8VTW: Wild-type Thermus thermophilus 70S ribosome

Crystal structure of the wild-type Thermus thermophilus 70S ribosome in complex with macrolone MCX-128 and protein Y at 2.35A resolution. Determined by X-ray diffraction at 2.35 Å resolution. Released 7 Aug 2024.

Method
X-ray diffraction
Resolution
2.35 Å
Organisms
Thermus thermophilus HB8, Escherichia coli K-12
Chains
106
Atoms
296,775
Mol. weight
4426.39 kDa
Ligands
MG, A1AE1, ARG, ZN
Released
7 Aug 2024

Explore 8VTW in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

8VTW contains 527 α-helices and 659 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.

Chain 10: 3 helices, 8 β-strands

ElementResiduesLengthSheet
α-helix4-63
α-helix16-183
β-strand22-232187
β-strand30-312188
β-strand36-394187
β-strand46-472188
β-strand51-533187
β-strand59-613187
β-strand65-717188
α-helix73-753
β-strand77-837188
Chain 11: 5 helices, 4 β-strands
ElementResiduesLengthSheet
β-strand13-219195
α-helix25-273
β-strand33-4210195
β-strand46-538196
β-strand56-638196
α-helix64-663
α-helix67-7610
α-helix77-793
α-helix87-9610
Chain 12: 3 helices, 0 β-strands
ElementResiduesLengthSheet
α-helix3-1311
α-helix18-4023
α-helix48-6922
Chain 13: 3 helices, 3 β-strands
ElementResiduesLengthSheet
β-strand3-86206
α-helix17-259
β-strand34-385206
α-helix41-499
α-helix51-533
β-strand54-596206
Chain 14: 1 helix, 3 β-strands
ElementResiduesLengthSheet
α-helix7-93
β-strand10-167209
β-strand21-266209
β-strand30-334209
Chains 15 and 25: 4 helices, 5 β-strands
ElementResiduesLengthSheet
α-helix10-123
α-helix13-197
α-helix20-223
α-helix24-296
β-strand31-3221
β-strand39-4021
β-strand451120
β-strand51-5222
β-strand55-5622
Chain 16: 1 helix, 4 β-strands
ElementResiduesLengthSheet
β-strand6-1386
β-strand19-2686
α-helix33-342
β-strand35-4066
β-strand45-5286
Chains 17 and 27: 3 helices, 0 β-strands
ElementResiduesLengthSheet
α-helix9-168
α-helix18-236
α-helix25-3713

89 more chain groups are not listed. Open the entry in the viewer and use the sequence panel to see them.

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
23S Ribosomal RNA1A, 2ARNA2915Thermus thermophilus HB8
5S Ribosomal RNA1B, 2BRNA121Thermus thermophilus HB8
50S ribosomal protein L21D, 2Dprotein276Thermus thermophilus HB8P60405 (AlphaFold model)
50S ribosomal protein L31E, 2Eprotein206Thermus thermophilus HB8Q5SHN8 (AlphaFold model)
50S ribosomal protein L41F, 2Fprotein210Thermus thermophilus HB8Q5SHN9 (AlphaFold model)
50S ribosomal protein L51G, 2Gprotein182Thermus thermophilus HB8Q5SHQ0 (AlphaFold model)
50S ribosomal protein L61H, 2Hprotein180Thermus thermophilus HB8P0DOY8
50S ribosomal protein L91I, 2Iprotein148Thermus thermophilus HB8Q5SLQ1
50S ribosomal protein L131N, 2Nprotein140Thermus thermophilus HB8P60488
50S ribosomal protein L141O, 2Oprotein122Thermus thermophilus HB8Q5SHP8
50S ribosomal protein L151P, 2Pprotein150Thermus thermophilus HB8Q5SHQ7
50S ribosomal protein L161Q, 2Qprotein141Thermus thermophilus HB8P60489

41 more molecules are not listed.

Sequence of entity 1 (1A, 2A), FASTA
>8VTW_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
AACAGGCUGAUCUCCCCCGAGCGUCCACAGCGGCGGGGAGGUUUGGCACCUCGAUGUCGG
CUCGUCGCAUCCUGGGGCUGAAGAAGGUCCCAAGGGUUGGGCUGUUCGCCCAUUAAAGCG
GCACGCGAGCUGGGUUCAGAACGUCGUGAGACAGUUCGGUCUCUAUCCGCCACGGGCGCA
GGAGGCUUGAGGGGGGCUCUUCCUAGUACGAGAGGACCGGAAGGGACGCACCUCUGGUUU
CCCAGCUGUCCCUCCAGGGGCAUAAGCUGGGUAGCCAUGUGCGGAAGGGAUAACCGCUGA
AAGCAUCUAAGCGGGAAGCCCGCCCCAAGAUGAGGCCUCCCACGGCGUCAAGCCGGUAAG
GACCCGGGAAGACCACCCGGUGGAUGGGCCGGGGGUGUAAGCGCCGCGAGGCGUUGAGCC
GACCGGUCCCAAUCGUCCGAGGUCUUGACCCCUCC
Sequence of entity 2 (1B, 2B), FASTA
>8VTW_2 5S Ribosomal RNA (chains 1B, 2B)
UCCCCCGUGCCCAUAGCGGCGUGGAACCACCCGUUCCCAUUCCGAACACGGAAGUGAAAC
GCGCCAGCGCCGAUGGUACUGGGCGGGCGACCGCCUGGGAGAGUAGGUCGGUGCGGGGGA
U
Sequence of entity 3 (1D, 2D), FASTA
>8VTW_3 50S ribosomal protein L2 (chains 1D, 2D)
MAVKKFKPYTPSRRFMTVADFSEITKTEPEKSLVKPLKKTGGRNNQGRITVRFRGGGHKR
LYRIIDFKRWDKVGIPAKVAAIEYDPNRSARIALLHYVDGEKRYIIAPDGLQVGQQVVAG
PDAPIQVGNALPLRFIPVGTVVHAVELEPKKGAKLARAAGTSAQIQGREGDYVILRLPSG
ELRKVHGECYATVGAVGNADHKNIVLGKAGRSRWLGRRPHVRGAAMNPVDHPHGGGEGRA
PRGRPPASPWGWQTKGLKTRKRRKPSSRFIIARRKK
Sequence of entity 4 (1E, 2E), FASTA
>8VTW_4 50S ribosomal protein L3 (chains 1E, 2E)
MKGILGVKVGMTRIFRDDRAVPVTVILAGPCPVVQRRTPEKDGYTAVQLGFLPQNPKRVN
RPLKGHFAKAGVEPVRILREIRDFNPEGDTVTVEIFKPGERVDVTGTSKGRGFAGVMKRW
NFAGGPDSHGAHKIHRHPGSIGNRKTPGRVYKGKKMAGHYGAERVTVMNLEVVDVIPEEN
LLLVKGAVPGPNGGLVIVRETKKAAK
Sequence of entity 5 (1F, 2F), FASTA
>8VTW_5 50S ribosomal protein L4 (chains 1F, 2F)
MKEVAVYQIPVLSPSGRRELAADLPAEINPHLLWEVVRWQLAKRRRGTASTKTRGEVAYS
GRKIWPQKHTGRARHGDIGAPIFVGGGVVFGPKPRDYSYTLPKKVRKKGLAMAVADRARE
GKLLLVEAFAGVNGKTKEFLAWAKEAGLDGSESVLLVTGNELVRRAARNLPWVVTLAPEG
LNVYDIVRTERLVMDLDAWEVFQNRIGGEA
Sequence of entity 6 (1G, 2G), FASTA
>8VTW_6 50S ribosomal protein L5 (chains 1G, 2G)
MPLDVALKRKYYEEVRPELIRRFGYQNVWEVPRLEKVVINQGLGEAKEDARILEKAAQEL
ALITGQKPAVTRAKKSISNFKLRKGMPIGLRVTLRRDRMWIFLEKLLNVALPRIRDFRGL
NPNSFDGRGNYNLGLREQLIFPEITYDMVDALRGMDIAVVTTAETDEEARALLELLGFPF
RK
Sequence of entity 7 (1H, 2H), FASTA
>8VTW_7 50S ribosomal protein L6 (chains 1H, 2H)
MSRIGRLPIPVPKGVSVEVAPGRVKVKGPKGELEVPVSPEMRVVVEEGVVRVERPSDERR
HKSLHGLTRTLIANAVKGVSEGYSKELLIKGIGYRARLVGRALELTVGFSHPVVVEPPEG
ITFEVPEPTRVRVSGIDKQKVGQVAANIRAIRKPSAYHEKGIYYAGEPVRLKPGKAGAKK
Sequence of entity 8 (1I, 2I), FASTA
>8VTW_8 50S ribosomal protein L9 (chains 1I, 2I)
MKVILLEPLENLGDVGQVVDVKPGYARNYLLPRGLAVLATESNLKALEARIRAQAKRLAE
RKAEAERLKEILENLTLTIPVRAGETKIYGSVTAKDIAEALSRQHGVTIDPKRLALEKPI
KELGEYVLTYKPHPEVPIQLKVSVVAQE
Sequence of entity 9 (1N, 2N), FASTA
>8VTW_9 50S ribosomal protein L13 (chains 1N, 2N)
MKTYVPKQVEPRWVLIDAEGKTLGRLATKIATLLRGKHRPDWTPNVAMGDFVVVVNADKI
RVTGKKLEQKIYTRYSGYPGGLKKIPLEKMLATHPERVLEHAVKGMLPKGPLGRRLFKRL
KVYAGPDHPHQAQRPEKLEV
Sequence of entity 10 (1O, 2O), FASTA
>8VTW_10 50S ribosomal protein L14 (chains 1O, 2O)
MIQPQTYLEVADNTGARKIMCIRVLKGSNAKYATVGDVIVASVKEAIPRGAVKEGDVVKA
VVVRTKKEIKRPDGSAIRFDDNAAVIINNQLEPRGTRVFGPVARELREKGFMKIVSLAPE
VL
Sequence of entity 11 (1P, 2P), FASTA
>8VTW_11 50S ribosomal protein L15 (chains 1P, 2P)
MKLSDLRPNPGANKRRKRVGRGPGSGHGKTATRGHKGQKSRSGGLKDPRRFEGGRSTTLM
RLPKRGMQGQVPGEIKRPRYQGVNLKDLARFEGEVTPELLVRAGLLKKGYRLKILGEGEA
KPLKVVAHAFSKSALEKLKAAGGEPVLLEA
Sequence of entity 12 (1Q, 2Q), FASTA
>8VTW_12 50S ribosomal protein L16 (chains 1Q, 2Q)
MLMPRRMKYRKQQRGRLKGATKGGDYVAFGDYGLVALEPAWITAQQIEAARVAMVRHFRR
GGKIFIRIFPDKPYTKKPLEVRMGKGKGNVEGYVAVVKPGRVMFEVAGVTEEQAMEALRI
AGHKLPIKTKIVRRDAYDEAQ

Ligands and cofactors

IDNameFormulaCopies
MGMagnesium ionMg2434
A1AE11-cyclopropyl-7-(4-{4-[({[(3aR,4R,7R,8S,9S,10R,11R,13R,14E,15S,15aR)-10-{[(2S,3…C54 H81 F N6 O152
ARGArginineC6 H15 N4 O22
ZNZinc ionZn12
SF4Iron/sulfur clusterFe4 S42

Water and common crystallization additives (MPD) are not listed.

Primary citation

Macrolones target bacterial ribosomes and DNA gyrase and can evade resistance mechanisms. Aleksandrova, E.V., Ma, C.X., Klepacki, D. et al. Nat Chem Biol (2024) 20:1680-1690. DOI 10.1038/s41589-024-01685-3 · PubMed

Other PDB entries of the same protein (UniProt P60405 (AlphaFold model), which also has an AlphaFold model), best resolution first:

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