cmd.read_pdbstr("""\ HEADER PROTEIN BINDING 27-JUN-13 3J47 \ TITLE FORMATION OF AN INTRICATE HELICAL BUNDLE DICTATES THE ASSEMBLY OF THE \ TITLE 2 26S PROTEASOME LID \ COMPND MOL_ID: 1; \ COMPND 2 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN11; \ COMPND 3 CHAIN: V; \ COMPND 4 FRAGMENT: LAST THREE C-TERMINAL HELICES (UNP RESIDUES 230-298); \ COMPND 5 SYNONYM: PROTEIN MPR1; \ COMPND 6 MOL_ID: 2; \ COMPND 7 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN8; \ COMPND 8 CHAIN: U; \ COMPND 9 FRAGMENT: LAST THREE C-TERMINAL HELICES (UNP RESIDUES 188-308); \ COMPND 10 MOL_ID: 3; \ COMPND 11 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN9; \ COMPND 12 CHAIN: O; \ COMPND 13 FRAGMENT: C-TERMINAL HELIX (UNP RESIDUES 360-387); \ COMPND 14 SYNONYM: PROTEASOME NON-ATPASE SUBUNIT 7; \ COMPND 15 MOL_ID: 4; \ COMPND 16 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN5; \ COMPND 17 CHAIN: P; \ COMPND 18 FRAGMENT: C-TERMINAL HELIX (UNP RESIDUES 409-442); \ COMPND 19 SYNONYM: PROTEASOME NON-ATPASE SUBUNIT 5; \ COMPND 20 MOL_ID: 5; \ COMPND 21 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN6; \ COMPND 22 CHAIN: Q; \ COMPND 23 FRAGMENT: C-TERMINAL HELIX (UNP RESIDUES 407-431); \ COMPND 24 SYNONYM: PROTEASOME NON-ATPASE SUBUNIT 4; \ COMPND 25 MOL_ID: 6; \ COMPND 26 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN7; \ COMPND 27 CHAIN: R; \ COMPND 28 FRAGMENT: C-TERMINAL HELIX (UNP RESIDUES 397-422); \ COMPND 29 MOL_ID: 7; \ COMPND 30 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN3; \ COMPND 31 CHAIN: S; \ COMPND 32 FRAGMENT: C-TERMINAL HELIX (UNP RESIDUES 455-478); \ COMPND 33 MOL_ID: 8; \ COMPND 34 MOLECULE: 26S PROTEASOME REGULATORY SUBUNIT RPN12; \ COMPND 35 CHAIN: T; \ COMPND 36 FRAGMENT: C-TERMINAL HELIX (UNP RESIDUES 256-272); \ COMPND 37 SYNONYM: NUCLEAR INTEGRITY PROTEIN 1 \ SOURCE MOL_ID: 1; \ SOURCE 2 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 3 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 4 ORGANISM_TAXID: 559292; \ SOURCE 5 STRAIN: ATCC 204508 / S288C; \ SOURCE 6 MOL_ID: 2; \ SOURCE 7 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 8 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 9 ORGANISM_TAXID: 559292; \ SOURCE 10 STRAIN: ATCC 204508 / S288C; \ SOURCE 11 MOL_ID: 3; \ SOURCE 12 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 13 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 14 ORGANISM_TAXID: 559292; \ SOURCE 15 STRAIN: ATCC 204508 / S288C; \ SOURCE 16 MOL_ID: 4; \ SOURCE 17 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 18 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 19 ORGANISM_TAXID: 559292; \ SOURCE 20 STRAIN: ATCC 204508 / S288C; \ SOURCE 21 MOL_ID: 5; \ SOURCE 22 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 23 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 24 ORGANISM_TAXID: 559292; \ SOURCE 25 STRAIN: ATCC 204508 / S288C; \ SOURCE 26 MOL_ID: 6; \ SOURCE 27 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 28 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 29 ORGANISM_TAXID: 559292; \ SOURCE 30 STRAIN: ATCC 204508 / S288C; \ SOURCE 31 MOL_ID: 7; \ SOURCE 32 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 33 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 34 ORGANISM_TAXID: 559292; \ SOURCE 35 STRAIN: ATCC 204508 / S288C; \ SOURCE 36 MOL_ID: 8; \ SOURCE 37 ORGANISM_SCIENTIFIC: SACCHAROMYCES CEREVISIAE; \ SOURCE 38 ORGANISM_COMMON: BAKER'S YEAST; \ SOURCE 39 ORGANISM_TAXID: 559292; \ SOURCE 40 STRAIN: ATCC 204508 / S288C \ KEYWDS ALPHA HELIX BUNDLE, HYBRID METHOD, FLEXIBLE FITTING, PROTEIN BINDING \ EXPDTA ELECTRON MICROSCOPY \ AUTHOR E.ESTRIN,J.R.LOPEZ-BLANCO,P.CHACON,A.MARTIN \ REVDAT 5 21-FEB-24 3J47 1 REMARK \ REVDAT 4 18-JUL-18 3J47 1 REMARK \ REVDAT 3 02-OCT-13 3J47 1 REMARK \ REVDAT 2 25-SEP-13 3J47 1 JRNL \ REVDAT 1 28-AUG-13 3J47 0 \ JRNL AUTH E.ESTRIN,J.R.LOPEZ-BLANCO,P.CHACON,A.MARTIN \ JRNL TITL FORMATION OF AN INTRICATE HELICAL BUNDLE DICTATES THE \ JRNL TITL 2 ASSEMBLY OF THE 26S PROTEASOME LID. \ JRNL REF STRUCTURE V. 21 1624 2013 \ JRNL REFN ISSN 0969-2126 \ JRNL PMID 23911091 \ JRNL DOI 10.1016/J.STR.2013.06.023 \ REMARK 0 \ REMARK 0 THIS ENTRY 3J47 CONTAINS A STRUCTURAL MODEL FIT TO AN ELECTRON \ REMARK 0 MICROSCOPY MAP (EMD-2165) DETERMINED ORIGINALLY BY AUTHORS: \ REMARK 0 F.BECK, P.UNVERDORBEN, S.BOHN, A.SCHWEITZER, G.PFEIFER, E.SAKATA, \ REMARK 0 S.NICKELL, J.M.PLITZKO, E.VILLA, W.BAUMEISTER, F.FORSTER \ REMARK 0 ORIGINAL DATA REFERENCE 1 \ REMARK 0 AUTH F.BECK,P.UNVERDORBEN,S.BOHN,A.SCHWEITZER,G.PFEIFER,E.SAKATA, \ REMARK 0 AUTH 2 S.NICKELL,J.M.PLITZKO,E.VILLA,W.BAUMEISTER,F.FORSTER \ REMARK 0 TITL NEAR-ATOMIC RESOLUTION STRUCTURAL MODEL OF THE YEAST 26S \ REMARK 0 TITL 2 PROTEASOME. \ REMARK 0 REF PROC.NATL.ACAD.SCI.USA V. 109 14870 2012 \ REMARK 0 REFN ISSN 0027-8424 \ REMARK 0 PMID 22927375 \ REMARK 0 DOI 10.1073/PNAS.1213333109 \ REMARK 2 \ REMARK 2 RESOLUTION. 7.40 ANGSTROMS. \ REMARK 3 \ REMARK 3 REFINEMENT. \ REMARK 3 SOFTWARE PACKAGES : EMTEGRATOR, IMODFIT, VOLTRAC \ REMARK 3 RECONSTRUCTION SCHEMA : NULL \ REMARK 3 \ REMARK 3 EM MAP-MODEL FITTING AND REFINEMENT \ REMARK 3 PDB ENTRY : NULL \ REMARK 3 REFINEMENT SPACE : REAL \ REMARK 3 REFINEMENT PROTOCOL : FLEXIBLE FIT \ REMARK 3 REFINEMENT TARGET : CROSS-CORRELATION COEFFICIENT \ REMARK 3 OVERALL ANISOTROPIC B VALUE : NULL \ REMARK 3 \ REMARK 3 FITTING PROCEDURE : METHOD--HYBRID METHOD + FLEXIBLE FITTING \ REMARK 3 REFINEMENT PROTOCOL--HYBRID METHOD DETAILS--INITIAL MODEL WAS \ REMARK 3 DONE WITH AN IN HOUSE HYBRID METHOD (EMTEGRATOR) THAT INTEGRATES \ REMARK 3 TOPOLOGY CONSTRAINTS WITH EM-MAP DERIVED CONSTRAINTS. IMODFIT \ REMARK 3 WAS THEN USED FOR FINAL FLEXIBLE FITTING. \ 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) : 7.400 \ REMARK 3 NUMBER OF PARTICLES : 246469 \ REMARK 3 CTF CORRECTION METHOD : NULL \ REMARK 3 \ REMARK 3 EM RECONSTRUCTION MAGNIFICATION CALIBRATION: NULL \ REMARK 3 \ REMARK 3 OTHER DETAILS: NULL \ REMARK 4 \ REMARK 4 3J47 COMPLIES WITH FORMAT V. 3.30, 13-JUL-11 \ REMARK 100 \ REMARK 100 THIS ENTRY HAS BEEN PROCESSED BY RCSB ON 13-AUG-13. \ REMARK 100 THE DEPOSITION ID IS D_1000160229. \ REMARK 245 \ REMARK 245 EXPERIMENTAL DETAILS \ REMARK 245 RECONSTRUCTION METHOD : SINGLE PARTICLE \ REMARK 245 SPECIMEN TYPE : VITREOUS ICE (CRYO EM) \ REMARK 245 \ REMARK 245 ELECTRON MICROSCOPE SAMPLE \ REMARK 245 SAMPLE TYPE : PARTICLE \ REMARK 245 PARTICLE TYPE : POINT \ REMARK 245 NAME OF SAMPLE : 26S PROTEASOME \ REMARK 245 SAMPLE CONCENTRATION (MG ML-1) : NULL \ REMARK 245 SAMPLE SUPPORT DETAILS : NULL \ REMARK 245 SAMPLE VITRIFICATION DETAILS : NULL \ REMARK 245 SAMPLE BUFFER : NULL \ REMARK 245 PH : 7.10 \ REMARK 245 SAMPLE DETAILS : NULL \ REMARK 245 \ REMARK 245 DATA ACQUISITION \ REMARK 245 DATE OF EXPERIMENT : 15-MAR-12 \ REMARK 245 NUMBER OF MICROGRAPHS-IMAGES : NULL \ REMARK 245 TEMPERATURE (KELVIN) : NULL \ REMARK 245 MICROSCOPE MODEL : FEI TITAN KRIOS \ REMARK 245 DETECTOR TYPE : TVIPS TEMCAM-F816 (8K X 8K) \ REMARK 245 MINIMUM DEFOCUS (NM) : 1500.00 \ REMARK 245 MAXIMUM DEFOCUS (NM) : 3500.00 \ 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) : 2500.00 \ REMARK 245 ILLUMINATION MODE : FLOOD BEAM \ REMARK 245 NOMINAL MAGNIFICATION : 150000 \ REMARK 245 CALIBRATED MAGNIFICATION : NULL \ REMARK 245 SOURCE : FIELD EMISSION GUN \ REMARK 245 ACCELERATION VOLTAGE (KV) : 200 \ 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 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: OCTAMERIC \ REMARK 350 APPLY THE FOLLOWING TO CHAINS: V, U, O, P, Q, R, S, T \ REMARK 350 BIOMT1 1 1.000000 0.000000 0.000000 0.00000 \ REMARK 350 BIOMT2 1 0.000000 1.000000 0.000000 0.00000 \ REMARK 350 BIOMT3 1 0.000000 0.000000 1.000000 0.00000 \ REMARK 465 \ REMARK 465 MISSING RESIDUES \ REMARK 465 THE FOLLOWING RESIDUES WERE NOT LOCATED IN THE \ REMARK 465 EXPERIMENT. (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN \ REMARK 465 IDENTIFIER; SSSEQ=SEQUENCE NUMBER; I=INSERTION CODE.) \ REMARK 465 \ REMARK 465 M RES C SSSEQI \ REMARK 465 TYR V 270 \ REMARK 465 VAL V 271 \ REMARK 465 GLY V 272 \ REMARK 465 ARG V 273 \ REMARK 465 GLN V 274 \ REMARK 465 ASP V 275 \ REMARK 465 ASN U 216 \ REMARK 465 LYS U 217 \ REMARK 465 GLU U 218 \ REMARK 465 LEU U 219 \ REMARK 465 PRO U 220 \ REMARK 465 ILE U 221 \ REMARK 465 ASN U 222 \ REMARK 465 LEU U 236 \ REMARK 465 PRO U 237 \ REMARK 465 ASN U 238 \ REMARK 465 LEU U 239 \ REMARK 465 GLY U 240 \ REMARK 465 THR U 241 \ REMARK 465 PRO U 242 \ REMARK 465 ASP U 243 \ REMARK 465 ASP U 244 \ REMARK 465 ASP U 245 \ REMARK 465 GLU U 246 \ REMARK 465 ILE U 247 \ REMARK 465 ASP U 248 \ REMARK 465 VAL U 249 \ REMARK 465 GLU U 250 \ REMARK 465 ASN U 251 \ REMARK 465 HIS U 252 \ REMARK 465 ASP U 253 \ REMARK 465 ARG U 254 \ REMARK 465 ILE U 255 \ REMARK 465 ASN U 256 \ REMARK 465 ILE U 257 \ REMARK 465 SER U 258 \ 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 CG1 VAL Q 416 CD1 LEU R 410 0.52 \ REMARK 500 NZ LYS U 228 C THR P 428 0.55 \ REMARK 500 CG ASP U 289 CD1 LEU Q 419 0.55 \ REMARK 500 OE2 GLU V 258 CD2 LEU Q 415 0.56 \ REMARK 500 CG LEU U 291 CD2 TYR S 475 0.60 \ REMARK 500 NZ LYS V 233 CA GLN U 193 0.67 \ REMARK 500 CD1 LEU V 261 C LEU V 280 0.68 \ REMARK 500 C TYR U 277 CE1 PHE S 461 0.68 \ REMARK 500 CD1 ILE U 296 CG LEU Q 426 0.69 \ REMARK 500 CG LEU U 200 CZ3 TRP O 373 0.71 \ REMARK 500 CD1 LEU U 197 CG1 VAL O 377 0.75 \ REMARK 500 O LEU V 261 CG LEU V 280 0.76 \ REMARK 500 NZ LYS V 277 CD GLU U 293 0.77 \ REMARK 500 OD2 ASP U 289 CD1 LEU Q 419 0.78 \ REMARK 500 O LEU V 261 CD2 LEU V 280 0.78 \ REMARK 500 CG2 VAL Q 416 CD2 LEU R 410 0.78 \ REMARK 500 CD1 LEU V 261 O LEU V 280 0.79 \ REMARK 500 NH2 ARG O 387 SD MET T 264 0.80 \ REMARK 500 CE LYS V 277 OE1 GLU U 293 0.83 \ REMARK 500 CE2 TYR U 277 O PHE S 461 0.86 \ REMARK 500 CD1 LEU R 411 CD2 PHE S 467 0.86 \ REMARK 500 CD1 LEU U 291 CE2 TYR S 475 0.88 \ REMARK 500 NZ LYS V 277 CG GLU U 293 0.90 \ REMARK 500 OE1 GLU V 264 N LEU V 280 0.91 \ REMARK 500 NZ LYS U 268 N LEU P 412 0.91 \ REMARK 500 CE1 TYR Q 409 O LEU R 403 0.94 \ REMARK 500 N TYR V 230 CE LYS U 195 0.95 \ REMARK 500 CG1 VAL Q 423 CG TYR R 417 0.97 \ REMARK 500 CG2 VAL U 232 CD2 HIS P 425 0.98 \ REMARK 500 CA LEU V 261 CD1 LEU V 280 0.98 \ REMARK 500 CG1 VAL Q 423 CD1 TYR R 417 0.99 \ REMARK 500 NZ LYS V 233 N GLN U 193 1.01 \ REMARK 500 NE2 GLN R 415 CE1 PHE S 467 1.01 \ REMARK 500 NH2 ARG V 269 CG1 VAL Q 422 1.01 \ REMARK 500 CG TYR U 277 CD2 PHE S 461 1.02 \ REMARK 500 CG TYR U 277 CG PHE S 461 1.03 \ REMARK 500 CA TYR U 277 CZ PHE S 461 1.03 \ REMARK 500 NZ LYS U 228 N ILE P 429 1.03 \ REMARK 500 CZ TYR U 277 O PHE S 461 1.03 \ REMARK 500 CE LYS V 277 CD GLU U 293 1.04 \ REMARK 500 ND2 ASN Q 420 CD LYS R 413 1.06 \ REMARK 500 NH1 ARG V 269 CA VAL Q 422 1.07 \ REMARK 500 CD GLU V 264 O PRO V 276 1.10 \ REMARK 500 CD2 LEU U 204 ND2 ASN O 374 1.10 \ REMARK 500 CA TYR U 277 CE1 PHE S 461 1.11 \ REMARK 500 CG2 VAL U 232 NE2 HIS P 425 1.12 \ REMARK 500 CD LYS V 233 C ASN U 192 1.15 \ REMARK 500 CE LYS V 233 N GLN U 193 1.15 \ REMARK 500 CG TYR Q 409 CD1 LEU R 403 1.17 \ REMARK 500 O LEU U 291 CZ TYR S 475 1.19 \ REMARK 500 \ REMARK 500 THIS ENTRY HAS 320 CLOSE CONTACTS \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 500 \ REMARK 500 GEOMETRY AND STEREOCHEMISTRY \ REMARK 500 SUBTOPIC: COVALENT BOND LENGTHS \ REMARK 500 \ REMARK 500 THE STEREOCHEMICAL PARAMETERS OF THE FOLLOWING RESIDUES \ REMARK 500 HAVE VALUES WHICH DEVIATE FROM EXPECTED VALUES BY MORE \ REMARK 500 THAN 6*RMSD (M=MODEL NUMBER; RES=RESIDUE NAME; C=CHAIN \ REMARK 500 IDENTIFIER; SSEQ=SEQUENCE NUMBER; I=INSERTION CODE). \ REMARK 500 \ REMARK 500 STANDARD TABLE: \ REMARK 500 FORMAT: (10X,I3,1X,2(A3,1X,A1,I4,A1,1X,A4,3X),1X,F6.3) \ REMARK 500 \ REMARK 500 EXPECTED VALUES PROTEIN: ENGH AND HUBER, 1999 \ REMARK 500 EXPECTED VALUES NUCLEIC ACID: CLOWNEY ET AL 1996 \ REMARK 500 \ REMARK 500 M RES CSSEQI ATM1 RES CSSEQI ATM2 DEVIATION \ REMARK 500 LEU V 238 C ALA V 239 N 0.162 \ REMARK 500 ALA V 239 N ALA V 239 CA -0.283 \ REMARK 500 PRO V 276 CD PRO V 276 N 0.161 \ REMARK 500 TRP O 373 CE2 TRP O 373 CD2 -0.080 \ REMARK 500 ALA Q 407 N ALA Q 407 CA -0.148 \ REMARK 500 PRO S 457 CD PRO S 457 N 0.221 \ REMARK 500 \ REMARK 500 REMARK: NULL \ REMARK 900 \ REMARK 900 RELATED ENTRIES \ REMARK 900 RELATED ID: EMD-2165 RELATED DB: EMDB \ REMARK 900 26S YEAST PROTEASOME \ REMARK 900 RELATED ID: 4B4T RELATED DB: PDB \ REMARK 900 26S YEAST PROTEASOME FLEXIBLY FITTED MODEL \ DBREF 3J47 V 230 298 UNP P43588 RPN11_YEAST 230 298 \ DBREF 3J47 U 188 308 UNP Q08723 RPN8_YEAST 188 308 \ DBREF 3J47 O 360 387 UNP Q04062 RPN9_YEAST 360 387 \ DBREF 3J47 P 409 442 UNP Q12250 RPN5_YEAST 409 442 \ DBREF 3J47 Q 407 431 UNP Q12377 RPN6_YEAST 407 431 \ DBREF 3J47 R 397 422 UNP Q06103 RPN7_YEAST 397 422 \ DBREF 3J47 S 455 478 UNP P40016 RPN3_YEAST 455 478 \ DBREF 3J47 T 256 272 UNP P32496 RPN12_YEAST 256 272 \ SEQRES 1 V 69 TYR GLU GLU LYS GLU GLU SER ASN LEU ALA ALA THR LYS \ SEQRES 2 V 69 SER MET VAL LYS ILE ALA GLU GLN TYR SER LYS ARG ILE \ SEQRES 3 V 69 GLU GLU GLU LYS GLU LEU THR GLU GLU GLU LEU LYS THR \ SEQRES 4 V 69 ARG TYR VAL GLY ARG GLN ASP PRO LYS LYS HIS LEU SER \ SEQRES 5 V 69 GLU THR ALA ASP GLU THR LEU GLU ASN ASN ILE VAL SER \ SEQRES 6 V 69 VAL LEU THR ALA \ SEQRES 1 U 121 ILE ARG LEU THR ASN GLN LEU LYS SER LEU LYS GLY LEU \ SEQRES 2 U 121 GLN SER LYS LEU LYS ASP VAL VAL GLU TYR LEU ASP LYS \ SEQRES 3 U 121 VAL ILE ASN LYS GLU LEU PRO ILE ASN HIS THR ILE LEU \ SEQRES 4 U 121 GLY LYS LEU GLN ASP VAL PHE ASN LEU LEU PRO ASN LEU \ SEQRES 5 U 121 GLY THR PRO ASP ASP ASP GLU ILE ASP VAL GLU ASN HIS \ SEQRES 6 U 121 ASP ARG ILE ASN ILE SER ASN ASN LEU GLN LYS ALA LEU \ SEQRES 7 U 121 THR VAL LYS THR ASN ASP GLU LEU MET VAL ILE TYR ILE \ SEQRES 8 U 121 SER ASN LEU VAL ARG SER ILE ILE ALA PHE ASP ASP LEU \ SEQRES 9 U 121 ILE GLU ASN LYS ILE GLN ASN LYS LYS ILE GLN GLU GLN \ SEQRES 10 U 121 ARG VAL LYS ASP \ SEQRES 1 O 28 GLY ASP GLN ILE THR LYS MET LYS ASP ARG LEU VAL GLU \ SEQRES 2 O 28 TRP ASN ASP GLN VAL GLU LYS LEU GLY LYS LYS MET GLU \ SEQRES 3 O 28 ALA ARG \ SEQRES 1 P 34 SER GLN LEU LEU ASN GLU TRP SER HIS ASN VAL ASP GLU \ SEQRES 2 P 34 LEU LEU GLU HIS ILE GLU THR ILE GLY HIS LEU ILE THR \ SEQRES 3 P 34 LYS GLU GLU ILE MET HIS GLY LEU \ SEQRES 1 Q 25 ALA THR TYR ASP SER ALA LEU GLU LEU VAL GLY GLN LEU \ SEQRES 2 Q 25 ASN LYS VAL VAL ASP GLN LEU PHE GLU LYS ALA SER \ SEQRES 1 R 26 ASN ALA GLN TYR HIS LEU LEU VAL LYS GLN GLY ASP GLY \ SEQRES 2 R 26 LEU LEU THR LYS LEU GLN LYS TYR GLY ALA ALA VAL ARG \ SEQRES 1 S 24 GLU ASP PRO GLN GLN VAL PHE ASP GLU ARG ILE LYS PHE \ SEQRES 2 S 24 ALA ASN GLN LEU HIS ASP GLU TYR LEU VAL SER \ SEQRES 1 T 17 LYS THR ASN ILE ILE GLU LYS ALA MET ASP TYR ALA ILE \ SEQRES 2 T 17 SER ILE GLU ASN \ HELIX 1 1 TYR V 230 ARG V 269 1 40 \ HELIX 2 2 LYS V 277 ALA V 298 1 22 \ HELIX 3 3 ARG U 189 ILE U 215 1 27 \ HELIX 4 4 THR U 224 LEU U 235 1 12 \ HELIX 5 5 ASN U 260 ASP U 308 1 49 \ HELIX 6 6 ASP O 361 ARG O 387 1 27 \ HELIX 7 7 GLN P 410 LEU P 442 1 33 \ HELIX 8 8 THR Q 408 SER Q 431 1 24 \ HELIX 9 9 ALA R 398 ARG R 422 1 25 \ HELIX 10 10 ASP S 456 SER S 478 1 23 \ HELIX 11 11 THR T 257 ASN T 272 1 16 \ 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 510 ALA V 298 \ TER 1253 ASP U 308 \ TER 1486 ARG O 387 \ TER 1766 LEU P 442 \ TER 1959 SER Q 431 \ ATOM 1960 N ASN R 397 413.550 181.171 301.458 1.00 0.00 N \ ATOM 1961 CA ASN R 397 414.539 181.311 300.407 1.00 0.00 C \ ATOM 1962 C ASN R 397 413.854 181.581 299.074 1.00 0.00 C \ ATOM 1963 O ASN R 397 414.316 182.410 298.294 1.00 0.00 O \ ATOM 1964 CB ASN R 397 415.369 180.047 300.260 1.00 0.00 C \ ATOM 1965 CG ASN R 397 416.309 179.870 301.444 1.00 0.00 C \ ATOM 1966 OD1 ASN R 397 416.646 180.839 302.121 1.00 0.00 O \ ATOM 1967 ND2 ASN R 397 416.731 178.629 301.693 1.00 0.00 N \ ATOM 1968 N ALA R 398 412.750 180.877 298.817 1.00 0.00 N \ ATOM 1969 CA ALA R 398 412.006 181.041 297.586 1.00 0.00 C \ ATOM 1970 C ALA R 398 411.567 182.491 297.429 1.00 0.00 C \ ATOM 1971 O ALA R 398 411.827 183.112 296.398 1.00 0.00 O \ ATOM 1972 CB ALA R 398 410.777 180.106 297.554 1.00 0.00 C \ ATOM 1973 N GLN R 399 410.903 183.029 298.456 1.00 0.00 N \ ATOM 1974 CA GLN R 399 410.430 184.398 298.426 1.00 0.00 C \ ATOM 1975 C GLN R 399 411.586 185.343 298.120 1.00 0.00 C \ ATOM 1976 O GLN R 399 411.480 186.189 297.236 1.00 0.00 O \ ATOM 1977 CB GLN R 399 409.836 184.805 299.764 1.00 0.00 C \ ATOM 1978 CG GLN R 399 408.504 184.087 299.965 1.00 0.00 C \ ATOM 1979 CD GLN R 399 407.937 184.362 301.351 1.00 0.00 C \ ATOM 1980 OE1 GLN R 399 408.581 185.017 302.168 1.00 0.00 O \ ATOM 1981 NE2 GLN R 399 406.730 183.858 301.611 1.00 0.00 N \ ATOM 1982 N TYR R 400 412.691 185.195 298.855 1.00 0.00 N \ ATOM 1983 CA TYR R 400 413.856 186.032 298.660 1.00 0.00 C \ ATOM 1984 C TYR R 400 414.337 185.934 297.219 1.00 0.00 C \ ATOM 1985 O TYR R 400 414.700 186.941 296.613 1.00 0.00 O \ ATOM 1986 CB TYR R 400 415.001 185.601 299.562 1.00 0.00 C \ ATOM 1987 CG TYR R 400 416.208 186.464 299.288 1.00 0.00 C \ ATOM 1988 CD1 TYR R 400 416.290 187.751 299.834 1.00 0.00 C \ ATOM 1989 CD2 TYR R 400 417.247 185.978 298.487 1.00 0.00 C \ ATOM 1990 CE1 TYR R 400 417.410 188.551 299.579 1.00 0.00 C \ ATOM 1991 CE2 TYR R 400 418.368 186.777 298.233 1.00 0.00 C \ ATOM 1992 CZ TYR R 400 418.449 188.064 298.778 1.00 0.00 C \ ATOM 1993 OH TYR R 400 419.537 188.843 298.529 1.00 0.00 O \ ATOM 1994 N HIS R 401 414.339 184.716 296.670 1.00 0.00 N \ ATOM 1995 CA HIS R 401 414.775 184.492 295.306 1.00 0.00 C \ ATOM 1996 C HIS R 401 413.861 185.231 294.338 1.00 0.00 C \ ATOM 1997 O HIS R 401 414.322 185.756 293.327 1.00 0.00 O \ ATOM 1998 CB HIS R 401 414.734 183.013 294.953 1.00 0.00 C \ ATOM 1999 CG HIS R 401 415.104 182.690 293.524 1.00 0.00 C \ ATOM 2000 ND1 HIS R 401 416.419 182.746 293.076 1.00 0.00 N \ ATOM 2001 CD2 HIS R 401 414.346 182.314 292.459 1.00 0.00 C \ ATOM 2002 CE1 HIS R 401 416.427 182.414 291.796 1.00 0.00 C \ ATOM 2003 NE2 HIS R 401 415.202 182.155 291.414 1.00 0.00 N \ ATOM 2004 N LEU R 402 412.564 185.271 294.651 1.00 0.00 N \ ATOM 2005 CA LEU R 402 411.595 185.945 293.813 1.00 0.00 C \ ATOM 2006 C LEU R 402 412.028 187.382 293.560 1.00 0.00 C \ ATOM 2007 O LEU R 402 412.210 187.786 292.412 1.00 0.00 O \ ATOM 2008 CB LEU R 402 410.223 185.976 294.469 1.00 0.00 C \ ATOM 2009 CG LEU R 402 409.244 186.718 293.564 1.00 0.00 C \ ATOM 2010 CD1 LEU R 402 409.120 185.980 292.236 1.00 0.00 C \ ATOM 2011 CD2 LEU R 402 407.877 186.784 294.239 1.00 0.00 C \ ATOM 2012 N LEU R 403 412.195 188.153 294.637 1.00 0.00 N \ ATOM 2013 CA LEU R 403 412.603 189.539 294.531 1.00 0.00 C \ ATOM 2014 C LEU R 403 413.902 189.642 293.741 1.00 0.00 C \ ATOM 2015 O LEU R 403 414.038 190.511 292.883 1.00 0.00 O \ ATOM 2016 CB LEU R 403 412.842 190.150 295.904 1.00 0.00 C \ ATOM 2017 CG LEU R 403 413.298 191.594 295.740 1.00 0.00 C \ ATOM 2018 CD1 LEU R 403 412.205 192.395 295.043 1.00 0.00 C \ ATOM 2019 CD2 LEU R 403 413.573 192.196 297.114 1.00 0.00 C \ ATOM 2020 N VAL R 404 414.853 188.751 294.032 1.00 0.00 N \ ATOM 2021 CA VAL R 404 416.131 188.743 293.353 1.00 0.00 C \ ATOM 2022 C VAL R 404 415.926 188.557 291.855 1.00 0.00 C \ ATOM 2023 O VAL R 404 416.561 189.233 291.051 1.00 0.00 O \ ATOM 2024 CB VAL R 404 417.012 187.609 293.849 1.00 0.00 C \ ATOM 2025 CG1 VAL R 404 418.252 187.507 292.964 1.00 0.00 C \ ATOM 2026 CG2 VAL R 404 417.436 187.891 295.286 1.00 0.00 C \ ATOM 2027 N LYS R 405 415.030 187.637 291.484 1.00 0.00 N \ ATOM 2028 CA LYS R 405 414.742 187.365 290.090 1.00 0.00 C \ ATOM 2029 C LYS R 405 414.257 188.632 289.400 1.00 0.00 C \ ATOM 2030 O LYS R 405 414.761 188.993 288.340 1.00 0.00 O \ ATOM 2031 CB LYS R 405 413.657 186.308 289.946 1.00 0.00 C \ ATOM 2032 CG LYS R 405 413.412 186.036 288.468 1.00 0.00 C \ ATOM 2033 CD LYS R 405 412.381 184.921 288.321 1.00 0.00 C \ ATOM 2034 CE LYS R 405 412.097 184.682 286.841 1.00 0.00 C \ ATOM 2035 NZ LYS R 405 411.087 183.625 286.700 1.00 0.00 N \ ATOM 2036 N GLN R 406 413.278 189.305 290.007 1.00 0.00 N \ ATOM 2037 CA GLN R 406 412.730 190.527 289.450 1.00 0.00 C \ ATOM 2038 C GLN R 406 413.845 191.530 289.191 1.00 0.00 C \ ATOM 2039 O GLN R 406 413.924 192.102 288.110 1.00 0.00 O \ ATOM 2040 CB GLN R 406 411.733 191.170 290.407 1.00 0.00 C \ ATOM 2041 CG GLN R 406 410.467 190.324 290.453 1.00 0.00 C \ ATOM 2042 CD GLN R 406 409.491 190.859 291.493 1.00 0.00 C \ ATOM 2043 OE1 GLN R 406 409.807 191.796 292.218 1.00 0.00 O \ ATOM 2044 NE2 GLN R 406 408.301 190.253 291.567 1.00 0.00 N \ ATOM 2045 N GLY R 407 414.707 191.736 290.191 1.00 0.00 N \ ATOM 2046 CA GLY R 407 415.811 192.665 290.068 1.00 0.00 C \ ATOM 2047 C GLY R 407 416.643 192.328 288.841 1.00 0.00 C \ ATOM 2048 O GLY R 407 417.021 193.218 288.085 1.00 0.00 O \ ATOM 2049 N ASP R 408 416.929 191.041 288.651 1.00 0.00 N \ ATOM 2050 CA ASP R 408 417.715 190.591 287.521 1.00 0.00 C \ ATOM 2051 C ASP R 408 417.004 190.934 286.218 1.00 0.00 C \ ATOM 2052 O ASP R 408 417.641 191.348 285.252 1.00 0.00 O \ ATOM 2053 CB ASP R 408 417.926 189.086 287.560 1.00 0.00 C \ ATOM 2054 CG ASP R 408 418.928 188.743 288.659 1.00 0.00 C \ ATOM 2055 OD1 ASP R 408 419.577 189.697 289.163 1.00 0.00 O \ ATOM 2056 OD2 ASP R 408 419.032 187.530 288.986 1.00 0.00 O \ ATOM 2057 N GLY R 409 415.683 190.758 286.197 1.00 0.00 N \ ATOM 2058 CA GLY R 409 414.893 191.048 285.020 1.00 0.00 C \ ATOM 2059 C GLY R 409 415.107 192.487 284.585 1.00 0.00 C \ ATOM 2060 O GLY R 409 415.429 192.747 283.429 1.00 0.00 O \ ATOM 2061 N LEU R 410 414.923 193.425 285.518 1.00 0.00 N \ ATOM 2062 CA LEU R 410 415.097 194.835 285.230 1.00 0.00 C \ ATOM 2063 C LEU R 410 416.486 195.088 284.673 1.00 0.00 C \ ATOM 2064 O LEU R 410 416.641 195.808 283.688 1.00 0.00 O \ ATOM 2065 CB LEU R 410 414.936 195.677 286.487 1.00 0.00 C \ ATOM 2066 CG LEU R 410 415.153 197.145 286.143 1.00 0.00 C \ ATOM 2067 CD1 LEU R 410 414.105 197.592 285.130 1.00 0.00 C \ ATOM 2068 CD2 LEU R 410 415.031 197.989 287.409 1.00 0.00 C \ ATOM 2069 N LEU R 411 417.503 194.494 285.304 1.00 0.00 N \ ATOM 2070 CA LEU R 411 418.877 194.655 284.872 1.00 0.00 C \ ATOM 2071 C LEU R 411 419.011 194.264 283.405 1.00 0.00 C \ ATOM 2072 O LEU R 411 419.714 194.928 282.648 1.00 0.00 O \ ATOM 2073 CB LEU R 411 419.816 193.776 285.677 1.00 0.00 C \ ATOM 2074 CG LEU R 411 421.241 193.958 285.169 1.00 0.00 C \ ATOM 2075 CD1 LEU R 411 421.667 195.410 285.355 1.00 0.00 C \ ATOM 2076 CD2 LEU R 411 422.184 193.047 285.952 1.00 0.00 C \ ATOM 2077 N THR R 412 418.333 193.185 283.008 1.00 0.00 N \ ATOM 2078 CA THR R 412 418.379 192.711 281.640 1.00 0.00 C \ ATOM 2079 C THR R 412 417.846 193.783 280.698 1.00 0.00 C \ ATOM 2080 O THR R 412 418.483 194.106 279.697 1.00 0.00 O \ ATOM 2081 CB THR R 412 417.526 191.469 281.460 1.00 0.00 C \ ATOM 2082 OG1 THR R 412 418.047 190.416 282.277 1.00 0.00 O \ ATOM 2083 CG2 THR R 412 417.562 191.039 279.996 1.00 0.00 C \ ATOM 2084 N LYS R 413 416.674 194.335 281.020 1.00 0.00 N \ ATOM 2085 CA LYS R 413 416.060 195.364 280.203 1.00 0.00 C \ ATOM 2086 C LYS R 413 417.028 196.522 280.010 1.00 0.00 C \ ATOM 2087 O LYS R 413 417.226 196.987 278.889 1.00 0.00 O \ ATOM 2088 CB LYS R 413 414.801 195.909 280.857 1.00 0.00 C \ ATOM 2089 CG LYS R 413 414.177 196.965 279.952 1.00 0.00 C \ ATOM 2090 CD LYS R 413 412.872 197.458 280.567 1.00 0.00 C \ ATOM 2091 CE LYS R 413 412.276 198.549 279.686 1.00 0.00 C \ ATOM 2092 NZ LYS R 413 411.029 199.042 280.293 1.00 0.00 N \ ATOM 2093 N LEU R 414 417.630 196.989 281.110 1.00 0.00 N \ ATOM 2094 CA LEU R 414 418.573 198.088 281.059 1.00 0.00 C \ ATOM 2095 C LEU R 414 419.687 197.775 280.073 1.00 0.00 C \ ATOM 2096 O LEU R 414 420.039 198.613 279.244 1.00 0.00 O \ ATOM 2097 CB LEU R 414 419.204 198.335 282.418 1.00 0.00 C \ ATOM 2098 CG LEU R 414 420.206 199.479 282.309 1.00 0.00 C \ ATOM 2099 CD1 LEU R 414 419.483 200.751 281.878 1.00 0.00 C \ ATOM 2100 CD2 LEU R 414 420.868 199.704 283.664 1.00 0.00 C \ ATOM 2101 N GLN R 415 420.244 196.564 280.161 1.00 0.00 N \ ATOM 2102 CA GLN R 415 421.315 196.146 279.280 1.00 0.00 C \ ATOM 2103 C GLN R 415 420.864 196.236 277.827 1.00 0.00 C \ ATOM 2104 O GLN R 415 421.612 196.702 276.974 1.00 0.00 O \ ATOM 2105 CB GLN R 415 421.728 194.709 279.558 1.00 0.00 C \ ATOM 2106 CG GLN R 415 422.463 194.641 280.892 1.00 0.00 C \ ATOM 2107 CD GLN R 415 422.778 193.201 281.272 1.00 0.00 C \ ATOM 2108 OE1 GLN R 415 422.378 192.268 280.576 1.00 0.00 O \ ATOM 2109 NE2 GLN R 415 423.500 193.019 282.379 1.00 0.00 N \ ATOM 2110 N LYS R 416 419.638 195.785 277.556 1.00 0.00 N \ ATOM 2111 CA LYS R 416 419.092 195.814 276.216 1.00 0.00 C \ ATOM 2112 C LYS R 416 419.090 197.240 275.683 1.00 0.00 C \ ATOM 2113 O LYS R 416 419.512 197.485 274.553 1.00 0.00 O \ ATOM 2114 CB LYS R 416 417.659 195.301 276.192 1.00 0.00 C \ ATOM 2115 CG LYS R 416 417.140 195.323 274.759 1.00 0.00 C \ ATOM 2116 CD LYS R 416 415.734 194.738 274.719 1.00 0.00 C \ ATOM 2117 CE LYS R 416 415.194 194.805 273.295 1.00 0.00 C \ ATOM 2118 NZ LYS R 416 413.829 194.263 273.260 1.00 0.00 N \ ATOM 2119 N TYR R 417 418.610 198.183 276.500 1.00 0.00 N \ ATOM 2120 CA TYR R 417 418.552 199.576 276.110 1.00 0.00 C \ ATOM 2121 C TYR R 417 419.941 200.070 275.731 1.00 0.00 C \ ATOM 2122 O TYR R 417 420.107 200.737 274.713 1.00 0.00 O \ ATOM 2123 CB TYR R 417 418.039 200.446 277.249 1.00 0.00 C \ ATOM 2124 CG TYR R 417 418.048 201.893 276.816 1.00 0.00 C \ ATOM 2125 CD1 TYR R 417 417.021 202.387 276.004 1.00 0.00 C \ ATOM 2126 CD2 TYR R 417 419.086 202.740 277.227 1.00 0.00 C \ ATOM 2127 CE1 TYR R 417 417.030 203.728 275.603 1.00 0.00 C \ ATOM 2128 CE2 TYR R 417 419.094 204.080 276.825 1.00 0.00 C \ ATOM 2129 CZ TYR R 417 418.066 204.576 276.013 1.00 0.00 C \ ATOM 2130 OH TYR R 417 418.072 205.880 275.623 1.00 0.00 O \ ATOM 2131 N GLY R 418 420.939 199.740 276.555 1.00 0.00 N \ ATOM 2132 CA GLY R 418 422.306 200.150 276.304 1.00 0.00 C \ ATOM 2133 C GLY R 418 422.755 199.661 274.934 1.00 0.00 C \ ATOM 2134 O GLY R 418 423.349 200.416 274.167 1.00 0.00 O \ ATOM 2135 N ALA R 419 422.472 198.391 274.629 1.00 0.00 N \ ATOM 2136 CA ALA R 419 422.846 197.806 273.358 1.00 0.00 C \ ATOM 2137 C ALA R 419 422.215 198.586 272.218 1.00 0.00 C \ ATOM 2138 O ALA R 419 422.883 198.917 271.240 1.00 0.00 O \ ATOM 2139 CB ALA R 419 422.384 196.356 273.263 1.00 0.00 C \ ATOM 2140 N ALA R 420 420.915 198.882 272.343 1.00 0.00 N \ ATOM 2141 CA ALA R 420 420.197 199.621 271.324 1.00 0.00 C \ ATOM 2142 C ALA R 420 420.878 200.958 271.069 1.00 0.00 C \ ATOM 2143 O ALA R 420 421.069 201.350 269.920 1.00 0.00 O \ ATOM 2144 CB ALA R 420 418.758 199.891 271.754 1.00 0.00 C \ ATOM 2145 N VAL R 421 421.249 201.657 272.146 1.00 0.00 N \ ATOM 2146 CA VAL R 421 421.905 202.943 272.035 1.00 0.00 C \ ATOM 2147 C VAL R 421 423.179 202.811 271.213 1.00 0.00 C \ ATOM 2148 O VAL R 421 423.420 203.607 270.309 1.00 0.00 O \ ATOM 2149 CB VAL R 421 422.284 203.488 273.405 1.00 0.00 C \ ATOM 2150 CG1 VAL R 421 423.158 204.728 273.232 1.00 0.00 C \ ATOM 2151 CG2 VAL R 421 421.018 203.856 274.170 1.00 0.00 C \ ATOM 2152 N ARG R 422 423.993 201.801 271.529 1.00 0.00 N \ ATOM 2153 CA ARG R 422 425.238 201.568 270.821 1.00 0.00 C \ ATOM 2154 C ARG R 422 424.963 201.347 269.341 1.00 0.00 C \ ATOM 2155 O ARG R 422 425.649 201.978 268.544 1.00 0.00 O \ ATOM 2156 CB ARG R 422 425.949 200.338 271.355 1.00 0.00 C \ ATOM 2157 CG ARG R 422 426.441 200.614 272.770 1.00 0.00 C \ ATOM 2158 CD ARG R 422 427.142 199.376 273.316 1.00 0.00 C \ ATOM 2159 NE ARG R 422 427.618 199.599 274.699 1.00 0.00 N \ ATOM 2160 CZ ARG R 422 428.200 198.650 275.427 1.00 0.00 C \ ATOM 2161 NH1 ARG R 422 428.399 197.422 274.957 1.00 0.00 N \ ATOM 2162 NH2 ARG R 422 428.589 198.961 276.664 1.00 0.00 N \ TER 2163 ARG R 422 \ TER 2370 SER S 478 \ TER 2506 ASN T 272 \ MASTER 244 0 0 11 0 0 0 6 2498 8 0 30 \ END \ """, "3j47chainR") cmd.hide("all") cmd.color('grey70', "3j47chainR") cmd.show('cartoon', "3j47chainR") cmd.center("3j47chainR", state=0, origin=1) cmd.zoom("3j47chainR", animate=-1) cmd.select("e3j47R1", "c. R & i. 397-422") cmd.color("red", "e3j47R1") cmd.disable("e3j47R1")