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Yorodumi- PDB-11dg: Chimeric Escherichia coli 70S ribosome containing an evolved Vibr... -
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Open data
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Basic information
| Entry | Database: PDB / ID: 11dg | ||||||||||||||||||||||||
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| Title | Chimeric Escherichia coli 70S ribosome containing an evolved Vibrio cholerae 16S rRNA (VC-S4.4) | ||||||||||||||||||||||||
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Keywords | RIBOSOME / Directed evolution / translation | ||||||||||||||||||||||||
| Function / homology | Function and homology informationnegative regulation of cytoplasmic translational initiation / misfolded RNA binding / Group I intron splicing / RNA folding / transcriptional attenuation / endoribonuclease inhibitor activity / positive regulation of ribosome biogenesis / RNA-binding transcription regulator activity / four-way junction DNA binding / negative regulation of cytoplasmic translation ...negative regulation of cytoplasmic translational initiation / misfolded RNA binding / Group I intron splicing / RNA folding / transcriptional attenuation / endoribonuclease inhibitor activity / positive regulation of ribosome biogenesis / RNA-binding transcription regulator activity / four-way junction DNA binding / negative regulation of cytoplasmic translation / DnaA-L2 complex / translation repressor activity / negative regulation of translational initiation / negative regulation of DNA-templated DNA replication initiation / mRNA regulatory element binding translation repressor activity / positive regulation of RNA splicing / cytosolic ribosome assembly / ribosome assembly / assembly of large subunit precursor of preribosome / transcription antitermination / DNA endonuclease activity / translational initiation / regulation of cell growth / response to radiation / DNA-templated transcription termination / maintenance of translational fidelity / mRNA 5'-UTR binding / large ribosomal subunit / ribosomal small subunit assembly / transferase activity / ribosome binding / ribosomal small subunit biogenesis / 5S rRNA binding / small ribosomal subunit / ribosomal large subunit assembly / small ribosomal subunit rRNA binding / cytosolic small ribosomal subunit / large ribosomal subunit rRNA binding / cytosolic large ribosomal subunit / cytoplasmic translation / tRNA binding / negative regulation of translation / rRNA binding / structural constituent of ribosome / ribosome / translation / ribonucleoprotein complex / response to antibiotic / negative regulation of DNA-templated transcription / hydrolase activity / mRNA binding / DNA binding / RNA binding / zinc ion binding / membrane / cytoplasm / cytosol Similarity search - Function | ||||||||||||||||||||||||
| Biological species | ![]() | ||||||||||||||||||||||||
| Method | ELECTRON MICROSCOPY / single particle reconstruction / cryo EM / Resolution: 3 Å | ||||||||||||||||||||||||
Authors | Raskar, T. / Badran, A. / Fraser, J. | ||||||||||||||||||||||||
| Funding support | United States, 2items
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Citation | Journal: bioRxiv / Year: 2026Title: Structural adaptations for enhanced translation kinetics in evolved ribosomes. Authors: Tushar Raskar / Alan Costello / Ahmed H Badran / James S Fraser / ![]() Abstract: The ribosomal RNA sequence governs translation dynamics, yet understanding how changes beyond the conserved catalytic centers influence kinetics and protein yield remains limited. Using orthogonal ...The ribosomal RNA sequence governs translation dynamics, yet understanding how changes beyond the conserved catalytic centers influence kinetics and protein yield remains limited. Using orthogonal ribosome phage-assisted continuous evolution (oRibo-PACE), we recently reported chimeric ribosomes derived from , , and endowed with elevated translation rates as compared to their starting counterparts. Here, we structurally characterize these kinetically enhanced ribosomes using cryo-electron microscopy and uncover a potential relationship between 16S rRNA stability and translation efficiency. Compared to their naive starting points, evolved ribosomes exhibit extensive RNA structural adaptation, often introduced by mismatches at key helical junctions, which leads to local RNA-protein rearrangements and destabilizes non-canonical base pairs. Compensatory mutations that restore base-pairing stability and eliminate flexibility reduced translational activity to wild-type levels. Across trajectories, increased translational output correlates with subtle, localized changes in the 16S rRNA sequence that introduce limited structural destabilization at specific elements. Taken together, our work provides new insights into rRNA structural malleability and establishes principles for engineering ribosomes with altered translation properties. | ||||||||||||||||||||||||
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Structure visualization
| Structure viewer | Molecule: Molmil Jmol/JSmol |
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Downloads & links
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Download
| PDBx/mmCIF format | 11dg.cif.gz | 3.4 MB | Display | PDBx/mmCIF format |
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| PDB format | pdb11dg.ent.gz | Display | PDB format | |
| PDBx/mmJSON format | 11dg.json.gz | Tree view | PDBx/mmJSON format | |
| Others | Other downloads |
-Validation report
| Arichive directory | https://data.pdbj.org/pub/pdb/validation_reports/1d/11dg ftp://data.pdbj.org/pub/pdb/validation_reports/1d/11dg | HTTPS FTP |
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-Related structure data
| Related structure data | ![]() 75634MC ![]() 11bqC ![]() 11fvC ![]() 11ggC M: map data used to model this data C: citing same article ( |
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| Similar structure data | Similarity search - Function & homology F&H Search |
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Links
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Assembly
| Deposited unit | ![]()
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Components
-50S ribosomal protein ... , 12 types, 12 molecules 024cdpstvwyz
| #1: Protein | Mass: 6388.631 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
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| #3: Protein | Mass: 7313.032 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #5: Protein | Mass: 7887.117 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #30: Protein | Mass: 29923.619 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #31: Protein | Mass: 22291.562 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #43: Protein | Mass: 13528.024 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #46: Protein | Mass: 11222.160 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Gene: rplW, rplW_1, A5U30_004552, A8502_004023, A9X72_02185, ACN81_25520, ACU57_20960, AM464_09220, AW118_24900, AWP47_12645, B6R15_004069, B6R31_004968, BANRA_04328, BCB93_004293, BER14_25190, BF481_ ...Gene: rplW, rplW_1, A5U30_004552, A8502_004023, A9X72_02185, ACN81_25520, ACU57_20960, AM464_09220, AW118_24900, AWP47_12645, B6R15_004069, B6R31_004968, BANRA_04328, BCB93_004293, BER14_25190, BF481_004930, BG944_001133, BGM66_003593, BJI68_08675, BJJ90_02125, BK292_20505, BK383_24645, BKL28_004543, BTB68_004356, BTQ06_10690, BvCmsKKP061_03030, BvCmsSIP010_02685, BXT93_05475, C0P57_002668, C1Q91_004904, C2121_004162, C2M16_25405, C2R31_004633, C3F40_19720, C9E67_02725, C9Z68_22635, CA593_09650, CF22_004849, CG692_20185, CG704_20870, CG831_003649, CIG67_10675, CQ986_004881, CR538_02420, CR539_21900, CR628_001366, CTR35_003630, CV83915_02780, CY655_21320, D1912_09370, D3C88_31150, D3G36_23050, D4M65_20655, D4N09_20255, D9D43_22550, D9E49_05240, D9J61_16735, DD762_23630, DIV22_15175, DNQ45_03840, DNX30_25395, DQ87_004776, DS732_24345, DTL43_20915, DU321_12085, E4K51_21575, E5H86_24440, E6D34_21675, EAI46_07560, EC95NR1_02709, ECs4183, EEP55_004492, EIA08_24040, EIZ93_12385, EN85_004349, EPS76_07130, EPS97_20010, EWK56_25080, ExPECSC038_03640, F7F11_22640, F7N46_23925, F9407_19210, F9413_21150, F9461_25570, F9B07_24600, FEJ01_22430, FIJ20_21110, FJQ40_18390, FKO60_25720, FOI11_019175, FOI11_04005, FPI65_20390, FPS11_25345, FTV92_20630, FV293_22380, FVB16_04955, FWK02_12650, FZN31_02550, FZU14_21905, G3V95_19930, G3W53_21040, G4A38_21595, G4A47_20865, G5603_24670, G8C01_22470, G9448_16990, GAI89_24745, GAJ12_24635, GGB84_004451, GJ11_21470, GKF66_21630, GNW61_16715, GOP25_22790, GP711_23390, GP954_00860, GP965_04380, GP975_01270, GP979_01920, GQA06_03865, GQM04_10650, GQM13_25285, GQM21_11315, GQN34_23350, GQW07_21465, GRO95_20730, GRW05_09145, GRW24_04670, GRW56_00380, GRW57_03455, GTP92_23110, GUC01_21265, H0O72_19500, HCQ42_003932, HEP30_018720, HEP34_004754, HHH44_004519, HI055_004156, HIE29_005203, HJQ60_004995, HLX92_09990, HLZ50_22095, HMV95_19690, HV109_02105, HV146_21755, HV209_14630, HVW04_17450, HVW43_18585, HVY77_02090, HVZ29_19180, HX086_19490, HX136_02110, I0E88_004501, I6H00_20840, I6H02_12075, IFB95_004822, IUC12_004844, J0541_004413, J5U05_004071, JNP96_25390, KV259_004342, KV317_004314, KV371_004328, KV406_004321, KV449_004356, KV455_004319, KV463_004341, KV469_004334, KV499_004405, KV500_004292, NCTC10082_02823, NCTC10089_00486, NCTC10090_03511, NCTC10418_00674, NCTC10429_01077, NCTC10764_03847, NCTC10767_01500, NCTC10865_00642, NCTC10974_00533, NCTC11112_01052, NCTC11124_04730, NCTC11126_02754, NCTC11181_02722, NCTC11341_01905, NCTC12950_00463, NCTC13148_03456, NCTC4450_02459, NCTC7927_00535, NCTC7928_02533, NCTC8009_01493, NCTC8179_05925, NCTC8333_00473, NCTC8500_00318, NCTC8621_00492, NCTC8622_00522, NCTC8959_03277, NCTC8960_03054, NCTC8985_04965, NCTC9001_04236, NCTC9044_01376, NCTC9045_00549, NCTC9073_00398, NCTC9075_00708, NCTC9081_00901, NCTC9117_00740, NCTC9702_00521, NCTC9706_02721, NCTC9962_06781, NEP60_26375, O5851_12245, RG28_21695, SAMEA3752557_01968, TUM18780_04200 Production host: ![]() |
| #47: Protein | Mass: 11339.250 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Gene: rplX, A8502_004032, A9X72_02230, ACN81_25475, ACU57_21005, AM464_09175, AW118_24855, AWP47_12690, B6R15_004078, B6R31_004977, BANRA_04319, BCB93_004284, BER14_25145, BF481_004939, BG944_001124, ...Gene: rplX, A8502_004032, A9X72_02230, ACN81_25475, ACU57_21005, AM464_09175, AW118_24855, AWP47_12690, B6R15_004078, B6R31_004977, BANRA_04319, BCB93_004284, BER14_25145, BF481_004939, BG944_001124, BGM66_003602, BJI68_08720, BJJ90_02170, BK292_20460, BK383_24690, BKL28_004552, BTB68_004365, BTQ06_10645, BvCmsKKP061_03021, BvCmsSIP010_02676, BXT93_05520, C0P57_002659, C1Q91_004913, C2121_004171, C2M16_25450, C2R31_004624, C3F40_19765, C9E67_02770, C9Z68_22590, CA593_09695, CF22_004858, CG704_20915, CG831_003640, CIG67_10720, CQ986_004890, CR538_02465, CR539_21855, CR628_001357, CTR35_003621, CV83915_02789, CY655_21275, D4M65_20610, D9D43_22595, DD762_23585, DIV22_15220, DNQ45_03795, DNX30_25440, DQ87_004785, DS732_24300, DTL43_20960, DU321_12040, E4K51_21530, E5H86_24485, E6D34_21720, EAI46_07515, EC95NR1_02700, ECs4174, EEP55_004501, EIA08_23995, EIZ93_12430, EN85_004358, EPS97_20055, ExPECSC038_03649, F7F11_22685, F7N46_23970, F9407_19255, F9413_21195, F9461_25615, F9B07_24645, FEJ01_22475, FIJ20_21155, FJQ40_18345, FKO60_25675, FOI11_019220, FOI11_03960, FPS11_25390, FTV92_20675, FTV93_20860, FV293_22425, FVB16_04910, FWK02_06310, FZN31_02595, FZU14_21860, G3V95_19885, G4A38_21550, G4A47_20820, G5603_24625, G8C01_22515, G9448_17035, GAI89_24790, GAJ12_24680, GJ11_21425, GKF66_21585, GNW61_16670, GOP25_22745, GP954_00905, GP965_04335, GP975_01225, GP979_01965, GQA06_03910, GQM04_10605, GQM13_25240, GQM21_11270, GQW07_21510, GRO95_20775, GRW05_09100, GRW24_04715, GRW56_00335, GRW57_03500, GTP92_23155, GUC01_21220, H0O72_19455, HCQ42_003941, HEP30_018675, HEP34_004763, HHH44_004528, HI055_004147, HJQ60_005004, HLX92_10035, HLZ50_22140, HMV95_19645, HV109_02150, HV146_21710, HV209_14675, HVW04_17495, HVW43_18630, HVY77_02135, HVZ29_19135, HX086_19445, HX136_02155, I0E88_004510, I6H00_20885, I6H02_12030, IUC12_004853, J0541_004404, J5U05_004080, JNP96_25345, KV259_004351, KV317_004323, KV371_004337, KV406_004330, KV449_004365, KV455_004328, KV463_004350, KV469_004343, KV499_004414, KV500_004301, NCTC10082_02832, NCTC10418_00684, NCTC10764_03856, NCTC10865_00652, NCTC10974_00542, NCTC11124_04721, NCTC11181_02731, NCTC11341_01896, NCTC12950_00472, NCTC7922_04049, NCTC7927_00544, NCTC8009_01504, NCTC8179_05935, NCTC8333_00482, NCTC8500_00327, NCTC8621_00501, NCTC8622_00513, NCTC8960_03063, NCTC8985_04975, NCTC9044_01365, NCTC9045_00558, NCTC9077_00597, NCTC9117_00749, NCTC9702_00530, NCTC9706_02730, NEP60_26330, O5851_12290, RG28_21650, SAMEA3752557_01959, TUM18780_04290, WR15_19645 Production host: ![]() |
| #49: Protein | Mass: 9146.540 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #50: Protein | Mass: 9027.551 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #52: Protein | Mass: 6554.820 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Gene: rpmD, A5U30_004536, A6592_25715, A8499_003316, A8502_004039, A9X72_02265, AC065_15925, ACN81_25440, ACU57_21040, AM464_09140, APX88_16155, AW118_24820, AWP47_12725, B6R12_002823, B6R15_004085, ...Gene: rpmD, A5U30_004536, A6592_25715, A8499_003316, A8502_004039, A9X72_02265, AC065_15925, ACN81_25440, ACU57_21040, AM464_09140, APX88_16155, AW118_24820, AWP47_12725, B6R12_002823, B6R15_004085, B6R17_004958, B6R31_004984, B6R48_005051, B6R87_004961, BANRA_04312, BB540_01660, BER14_25110, BF481_004946, BG944_001117, BGM66_003609, BHS81_19755, BJI68_08755, BJJ90_02205, BK292_20425, BK383_24725, BKL28_004559, BMT50_12295, BMT91_19990, BR158_003774, BTB68_004372, BTQ06_10610, BUO55_004713, BvCmsKKP061_03014, BvCmsSIP010_02669, BXT93_05555, BZL69_25950, C0P57_002652, C1Q91_004920, C2121_004178, C2M16_25485, C2R31_004617, C3F40_19800, C5N07_23570, C9E67_02805, C9Z68_22555, CA593_09730, CCS08_00135, CCU84_002918, CDL36_25590, CF22_004865, CG692_20265, CG704_20950, CG831_003633, CIG67_10755, CQ986_004897, CQB02_00630, CR538_02500, CR539_21820, CR628_001350, CRM83_22925, CTR35_003614, CV83915_02796, CWS33_24860, CX938_003815, CY655_21240, D1912_11425, D3G36_23130, D4M65_20575, D4N09_20175, D6T60_05695, D9D43_22630, D9E34_23605, D9E49_05160, D9H94_20830, D9J03_20055, D9J61_16655, DD762_23550, DIV22_15255, DNQ45_03760, DNX30_25475, DS732_24265, DTL43_20995, DTL90_24695, DTM45_24550, DU321_12005, E0I52_20145, E4K51_21495, E5H86_24520, E6D34_21755, EA239_22795, EAI46_07480, EB534_RS01705, EC95NR1_02693, ECs4167, EIA08_23960, EIZ93_12465, EN85_004365, EPS76_07210, EPS97_20090, ERS085406_04406, ERS139208_04354, EWK56_25000, ExPECSC038_03656, F3P10_05565, F7F11_22720, F7N46_24005, F9413_21230, F9461_25650, F9B07_24680, FA868_22750, FEJ01_22510, FFF58_25450, FGG80_25130, FHD44_21270, FHQ97_20115, FIJ20_21190, FJQ40_18310, FKO60_25640, FN993_004711, FOI11_019255, FOI11_03925, FPI65_20310, FPS11_25425, FTV92_20710, FTV93_20895, FV293_22460, FVB16_04875, FWK02_06275, FZN31_02630, FZU14_21825, G3V95_19850, G3W53_20960, G4A38_21515, G4A47_20785, G5603_24590, G9448_17070, GAI89_24825, GAJ12_24715, GAJ26_22015, GGB84_004467, GIB53_19395, GJ11_21390, GKF52_21245, GKF66_21550, GKF89_18475, GNW61_16635, GOP14_004273, GOP25_22710, GP711_23310, GP954_00940, GP965_04300, GP975_01190, GP979_02000, GQA06_03945, GQM04_10570, GQM13_25205, GQM17_19920, GQM21_11235, GQN34_23270, GQW07_21545, GRO95_20810, GRW05_09065, GRW24_04750, GRW56_00300, GRW57_03535, GSM54_23325, GSY44_20005, GUC01_21185, GUI33_20050, H0O53_20825, H0O72_19420, H0P11_20920, H5Z35_004789, H6Y26_003164, HCQ42_003948, HEP30_018640, HEP34_004770, HHH44_004535, HI055_004140, HIE29_005187, HJY54_004753, HKA49_005035, HLQ92_22595, HLV18_23335, HLX92_10070, HLZ50_22175, HMV95_19610, HMW38_23110, HV109_02185, HV146_21675, HV209_14710, HVV39_09270, HVW04_17530, HVW43_18665, HVY77_02170, HVZ29_19100, HVZ30_02050, HVZ71_02355, HX136_02190, I6H00_20920, I6H02_11995, IFB95_004806, IUD45_003540, J0541_004397, J4S20_004802, J5U05_004087, J7T50_001453, JFD_01884, JFD_03713, JNP96_25310, KQ660_11775, NCTC10082_02839, NCTC10089_00502, NCTC10090_03527, NCTC10418_00690, NCTC10429_01095, NCTC10487_00445, NCTC10764_03863, NCTC10767_01516, NCTC10865_00661, NCTC10974_00551, NCTC11126_02771, NCTC11127_03223, NCTC11181_02738, NCTC11341_01889, NCTC12950_00479, NCTC13127_00786, NCTC4450_02475, NCTC7922_04042, NCTC7927_00551, NCTC7928_02516, NCTC8009_01511, NCTC8179_05942, NCTC8333_00489, NCTC8450_04937, NCTC8500_00335, NCTC8621_00508, NCTC8622_00507, NCTC8959_03261, NCTC8960_03070, NCTC8985_04982, NCTC9001_04254, NCTC9044_01356, NCTC9045_00566, NCTC9050_03611, NCTC9071_00483, NCTC9073_00380, NCTC9075_00724, NCTC9077_00604, NCTC9081_00918, NCTC9111_00867, NCTC9117_00756, NCTC9702_00537, NCTC9706_02737, NCTC9775_04003, NCTC9777_01891, NEP60_26295, OS110_25120, RG28_21615, SAMEA3472044_01162, SAMEA3472056_05411, SAMEA3752557_01952, SAMEA3753106_04634, TUM18780_04360, WR15_19610 Production host: ![]() |
| #53: Protein | Mass: 6463.445 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Gene: rpmF, rpmF_1, A5U30_002830, A8502_000661, A9X72_15435, ACN81_09130, ACU57_04225, AM464_23480, AW118_12110, AWP47_13180, B6R15_001792, B6R31_003138, BANRA_01624, BCB93_002043, BER14_10210, BF481_ ...Gene: rpmF, rpmF_1, A5U30_002830, A8502_000661, A9X72_15435, ACN81_09130, ACU57_04225, AM464_23480, AW118_12110, AWP47_13180, B6R15_001792, B6R31_003138, BANRA_01624, BCB93_002043, BER14_10210, BF481_002131, BG944_003607, BGM66_002729, BJI68_20640, BJJ90_15780, BK292_02505, BK383_03640, BKL28_002219, BTB68_003153, BTQ06_08080, BvCmsKKP061_02173, BvCmsSIP010_04163, BXT93_21825, C0P57_001747, C1Q91_003167, C2121_002257, C2M16_23600, C2R31_002348, C3F40_06530, C9E67_18185, C9Z68_07340, CA593_23040, CF22_003088, CG692_05970, CG704_04105, CG831_001542, CIG67_21935, CQ986_001084, CR538_15635, CR539_10135, CR628_002785, CTR35_002374, CV83915_00494, CY655_06595, D1912_08350, D3C88_19355, D3G36_11860, D4M65_04795, D4N09_11015, D9D43_11825, D9E49_23135, D9J61_04035, DD762_03625, DIV22_29035, DNQ45_10015, DNX30_12140, DQ87_002042, DS732_10505, DTL43_16270, DU321_22840, E4K51_18340, E5H86_12535, E6D34_10935, EAI46_03975, EC95NR1_05485, ECs1467, EEP55_000822, EIA08_02925, EIZ93_13150, EN85_002840, EPS76_00770, EPS97_06370, EWK56_20060, ExPECSC038_03490, F7F11_10320, F7N46_02450, F9413_18150, F9461_13585, F9B07_16900, FEJ01_12565, FIJ20_07300, FJQ40_00940, FKO60_17370, FOI11_007500, FOI11_14470, FPI65_06540, FPS11_20235, FTV92_08325, FTV93_08485, FV293_19565, FVB16_04695, FWK02_15570, FZN31_14620, FZU14_20010, G3V95_08050, G3W53_15755, G4A38_16050, G4A47_15410, G5603_00600, G8C01_10030, G9448_05130, GAI89_13280, GAJ12_13930, GGB84_000483, GJ11_06555, GKF66_05180, GNW61_10640, GOP25_17405, GP711_16475, GP954_12815, GP965_04045, GP975_03585, GP979_13150, GQA06_08430, GQM04_02110, GQM13_14340, GQM21_06935, GQN34_10245, GQW07_08880, GRO95_10420, GRW05_02410, GRW24_27585, GRW56_06550, GRW57_07595, GTP92_19120, GUC01_01680, H0O72_16850, HCQ42_001914, HEP30_011955, HEP34_001075, HHH44_003019, HI055_001485, HIE29_000052, HJQ60_005092, HLX92_03690, HLZ50_01830, HMV95_16370, HV109_14610, HV146_09250, HV209_29060, HVV39_00410, HVW04_05590, HVW43_06430, HVY77_15765, HVZ29_08715, HX086_07035, HX136_15650, I0E88_003516, I6H00_08540, I6H02_24530, IFB95_003696, IUC12_000121, J0541_003169, J5U05_002959, JNP96_10710, KV259_001392, KV317_003230, KV371_000953, KV406_001102, KV449_001342, KV455_003227, KV463_001049, KV469_000542, KV499_000679, KV500_001199, NCTC10082_00641, NCTC10089_03005, NCTC10090_00680, NCTC10418_04509, NCTC10764_02647, NCTC10767_05044, NCTC10865_03684, NCTC10974_03416, NCTC11126_00919, NCTC11181_00164, NCTC11341_04894, NCTC12950_03296, NCTC13148_05706, NCTC4450_04127, NCTC7922_00634, NCTC7927_03385, NCTC7928_00455, NCTC8009_05657, NCTC8179_02874, NCTC8333_03590, NCTC8621_03238, NCTC8622_05813, NCTC8959_00826, NCTC8960_00763, NCTC8985_01747, NCTC9044_04397, NCTC9045_03550, NCTC9073_01975, NCTC9075_04022, NCTC9077_03763, NCTC9081_03511, NCTC9117_03837, NCTC9706_00412, NCTC9962_06984, NEP60_22810, O5851_21660, RG28_16890, SAMEA3752557_01555, TUM18780_25170, WR15_23855 Production host: ![]() |
-Large ribosomal subunit protein ... , 17 types, 17 molecules 13efghijklmnoqrux
| #2: Protein/peptide | Mass: 5397.463 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
|---|---|
| #4: Protein/peptide | Mass: 4377.390 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #32: Protein | Mass: 22121.566 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #33: Protein | Mass: 20333.611 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #34: Protein | Mass: 18932.791 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #35: Protein | Mass: 15789.020 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #36: Protein | Mass: 16050.606 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #37: Protein | Mass: 13565.067 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #38: Protein | Mass: 15008.471 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #39: Protein | Mass: 15343.327 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #40: Protein | Mass: 14393.657 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #41: Protein | Mass: 12794.668 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #42: Protein | Mass: 13159.278 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #44: Protein | Mass: 11586.374 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #45: Protein | Mass: 12253.359 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #48: Protein | Mass: 10713.465 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #51: Protein | Mass: 7286.464 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Gene: rpmC, A5U30_004546, A8502_004029, ACN81_25490, ACU57_20990, AW118_24870, AWP47_12675, B6R15_004075, B6R31_004974, BANRA_01943, BANRA_04322, BE932_15505, BER14_25160, BG944_001127, BGM66_003599, ...Gene: rpmC, A5U30_004546, A8502_004029, ACN81_25490, ACU57_20990, AW118_24870, AWP47_12675, B6R15_004075, B6R31_004974, BANRA_01943, BANRA_04322, BE932_15505, BER14_25160, BG944_001127, BGM66_003599, BGZ_02596, BGZ_04119, BJI68_08705, BK292_20475, BK383_24675, BKL28_004549, BTB68_004362, BTQ06_10660, BvCmsKKP061_03024, BvCmsSIP010_02679, BXT93_05505, C0P57_002662, C1Q91_004910, C2121_004168, C2M16_25435, C2R31_004627, C3F40_19750, C9Z68_22605, CF22_004855, CG704_20900, CG831_003643, CIG67_10705, CTR35_003624, CV83915_02786, D3G36_23080, D4M65_20625, D4N09_20225, D9D43_22580, D9E49_05210, D9J61_16705, DD762_23600, DIV22_15205, DNQ45_03810, DNX30_25425, DS732_24315, DTL43_20945, DU321_12055, E4K51_21545, E5H86_24470, E6D34_21705, EAI46_07530, ECs4177, EIA08_24010, EIMP300_17750, EIZ93_12415, EN85_004355, EPS76_07160, EPS97_20040, EWK56_25050, ExPECSC038_03646, F7F11_22670, F7N46_23955, F9413_21180, F9461_25600, F9B07_24630, FGAF848_25910, FIJ20_21140, FJQ40_18360, FKO60_25690, FOI11_019205, FOI11_03975, FORC44_0486, FPI65_20360, FPS11_25375, FTV93_20845, FVB16_04925, FWK02_06325, FZU14_21875, G3V95_19900, G3W53_21010, G4A38_21565, G4A47_20835, G5603_24640, GAI89_24775, GAJ12_24665, GKF66_21600, GNW61_16685, GOP25_22760, GP711_23360, GP954_00890, GP965_04350, GP975_01240, GP979_01950, GQA06_03895, GQE86_20135, GQM04_10620, GQM13_25255, GQM21_11285, GQN34_23320, GQW07_21495, GRC73_21695, GRO95_20760, GRW05_09115, GRW24_04700, GRW56_00350, GRW57_03485, GUC01_21235, H0O72_19470, HEP30_018690, HEP34_004760, HHH44_004525, HI055_004150, HIE29_005197, HJQ60_005001, HLX92_10020, HLZ50_22125, HMV95_19660, HV109_02135, HV209_14660, HVV39_09320, HVW04_17480, HVW43_18615, HVY77_02120, I6H00_20870, I6H02_12045, IFB95_004816, J0541_004407, J5U05_004077, JNP96_25360, KV499_004411, NCTC10082_02829, NCTC10089_00492, NCTC10418_00681, NCTC10429_01084, NCTC10764_03853, NCTC10767_01506, NCTC10865_00649, NCTC10974_00539, NCTC11126_02760, NCTC11181_02728, NCTC11341_01899, NCTC7922_04052, NCTC7927_00541, NCTC7928_02527, NCTC8009_01501, NCTC8179_05932, NCTC8333_00479, NCTC8500_00324, NCTC8621_00498, NCTC8622_00516, NCTC8959_03271, NCTC8960_03060, NCTC8985_04972, NCTC9001_04244, NCTC9044_01368, NCTC9045_00555, NCTC9075_00714, NCTC9077_00594, NCTC9081_00907, NCTC9117_00746, NCTC9702_00527, NCTC9706_02727, NCTC9962_06787, NEP60_26345, OGM49_22385, QDW62_02140, RZR61_12945, SAMEA3472112_00683, SAMEA3752557_01962, WR15_19660 Production host: ![]() |
-RNA chain , 4 types, 4 molecules 5Aab
| #6: RNA chain | Mass: 589.430 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
|---|---|
| #7: RNA chain | Mass: 491856.719 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #28: RNA chain | Mass: 941811.562 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #29: RNA chain | Mass: 38790.090 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
-Small ribosomal subunit protein ... , 18 types, 18 molecules BDEFGHIJKMNOPQRSTU
| #8: Protein | Mass: 26781.670 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
|---|---|
| #10: Protein | Mass: 23514.199 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #11: Protein | Mass: 17629.398 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #12: Protein | Mass: 15727.512 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #13: Protein | Mass: 20055.156 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #14: Protein | Mass: 14146.557 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #15: Protein | Mass: 14886.270 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #16: Protein | Mass: 11755.597 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #17: Protein | Mass: 13887.958 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #19: Protein | Mass: 13128.467 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #20: Protein | Mass: 11606.560 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #21: Protein | Mass: 10290.816 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #22: Protein | Mass: 9207.572 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #23: Protein | Mass: 9724.491 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #24: Protein | Mass: 9005.472 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #25: Protein | Mass: 10455.355 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #26: Protein | Mass: 9712.476 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
| #27: Protein | Mass: 8524.039 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
-30S ribosomal protein ... , 2 types, 2 molecules CL
| #9: Protein | Mass: 26031.316 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
|---|---|
| #18: Protein | Mass: 13814.249 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() ![]() |
-Non-polymers , 4 types, 289 molecules 






| #54: Chemical | | #55: Chemical | ChemComp-MG / #56: Chemical | ChemComp-SPD / #57: Chemical | ChemComp-SPM / | |
|---|
-Details
| Has ligand of interest | N |
|---|---|
| Has protein modification | Y |
-Experimental details
-Experiment
| Experiment | Method: ELECTRON MICROSCOPY |
|---|---|
| EM experiment | Aggregation state: PARTICLE / 3D reconstruction method: single particle reconstruction |
-
Sample preparation
| Component | Name: Chimeric Escherichia coli 70S ribosome containing an evolved Vibrio cholerae 16S rRNA (VC-S4.4) Type: RIBOSOME / Entity ID: #1-#53 / Source: RECOMBINANT |
|---|---|
| Source (natural) | Organism: ![]() |
| Source (recombinant) | Organism: ![]() |
| Buffer solution | pH: 7.4 |
| Specimen | Embedding applied: NO / Shadowing applied: NO / Staining applied: NO / Vitrification applied: YES |
| Vitrification | Cryogen name: ETHANE |
-
Electron microscopy imaging
| Microscopy | Model: TFS GLACIOS |
|---|---|
| Electron gun | Electron source: FIELD EMISSION GUN / Accelerating voltage: 200 kV / Illumination mode: FLOOD BEAM |
| Electron lens | Mode: BRIGHT FIELD / Nominal defocus max: 2500 nm / Nominal defocus min: 500 nm |
| Image recording | Electron dose: 60 e/Å2 / Film or detector model: FEI FALCON IV (4k x 4k) |
-
Processing
| EM software |
| |||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| CTF correction | Type: PHASE FLIPPING AND AMPLITUDE CORRECTION | |||||||||
| 3D reconstruction | Resolution: 3 Å / Resolution method: FSC 0.143 CUT-OFF / Num. of particles: 450287 / Symmetry type: POINT |
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About Yorodumi





United States, 2items
Citation






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FIELD EMISSION GUN