Crystal structure of the A2503-C2,C8-dimethylated Thermus thermophilus 70S ribosome in complex with mRNA, aminoacylated A-site Phe-tRNAphe, peptidyl P-site fMTHSMRC-tRNAmet, and deacylated E-site tRNAphe at 2.45A resolution. Determined by X-ray diffraction at 2.45 Å resolution. Released 27 Dec 2023.
Explore 8G2A in 3D Show helices and sheets RCSB PDB PDBe
8G2A contains 517 α-helices and 645 β-strands across 100 chains. Residue ranges use author residue numbering, as in the PDB file, from PDBe. To see them in 3D, choose the Cartoon representation with Secondary structure coloring: helices, sheets and coils get different colors.
| Element | Residues | Length | Sheet |
|---|---|---|---|
| α-helix | 16-18 | 3 | |
| β-strand | 22-23 | 2 | 172 |
| β-strand | 30-31 | 2 | 173 |
| β-strand | 36-39 | 4 | 172 |
| β-strand | 46-47 | 2 | 173 |
| β-strand | 51-53 | 3 | 172 |
| β-strand | 59-61 | 3 | 172 |
| β-strand | 65-71 | 7 | 173 |
| α-helix | 73-75 | 3 | |
| β-strand | 77-83 | 7 | 173 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| β-strand | 13-21 | 9 | 180 |
| α-helix | 25-27 | 3 | |
| β-strand | 33-42 | 10 | 180 |
| β-strand | 46-53 | 8 | 181 |
| β-strand | 56-63 | 8 | 181 |
| α-helix | 64-66 | 3 | |
| α-helix | 67-76 | 10 | |
| α-helix | 87-96 | 10 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| α-helix | 3-13 | 11 | |
| α-helix | 18-40 | 23 | |
| α-helix | 48-67 | 20 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| β-strand | 3-8 | 6 | 191 |
| α-helix | 17-25 | 9 | |
| β-strand | 34-38 | 5 | 191 |
| α-helix | 41-49 | 9 | |
| α-helix | 51-53 | 3 | |
| β-strand | 54-59 | 6 | 191 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| α-helix | 7-9 | 3 | |
| β-strand | 10-15 | 6 | 198 |
| β-strand | 21-26 | 6 | 198 |
| β-strand | 30-32 | 3 | 198 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| α-helix | 10-12 | 3 | |
| α-helix | 13-19 | 7 | |
| α-helix | 20-22 | 3 | |
| α-helix | 24-29 | 6 | |
| β-strand | 31-32 | 2 | 1 |
| β-strand | 39-40 | 2 | 1 |
| β-strand | 45 | 1 | 99 |
| β-strand | 51-52 | 2 | 2 |
| β-strand | 55-56 | 2 | 2 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| β-strand | 6-13 | 8 | 6 |
| β-strand | 19-26 | 8 | 6 |
| α-helix | 33-34 | 2 | |
| β-strand | 35-40 | 6 | 6 |
| β-strand | 45-52 | 8 | 6 |
| Element | Residues | Length | Sheet |
|---|---|---|---|
| α-helix | 9-16 | 8 | |
| α-helix | 18-22 | 5 | |
| α-helix | 25-36 | 12 |
89 more chain groups are not listed. Open the entry in the viewer and use the sequence panel to see them.
| Molecule | Chains | Type | Length | Organism | UniProt |
|---|---|---|---|---|---|
| 23S Ribosomal RNA | 1A, 2A | RNA | 2915 | Thermus thermophilus HB8 | |
| 5S Ribosomal RNA | 1B, 2B | RNA | 121 | Thermus thermophilus HB8 | |
| 50S ribosomal protein L2 | 1D, 2D | protein | 276 | Thermus thermophilus HB8 | P60405 (AlphaFold model) |
| 50S ribosomal protein L3 | 1E, 2E | protein | 206 | Thermus thermophilus HB8 | Q5SHN8 (AlphaFold model) |
| 50S ribosomal protein L4 | 1F, 2F | protein | 210 | Thermus thermophilus HB8 | Q5SHN9 (AlphaFold model) |
| 50S ribosomal protein L5 | 1G, 2G | protein | 182 | Thermus thermophilus HB8 | Q5SHQ0 (AlphaFold model) |
| 50S ribosomal protein L6 | 1H, 2H | protein | 180 | Thermus thermophilus HB8 | P0DOY8 |
| 50S ribosomal protein L9 | 1I, 2I | protein | 148 | Thermus thermophilus HB8 | Q5SLQ1 |
| 50S ribosomal protein L13 | 1N, 2N | protein | 140 | Thermus thermophilus HB8 | P60488 |
| 50S ribosomal protein L14 | 1O, 2O | protein | 122 | Thermus thermophilus HB8 | Q5SHP8 |
| 50S ribosomal protein L15 | 1P, 2P | protein | 150 | Thermus thermophilus HB8 | Q5SHQ7 |
| 50S ribosomal protein L16 | 1Q, 2Q | protein | 141 | Thermus thermophilus HB8 | P60489 |
45 more molecules are not listed.
>8G2A_1 23S Ribosomal RNA (chains 1A, 2A) GUCAAGAUGGUAAGGGCCCACGGUGGAUGCCUCGGCACCCGAGCCGAUGAAGGACGUGGC UACCUGCGAUAAGCCAGGGGGAGCCGGUAGCGGGCGUGGAUCCCUGGAUGUCCGAAUGGG GGAACCCGGCCGGCGGGAACGCCGGUCACCGCGCUUUUGCGCGGGGGGAACCUGGGGAAC UGAAACAUCUCAGUACCCAGAGGAGAGGAAAGAGAAAUCGACUCCCUGAGUAGCGGCGAG CGAAAGGGGACCAGCCUAAACCGUCCGGCUUGUCCGGGCGGGGUCGUGGGGCCCUCGGAC ACCGAAUCCCCAGCCUAGCCGAAGCUGUUGGGAAGCAGCGCCAGAGAGGGUGAAAGCCCC GUAGGCGAAAGGUGGGGGGAUAGGUGAGGGUACCCGAGUACCCCGUGGUUCGUGGAGCCA UGGGGGAAUCUGGGCGGACCACCGCCUAAGGCUAAGUACUCCGGGUGACCGAUAGCGCAC CAGUACCGUGAGGGAAAGGUGAAAAGAACCCCGGGAGGGGAGUGAAAUAGAGCCUGAAAC CGUGGGCUUACAAGCAGUCACGGCCCCGCAAGGGGUUGUGGCGUGCCUAUUGAAGCAUGA GCCGGCGACUCACGGUCGUGGGCGAGCUUAAGCCGUUGAGGCGGAGGCGUAGGGAAACCG AGUCCGAACAGGGCGCAAGCGGGCCGCACGCGGCCCGCAAAGUCCGCGGCCGUGGACCCG AAACCGGGCGAGCUAGCCCUGGCCAGGGUGAAGCUGGGGUGAGACCCAGUGGAGGCCCGA ACCGGUGGGGGAUGCAAACCCCUCGGAUGAGCUGGGGCUAGGAGUGAAAAGCUAACCGAG CCCGGAGAUAGCUGGUUCUCCCCGAAAUGACUUUAGGGUCAGCCUCAGGCGCUGACUGGG GCCUGUAGAGCACUGAUAGGGCUAGGGGGCCCACCAGCCUACCAAACCCUGUCAAACUCC GAAGGGUCCCAGGUGGAGCCUGGGAGUGAGGGCGCGAGCGAUAACGUCCGCGUCCGAGCG CGGGAACAACCGAGACCGCCAGCUAAGGCCCCCAAGUCUGGGCUAAGUGGUAAAGGAUGU GGCGCCGCGAAGACAGCCAGGAGGUUGGCUUAGAAGCAGCCAUCCUUUAAAGAGUGCGUA AUAGCUCACUGGUCGAGUGGCGCCGCGCCGAAAAUGAUCGGGGCUUAAGCCCAGCGCCGA AGCUGCGGGUCUGGGGGAUGACCCCAGGCGGUAGGGGAGCGUUCCCGAUGCCGAUGAAGG CCGACCCGCGAGGGCGGCUGGAGGUAAGGGAAGUGCGAAUGCCGGCAUGAGUAACGAUAA AGAGGGUGAGAAUCCCUCUCGCCGUAAGCCCAAGGGUUCCUACGCAAUGGUCGUCAGCGU AGGGUUAGGCGGGACCUAAGGUGAAGCCGAAAGGCGUAGCCGAAGGGCAGCCGGUUAAUA UUCCGGCCCUUCCCGCAGGUGCGAUGGGGGGACGCUCUAGGCUAGGGGGACCGGAGCCAU GGACGAGCCCGGCCAGAAGCGCAGGGUGGGAGGUAGGCAAAUCCGCCUCCCAACAAGCUC UGCGUGGUGGGGAAGCCCGUACGGGUGACAACCCCCCGAAGCCAGGGAGCCAAGAAAAGC CUCUAAGCACAACCUGCGGGAACCCGUACCGCAAACCGACACAGGUGGGCGGGUGCAAGA GCACUCAGGCGCGCGGGAGAACCCUCGCCAAGGAACUCUGCAAGUUGGCCCCGUAACUUC GGGAGAAGGGGUGCUCCCUGGGGUGAUGAGCCCCGGGGAGCCGCAGUGAACAGGCUCUGG CGACUGUUUACCAAAAACACAGCUCUCUGCGAACUCGUAAGAGGAGGUAUAGGGAGCGAC GCUUGCCCGGUGCCGGAAGGUCAAGGGGAGGGGUGCAAGCCCCGAACCGAAGCCCCGGUG AACGGCGGCCGUAACUAUAACGGUCCUAAGGUAGCGAAAUUCCUUGUCGGGUAAGUUCCG ACCUGCACGAAAAGCGUAACGACCGGAGCGCUGUCUCGGCGAGGGACCCGGUGAAAUUGA ACUGGCCGUGAAGAUGCGGCCUACCCGUGGCAGGACGAAAAGACCCCGUGGAGCUUUACU GCAGCCUGGUGUUGGCUCUUGGUCGCGCCUGCGUAGGAUAGGUGGGAGCCUGUGAACCCC CGCCUCCGGGUGGGGGGGAGGCGCCGGUGAAAUACCACCCUGGCGCGGCUGGGGGCCUAA CCCUCGGAUGGGGGGACAGCGCUUGGCGGGCAGUUUGACUGGGGCGGUCGCCUCCUAAAA GGUAACGGAGGCGCCCAAAGGUCCCCUCAGGCGGGACGGAAAUCCGCCGGAGAGCGCAAG GGUAGAAGGGGGCCUGACUGCGAGGCCUGCAAGCCGAGCAGGGGCGAAAGCCGGGCCUAG UGAACCGGUGGUCCCGUGUGGAAGGGCCAUCGAUCAACGGAUAAAAGUUACCCCGGGGAU AACAGGCUGAUCUCCCCCGAGCGUCCACAGCGGCGGGGAGGUUUGGCACCUCGXUGUCGG CUCGUCGCAUCCUGGGGCUGAAGAAGGUCCCAAGGGUUGGGCUGUUCGCCCAUUAAAGCG GCACGCGAGCUGGGUUCAGAACGUCGUGAGACAGUUCGGUCUCUAUCCGCCACGGGCGCA GGAGGCUUGAGGGGGGCUCUUCCUAGUACGAGAGGACCGGAAGGGACGCACCUCUGGUUU CCCAGCUGUCCCUCCAGGGGCAUAAGCUGGGUAGCCAUGUGCGGAAGGGAUAACCGCUGA AAGCAUCUAAGCGGGAAGCCCGCCCCAAGAUGAGGCCUCCCACGGCGUCAAGCCGGUAAG GACCCGGGAAGACCACCCGGUGGAUGGGCCGGGGGUGUAAGCGCCGCGAGGCGUUGAGCC GACCGGUCCCAAUCGUCCGAGGUCUUGACCCCUCC
>8G2A_2 5S Ribosomal RNA (chains 1B, 2B) UCCCCCGUGCCCAUAGCGGCGUGGAACCACCCGUUCCCAUUCCGAACACGGAAGUGAAAC GCGCCAGCGCCGAUGGUACUGGGCGGGCGACCGCCUGGGAGAGUAGGUCGGUGCGGGGGA U
>8G2A_3 50S ribosomal protein L2 (chains 1D, 2D) MAVKKFKPYTPSRRFMTVADFSEITKTEPEKSLVKPLKKTGGRNNQGRITVRFRGGGHKR LYRIIDFKRWDKVGIPAKVAAIEYDPNRSARIALLHYVDGEKRYIIAPDGLQVGQQVVAG PDAPIQVGNALPLRFIPVGTVVHAVELEPKKGAKLARAAGTSAQIQGREGDYVILRLPSG ELRKVHGECYATVGAVGNADHKNIVLGKAGRSRWLGRRPHVRGAAMNPVDHPHGGGEGRA PRGRPPASPWGWQTKGLKTRKRRKPSSRFIIARRKK
>8G2A_4 50S ribosomal protein L3 (chains 1E, 2E) MKGILGVKVGMTRIFRDDRAVPVTVILAGPCPVVQRRTPEKDGYTAVQLGFLPQNPKRVN RPLKGHFAKAGVEPVRILREIRDFNPEGDTVTVEIFKPGERVDVTGTSKGRGFAGVMKRW NFAGGPDSHGAHKIHRHPGSIGNRKTPGRVYKGKKMAGHYGAERVTVMNLEVVDVIPEEN LLLVKGAVPGPNGGLVIVRETKKAAK
>8G2A_5 50S ribosomal protein L4 (chains 1F, 2F) MKEVAVYQIPVLSPSGRRELAADLPAEINPHLLWEVVRWQLAKRRRGTASTKTRGEVAYS GRKIWPQKHTGRARHGDIGAPIFVGGGVVFGPKPRDYSYTLPKKVRKKGLAMAVADRARE GKLLLVEAFAGVNGKTKEFLAWAKEAGLDGSESVLLVTGNELVRRAARNLPWVVTLAPEG LNVYDIVRTERLVMDLDAWEVFQNRIGGEA
>8G2A_6 50S ribosomal protein L5 (chains 1G, 2G) MPLDVALKRKYYEEVRPELIRRFGYQNVWEVPRLEKVVINQGLGEAKEDARILEKAAQEL ALITGQKPAVTRAKKSISNFKLRKGMPIGLRVTLRRDRMWIFLEKLLNVALPRIRDFRGL NPNSFDGRGNYNLGLREQLIFPEITYDMVDALRGMDIAVVTTAETDEEARALLELLGFPF RK
>8G2A_7 50S ribosomal protein L6 (chains 1H, 2H) MSRIGRLPIPVPKGVSVEVAPGRVKVKGPKGELEVPVSPEMRVVVEEGVVRVERPSDERR HKSLHGLTRTLIANAVKGVSEGYSKELLIKGIGYRARLVGRALELTVGFSHPVVVEPPEG ITFEVPEPTRVRVSGIDKQKVGQVAANIRAIRKPSAYHEKGIYYAGEPVRLKPGKAGAKK
>8G2A_8 50S ribosomal protein L9 (chains 1I, 2I) MKVILLEPLENLGDVGQVVDVKPGYARNYLLPRGLAVLATESNLKALEARIRAQAKRLAE RKAEAERLKEILENLTLTIPVRAGETKIYGSVTAKDIAEALSRQHGVTIDPKRLALEKPI KELGEYVLTYKPHPEVPIQLKVSVVAQE
>8G2A_9 50S ribosomal protein L13 (chains 1N, 2N) MKTYVPKQVEPRWVLIDAEGKTLGRLATKIATLLRGKHRPDWTPNVAMGDFVVVVNADKI RVTGKKLEQKIYTRYSGYPGGLKKIPLEKMLATHPERVLEHAVKGMLPKGPLGRRLFKRL KVYAGPDHPHQAQRPEKLEV
>8G2A_10 50S ribosomal protein L14 (chains 1O, 2O) MIQPQTYLEVADNTGARKIMCIRVLKGSNAKYATVGDVIVASVKEAIPRGAVKEGDVVKA VVVRTKKEIKRPDGSAIRFDDNAAVIINNQLEPRGTRVFGPVARELREKGFMKIVSLAPE VL
>8G2A_11 50S ribosomal protein L15 (chains 1P, 2P) MKLSDLRPNPGANKRRKRVGRGPGSGHGKTATRGHKGQKSRSGGLKDPRRFEGGRSTTLM RLPKRGMQGQVPGEIKRPRYQGVNLKDLARFEGEVTPELLVRAGLLKKGYRLKILGEGEA KPLKVVAHAFSKSALEKLKAAGGEPVLLEA
>8G2A_12 50S ribosomal protein L16 (chains 1Q, 2Q) MLMPRRMKYRKQQRGRLKGATKGGDYVAFGDYGLVALEPAWITAQQIEAARVAMVRHFRR GGKIFIRIFPDKPYTKKPLEVRMGKGKGNVEGYVAVVKPGRVMFEVAGVTEEQAMEALRI AGHKLPIKTKIVRRDAYDEAQ
Water and common crystallization additives (K) are not listed.
Structural basis of Cfr-mediated antimicrobial resistance and mechanisms to evade it. Aleksandrova, E.V., Wu, K.J.Y., Tresco, B.I.C. et al. Nat Chem Biol (2024) 20:867-876. DOI 10.1038/s41589-023-01525-w · PubMed
Other PDB entries of the same protein (UniProt P60405 (AlphaFold model), which also has an AlphaFold model), best resolution first:
MolViewer shows 8G2A directly in your browser with nothing to install. Switch between cartoon, ball-and-stick, spacefill and surface views, color by chain, secondary structure or B-factor, measure distances, angles and dihedrals, and share or embed the view.