOM 12447 O ALA m 23 24.179 -14.063 -17.944 1.00144.00 O \ ATOM 12448 CB ALA m 23 26.213 -16.569 -18.721 1.00196.36 C \ ATOM 12449 H ALA m 23 24.908 -16.975 -20.778 1.00172.80 H \ ATOM 12450 HA ALA m 23 24.193 -16.494 -18.318 1.00172.80 H \ ATOM 12451 HB1 ALA m 23 26.508 -16.183 -17.882 1.00235.64 H \ ATOM 12452 HB2 ALA m 23 26.250 -17.531 -18.666 1.00235.64 H \ ATOM 12453 HB3 ALA m 23 26.776 -16.248 -19.437 1.00235.64 H \ ATOM 12454 N ALA m 24 25.077 -13.952 -20.004 1.00144.00 N \ ATOM 12455 CA ALA m 24 24.930 -12.509 -20.090 1.00144.00 C \ ATOM 12456 C ALA m 24 23.462 -12.125 -20.048 1.00144.00 C \ ATOM 12457 O ALA m 24 23.092 -11.095 -19.471 1.00144.00 O \ ATOM 12458 CB ALA m 24 25.584 -12.007 -21.374 1.00196.36 C \ ATOM 12459 H ALA m 24 25.409 -14.302 -20.696 1.00172.80 H \ ATOM 12460 HA ALA m 24 25.370 -12.100 -19.332 1.00172.80 H \ ATOM 12461 HB1 ALA m 24 25.518 -11.041 -21.397 1.00235.64 H \ ATOM 12462 HB2 ALA m 24 26.512 -12.290 -21.384 1.00235.64 H \ ATOM 12463 HB3 ALA m 24 25.106 -12.398 -22.123 1.00235.64 H \ ATOM 12464 N GLU m 25 22.610 -12.945 -20.661 1.00144.00 N \ ATOM 12465 CA GLU m 25 21.175 -12.768 -20.508 1.00144.00 C \ ATOM 12466 C GLU m 25 20.774 -12.950 -19.054 1.00144.00 C \ ATOM 12467 O GLU m 25 20.003 -12.156 -18.503 1.00144.00 O \ ATOM 12468 CB GLU m 25 20.432 -13.760 -21.401 1.00193.43 C \ ATOM 12469 CG GLU m 25 18.923 -13.511 -21.509 1.00193.43 C \ ATOM 12470 CD GLU m 25 18.109 -14.131 -20.381 1.00193.43 C \ ATOM 12471 OE1 GLU m 25 18.534 -15.160 -19.813 1.00193.43 O \ ATOM 12472 OE2 GLU m 25 17.032 -13.583 -20.066 1.00193.43 O \ ATOM 12473 H GLU m 25 22.837 -13.616 -21.149 1.00172.80 H \ ATOM 12474 HA GLU m 25 20.931 -11.866 -20.760 1.00172.80 H \ ATOM 12475 HB2 GLU m 25 20.803 -13.700 -22.293 1.00232.12 H \ ATOM 12476 HB3 GLU m 25 20.575 -14.649 -21.042 1.00232.12 H \ ATOM 12477 HG2 GLU m 25 18.753 -12.556 -21.482 1.00232.12 H \ ATOM 12478 HG3 GLU m 25 18.586 -13.888 -22.335 1.00232.12 H \ ATOM 12479 N ALA m 26 21.293 -13.998 -18.415 1.00144.00 N \ ATOM 12480 CA ALA m 26 20.970 -14.230 -17.015 1.00144.00 C \ ATOM 12481 C ALA m 26 21.519 -13.117 -16.144 1.00144.00 C \ ATOM 12482 O ALA m 26 20.874 -12.689 -15.179 1.00144.00 O \ ATOM 12483 CB ALA m 26 21.519 -15.580 -16.566 1.00196.36 C \ ATOM 12484 H ALA m 26 21.829 -14.574 -18.760 1.00172.80 H \ ATOM 12485 HA ALA m 26 20.015 -14.206 -16.924 1.00172.80 H \ ATOM 12486 HB1 ALA m 26 21.244 -15.742 -15.650 1.00235.64 H \ ATOM 12487 HB2 ALA m 26 21.168 -16.264 -17.150 1.00235.64 H \ ATOM 12488 HB3 ALA m 26 22.487 -15.555 -16.624 1.00235.64 H \ ATOM 12489 N LEU m 27 22.709 -12.634 -16.474 1.00144.00 N \ ATOM 12490 CA LEU m 27 23.213 -11.428 -15.844 1.00144.00 C \ ATOM 12491 C LEU m 27 22.445 -10.209 -16.328 1.00144.00 C \ ATOM 12492 O LEU m 27 22.370 -9.203 -15.617 1.00144.00 O \ ATOM 12493 CB LEU m 27 24.702 -11.298 -16.134 1.00213.17 C \ ATOM 12494 CG LEU m 27 25.578 -12.411 -15.542 1.00213.17 C \ ATOM 12495 CD1 LEU m 27 26.998 -12.233 -16.027 1.00213.17 C \ ATOM 12496 CD2 LEU m 27 25.543 -12.479 -14.016 1.00213.17 C \ ATOM 12497 H LEU m 27 23.234 -12.979 -17.055 1.00172.80 H \ ATOM 12498 HA LEU m 27 23.081 -11.488 -14.884 1.00172.80 H \ ATOM 12499 HB2 LEU m 27 24.815 -11.331 -17.097 1.00255.80 H \ ATOM 12500 HB3 LEU m 27 25.015 -10.447 -15.796 1.00255.80 H \ ATOM 12501 HG LEU m 27 25.257 -13.265 -15.864 1.00255.80 H \ ATOM 12502 HD11 LEU m 27 27.551 -12.925 -15.633 1.00255.80 H \ ATOM 12503 HD12 LEU m 27 27.006 -12.305 -16.994 1.00255.80 H \ ATOM 12504 HD13 LEU m 27 27.311 -11.357 -15.753 1.00255.80 H \ ATOM 12505 HD21 LEU m 27 26.145 -13.176 -13.711 1.00255.80 H \ ATOM 12506 HD22 LEU m 27 25.837 -11.623 -13.661 1.00255.80 H \ ATOM 12507 HD23 LEU m 27 24.644 -12.666 -13.708 1.00255.80 H \ ATOM 12508 N GLY m 28 21.856 -10.292 -17.525 1.00144.00 N \ ATOM 12509 CA GLY m 28 20.888 -9.294 -17.950 1.00144.00 C \ ATOM 12510 C GLY m 28 19.602 -9.322 -17.149 1.00144.00 C \ ATOM 12511 O GLY m 28 18.729 -8.472 -17.342 1.00144.00 O \ ATOM 12512 H GLY m 28 22.008 -10.905 -18.101 1.00172.80 H \ ATOM 12513 HA2 GLY m 28 21.279 -8.413 -17.834 1.00172.80 H \ ATOM 12514 HA3 GLY m 28 20.665 -9.419 -18.886 1.00172.80 H \ ATOM 12515 N ARG m 29 19.443 -10.321 -16.284 1.00144.00 N \ ATOM 12516 CA ARG m 29 18.464 -10.314 -15.208 1.00144.00 C \ ATOM 12517 C ARG m 29 19.124 -10.145 -13.851 1.00144.00 C \ ATOM 12518 O ARG m 29 18.534 -9.552 -12.941 1.00144.00 O \ ATOM 12519 CB ARG m 29 17.666 -11.616 -15.232 1.00211.56 C \ ATOM 12520 CG ARG m 29 16.829 -11.790 -16.478 1.00211.56 C \ ATOM 12521 CD ARG m 29 15.693 -10.784 -16.542 1.00211.56 C \ ATOM 12522 NE ARG m 29 14.762 -10.873 -15.406 1.00211.56 N \ ATOM 12523 CZ ARG m 29 13.746 -11.732 -15.326 1.00211.56 C \ ATOM 12524 NH1 ARG m 29 13.550 -12.627 -16.275 1.00211.56 N \ ATOM 12525 NH2 ARG m 29 12.928 -11.739 -14.280 1.00211.56 N \ ATOM 12526 H ARG m 29 19.904 -11.045 -16.303 1.00172.80 H \ ATOM 12527 HA ARG m 29 17.867 -9.558 -15.289 1.00172.80 H \ ATOM 12528 HB2 ARG m 29 18.305 -12.348 -15.190 1.00253.87 H \ ATOM 12529 HB3 ARG m 29 17.096 -11.650 -14.450 1.00253.87 H \ ATOM 12530 HG2 ARG m 29 17.397 -11.659 -17.251 1.00253.87 H \ ATOM 12531 HG3 ARG m 29 16.459 -12.681 -16.492 1.00253.87 H \ ATOM 12532 HD2 ARG m 29 16.047 -9.876 -16.556 1.00253.87 H \ ATOM 12533 HD3 ARG m 29 15.186 -10.926 -17.357 1.00253.87 H \ ATOM 12534 HE ARG m 29 15.093 -10.644 -14.650 1.00253.87 H \ ATOM 12535 HH11 ARG m 29 14.050 -12.709 -16.950 1.00253.87 H \ ATOM 12536 HH12 ARG m 29 12.898 -13.162 -16.186 1.00253.87 H \ ATOM 12537 HH21 ARG m 29 13.033 -11.184 -13.636 1.00253.87 H \ ATOM 12538 HH22 ARG m 29 12.305 -12.327 -14.263 1.00253.87 H \ ATOM 12539 N ILE m 30 20.341 -10.654 -13.713 1.00144.00 N \ ATOM 12540 CA ILE m 30 21.018 -10.732 -12.435 1.00144.00 C \ ATOM 12541 C ILE m 30 22.274 -9.887 -12.520 1.00144.00 C \ ATOM 12542 O ILE m 30 22.752 -9.384 -11.508 1.00144.00 O \ ATOM 12543 CB ILE m 30 21.333 -12.194 -12.074 1.00213.17 C \ ATOM 12544 CG1 ILE m 30 20.031 -13.001 -11.962 1.00213.17 C \ ATOM 12545 CG2 ILE m 30 22.119 -12.271 -10.759 1.00213.17 C \ ATOM 12546 CD1 ILE m 30 20.216 -14.506 -11.897 1.00213.17 C \ ATOM 12547 H ILE m 30 20.804 -10.973 -14.360 1.00172.80 H \ ATOM 12548 HA ILE m 30 20.476 -10.363 -11.719 1.00172.80 H \ ATOM 12549 HB ILE m 30 21.882 -12.570 -12.780 1.00255.80 H \ ATOM 12550 HG12 ILE m 30 19.565 -12.721 -11.157 1.00255.80 H \ ATOM 12551 HG13 ILE m 30 19.475 -12.834 -12.736 1.00255.80 H \ ATOM 12552 HG21 ILE m 30 22.256 -13.198 -10.532 1.00255.80 H \ ATOM 12553 HG22 ILE m 30 22.981 -11.836 -10.835 1.00255.80 H \ ATOM 12554 HG23 ILE m 30 21.611 -11.849 -10.049 1.00255.80 H \ ATOM 12555 HD11 ILE m 30 19.346 -14.929 -11.843 1.00255.80 H \ ATOM 12556 HD12 ILE m 30 20.681 -14.805 -12.694 1.00255.80 H \ ATOM 12557 HD13 ILE m 30 20.735 -14.736 -11.113 1.00255.80 H \ 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 \ """, "6mk1chainm") cmd.hide("all") cmd.color('grey70', "6mk1chainm") cmd.show('cartoon', "6mk1chainm") cmd.center("6mk1chainm", state=0, origin=1) cmd.zoom("6mk1chainm", animate=-1) cmd.select("e6mk1m1", "c. m & i. 1-30") cmd.color("red", "e6mk1m1") cmd.disable("e6mk1m1")