7AQD: Bacterial RQC complex

Structure of the bacterial RQC complex (Translocating State). Determined by electron microscopy at 3.1 Å resolution. Released 25 Nov 2020.

Method
Electron microscopy
Resolution
3.1 Å
Organism
Bacillus subtilis subsp. subtilis str. 168
Chains
32
Atoms
94,357
Mol. weight
1425.45 kDa
Released
25 Nov 2020

Explore 7AQD in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

7AQD contains 133 α-helices and 206 β-strands across 28 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 a: 5 helices, 7 β-strands

ElementResiduesLengthSheet
α-helix6-127
α-helix21-222
β-strand28-34738
β-strand43-541238
α-helix57-593
β-strand61-68838
β-strand71-78838
β-strand84-91838
β-strand93-94263
α-helix101-1044
α-helix109-1124
β-strand116-117263
Chain b: 3 helices, 4 β-strands
ElementResiduesLengthSheet
α-helix7-93
α-helix10-167
α-helix23-253
β-strand27-28264
β-strand37-38264
β-strand48-49265
β-strand52-53265
Chain c: 1 helix, 4 β-strands
ElementResiduesLengthSheet
β-strand2-9866
β-strand15-22866
α-helix29-302
β-strand31-36666
β-strand41-47766
Chain C: 8 helices, 25 β-strands
ElementResiduesLengthSheet
β-strand3-537
α-helix6-72
β-strand17-1937
α-helix31-333
β-strand34-3638
β-strand4319
β-strand4919
β-strand54110
β-strand61-6338
β-strand65111
β-strand76-82711
β-strand91-96611
β-strand101-105511
β-strand107112
β-strand115-116211
β-strand129-131313
α-helix1361
β-strand140114
β-strand141-142213
β-strand163-167514
β-strand171-175514
α-helix177-1793
β-strand181-185514
β-strand189-192413
β-strand195112
α-helix198-2025
α-helix208-2136
β-strand216110
α-helix222-2243
β-strand247115
β-strand253115
α-helix265-2684
β-strand270-272314
Chain d: 3 helices, 0 β-strands
ElementResiduesLengthSheet
α-helix9-157
α-helix18-225
α-helix25-3713
Chain D: 7 helices, 12 β-strands
ElementResiduesLengthSheet
β-strand4-161319
β-strand22-29819
β-strand33-39720
β-strand48-55820
α-helix63-686
β-strand77-83720
α-helix951
β-strand96-97220
α-helix99-1013
β-strand107-113719
α-helix114-1163
β-strand118-120321
α-helix122-1265
α-helix128-1325
α-helix154-1552
β-strand162-164321
β-strand168-1801319
β-strand185-189519
β-strand199-204619
Chain e: 4 helices, 3 β-strands
ElementResiduesLengthSheet
α-helix3-64
α-helix8-136
β-strand1515
β-strand23-2535
α-helix38-447
β-strand47-4935
α-helix52-587
Chain E: 8 helices, 7 β-strands
ElementResiduesLengthSheet
β-strand3-5324
β-strand6-7225
β-strand16-18324
α-helix21-244
α-helix27-282
α-helix30-4112
α-helix103-11917
β-strand123-126425
α-helix136-14510
β-strand152-156525
α-helix161-1655
β-strand173-177525
α-helix183-1897
β-strand192-194325
α-helix196-20510

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

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
Rqc2 homolog RqcHRprotein570Bacillus subtilis subsp. subtilis str. 168O34693 (AlphaFold model)
23S ribosomal RNAARNA2918Bacillus subtilis subsp. subtilis str. 168
5S ribosomal RNABRNA112Bacillus subtilis subsp. subtilis str. 168
50S ribosomal protein L2Cprotein277Bacillus subtilis subsp. subtilis str. 168P42919 (AlphaFold model)
50S ribosomal protein L3Dprotein209Bacillus subtilis subsp. subtilis str. 168P42920 (AlphaFold model)
50S ribosomal protein L4Eprotein207Bacillus subtilis subsp. subtilis str. 168P42921 (AlphaFold model)
50S ribosomal protein L5Fprotein179Bacillus subtilis subsp. subtilis str. 168P12877
50S ribosomal protein L6Gprotein179Bacillus subtilis subsp. subtilis str. 168P46898
50S ribosomal protein L11Iprotein141Bacillus subtilis subsp. subtilis str. 168Q06796
50S ribosomal protein L13Jprotein145Bacillus subtilis subsp. subtilis str. 168P70974
50S ribosomal protein L14Kprotein122Bacillus subtilis subsp. subtilis str. 168P12875
50S ribosomal protein L15Lprotein146Bacillus subtilis subsp. subtilis str. 168P19946

20 more molecules are not listed.

Sequence of entity 1 (R), FASTA
>7AQD_1 Rqc2 homolog RqcH (chains R)
MSFDGMFTYGMTHELNEKIMGGRITKIHQPYKHDVIFHIRAKGKNQKLLLSAHPSYSRVH
ITAQAYENPSEPPMFCMLLRKHIEGGFIEKIEQAGLDRIMIFHIKSRNEIGDETVRKLYV
EIMGRHSNIILTDAAENVIIDGLKHLSPSMNSYRTVLPGQDYKLPPAQDKISPLEASEDD
ILRHLSFQEGRLDKQIVDHFSGVSPLFAKEAVHRAGLANKVTLPKALLALFAEVKEHRFI
PNITTVNGKEYFYLLELTHLKGEARRFDSLSELLDRFYFGKAERDRVKQQAQDLERFVVN
ERKKNANKIKKLEKTLEYSENAKEFQLYGELLTANLYMLKKGDKQAEVINYYDEESPTIT
IPLNPNKTPSENAQAYFTKYQKAKNSVAVVEEQIRLAQEEIEYFDQLIQQLSSASPRDIS
EIREELVEGKYLRPKQQKGQKKQKPHNPVLETYESTSGLTILVGKNNRQNEYLTTRVAAR
DDIWLHTKDIPGSHVVIRSSEPDEQTIMEAATIAAYFSKAKDSSSVPVDYTKIRHVKKPN
GAKPGFVTYDSQHTVFVTPDADTVIKLKKS
Sequence of entity 2 (A), FASTA
>7AQD_2 23S ribosomal RNA (chains A)
UUAAGUUAGAAAGGGCGCACGGUGGAUGCCUUGGCACUAGGAGCCGAUGAAGGACGGGAC
GAACACCGAUAUGCUUCGGGGAGCUGUAAGCAAGCUUUGAUCCGGAGAUUUCCGAAUGGG
GAAACCCACCACUCGUAAUGGAGUGGUAUCCAUAUCUGAAUUCAUAGGAUAUGAGAAGGC
AGACCCGGGGAACUGAAACAUCUAAGUACCCGGAGGAAGAGAAAGCAAAUGCGAUUCCCU
GAGUAGCGGCGAGCGAAACGGGAUCAGCCCAAACCAAGAGGCUUGCCUCUUGGGGUUGUA
GGACACUCUGUACGGAGUUACAAAGGAACGAGGUAGAUGAAGAGGUCUGGAAAGGCCCGC
CAUAGGAGGUAACAGCCCUGUAGUCAAAACUUCGUUCUCUCCUGAGUGGAUCCUGAGUAC
GGCGGAACACGUGAAAUUCCGUCGGAAUCCGGGAGGACCAUCUCCCAAGGCUAAAUACUC
CCUAGUGACCGAUAGUGAACCAGUACCGUGAGGGAAAGGUGAAAAGCACCCCGGAAGGGG
AGUGAAAGAGAUCCUGAAACCGUGUGCCUACAAGUAGUCAGAGCCCGUUAACGGGUGAUG
GCGUGCCUUUUGUAGAAUGAACCGGCGAGUUACGAUCUCGUGCAAGGUUAAGCAGAAGAU
GCGGAGCCGCAGCGAAAGCGAGUCUGAAUAGGGCGCAUGAGUACGUGGUCGUAGACCCGA
AACCAGGUGAUCUACCCAUGUCCAGGGUGAAGUUCAGGUAACACUGAAUGGAGGCCCGAA
CCCACGCACGUUGAAAAGUGCGGGGAUGAGGUGUGGGUAGGGGUGAAAUGCCAAUCGAAC
CUGGAGAUAGCUGGUUCUCUCCGAAAUAGCUUUAGGGCUAGCCUCAAGGUAAGAGUCUUG
GAGGUAGAGCACUGAUUGGACUAGGGGCCCCUACCGGGUUACCGAAUUCAGUCAAACUCC
GAAUGCCAAUGACUUAUCCUUGGGAGUCAGACUGCGAGUGAUAAGAUCCGUAGUCGAAAG
GGAAACAGCCCAGACCGCCAGCUAAGGUCCCAAAGUAUACGUUAAGUGGAAAAGGAUGUG
GAGUUGCUUAGACAACCAGGAUGUUGGCUUAGAAGCAGCCACCAUUUAAAGAGUGCGUAA
UAGCUCACUGGUCGAGUGACUCUGCGCCGAAAAUGUACCGGGGCUAAACGUAUCACCGAA
GCUGCGGACUGUUCUUCGAACAGUGGUAGGAGAGCGUUCUAAGGGCUGUGAAGCCAGACC
GGAAGGACUGGUGGAGCGCUUAGAAGUGAGAAUGCCGGUAUGAGUAGCGAAAGAGGGGUG
AGAAUCCCCUCCACCGAAUGCCUAAGGUUUCCUGAGGAAGGCUCGUCCGCUCAGGGUUAG
UCGGGACCUAAGCCGAGGCCGAAAGGCGUAGGCGAUGGACAACAGGUUGAUAUUCCUGUA
CCACCUCCUCACCAUUUGAGCAAUGGGGGGACGCAGGAGGAUAGGGUAAGCGCGGUAUUG
GAUAUCCGCGUCCAAGCAGUUAGGCUGGGAAAUAGGCAAAUCCGUUUCCCAUAAGCCUGA
GCUGUGAUGGCGAGCGAAAUAUAGUAGCGAAGUUCCUGAUUCCACACUGCCAAGAAAAGC
CUCUAGCGAGGUGAGAGGUGCCCGUACCGCAAACCGACACAGGUAGGCGAGGAGAGAAUC
CUAAGGUGAUCGAGAGAACUCUCGUUAAGGAACUCGGCAAAAUGACCCCGUAACUUCGGG
AGAAGGGGUGCUCUGUUAGGGUGCAAGCCCGAGAGAGCCGCAGUGAAUAGGCCCAGGCGA
CUGUUUAGCAAAAACACAGGUCUCUGCGAAGCCGUAAGGCGAAGUAUAGGGGCUGACGCC
UGCCCGGUGCUGGAAGGUUAAGAGGAGCGCUUAGCGUAAGCGAAGGUGCGAAUUGAAGCC
CCAGUAAACGGCGGCCGUAAACGGUCCUAAGGUAGCGAAAUUCCUUGUCGGGUAAGUUCC
GACCCGCACGAAAGGCGCAACGAUCUGGGCACUGUCUCAACGAGAGACUCGGUGAAAUUA
UAGUACCUGUGAAGAUGCAGGUUACCCGCGACAGGACGGAAAGACCCCGUGGAGCUUUAC
UGCAGCCUGAUAUUGAAUGUUGGUACAGCUUGUACAGGAUAGGUAGGAGCCUUGGAAACC
GGAGCGCCAGCUUCGGUGGAGGCAUCGGUGGGAUACUACCCUGGCUGUAUUGACCUUCUA
ACCCGCCGCCCUUAUCGGGCGGGGAGACAGUGUCAGGUGGGCAGUUUGACUGGGGCGGUC
GCCUCCUAAAAGGUAACGGAGGCGCCCAAAGGUUCCCUCAGAAUGGUUGGAAAUCAUUCG
CAGAGUGUAAAGGCACAAGGGAGCUUGACUGCGAGACCUACAAGUCGAGCAGGGACGAAA
GUCGGGCUUAGUGAUCCGGUGGUUCCGCAUGGAAGGGCCAUCGCUCAACGGAUAAAAGCU
ACCCCGGGGAUAACAGGCUUAUCUCCCCCAAGAGUCCACAUCGACGGGGAGGUUUGGCAC
CUCGAUGUCGGCUCAUCGCAUCCUGGGGCUGUAGUCGGUCCCAAGGGUUGGGCUGUUCGC
CCAUUAAAGCGGUACGCGAGCUGGGUUCAGAACGUCGUGAGACAGUUCGGUCCCUAUCCG
UCGCGGGCGCAGGAAAUUUGAGAGGAGCUGUCCUUAGUACGAGAGGACCGGGAUGGACGC
ACCGCUGGUGUACCAGUUGUUCUGCCAAGGGCAUCGCUGGGUAGCUAUGUGCGGACGGGA
UAAGUGCUGAAAGCAUCUAAGCAUGAAGCCCCCCUCAAGAUGAGAUUUCCCAUUCCGCAA
GGAAGUAAGAUCCCUGAAAGAUGAUCAGGUUGAUAGGUCUGAGGUGGAAGUGUGGCGACA
CAUGGAGCUGACAGAUACUAAUCGAUCGAGGACUUAAC
Sequence of entity 3 (B), FASTA
>7AQD_3 5S ribosomal RNA (chains B)
UGGUGGCGAUAGCGAAGAGGUCACACCCGUUCCCAUACCGAACACGGAAGUUAAGCUCUU
CAGCGCCGAUGGUAGUCGGGGGUUUCCCCCUGUGAGAGUAGGACGCCGCCAA
Sequence of entity 4 (C), FASTA
>7AQD_4 50S ribosomal protein L2 (chains C)
MAIKKYKPTSNGRRGMTTSDFAEITTDKPEKSLLAPLHKKGGRNNQGKLTVRHQGGGHKR
QYRVIDFKRDKDGIPGRVATVEYDPNRSANIALINYADGEKRYILAPKGIQVGTEIMSGP
EADIKVGNALPLINIPVGTVVHNIELKPGKGGQLVRSAGTSAQVLGKEGKYVLVRLNSGE
VRMILSACRASIGQVGNEQHELINIGKAGRSRWKGIRPTVRGSVMNPNDHPHGGGEGRAP
IGRKSPMSPWGKPTLGFKTRKKKNKSDKFIVRRRKNK
Sequence of entity 5 (D), FASTA
>7AQD_5 50S ribosomal protein L3 (chains D)
MTKGILGRKIGMTQVFAENGDLIPVTVIEAAPNVVLQKKTAENDGYEAIQLGFDDKREKL
SNKPEKGHVAKAETAPKRFVKELRGVEMDAYEVGQEVKVEIFSAGEIVDVTGVSKGKGFQ
GAIKRHGQSRGPMSHGSRYHRRPGSMGPVDPNRVFKGKLLPGRMGGEQITVQNLEIVKVD
AERNLLLIKGNVPGAKKSLITVKSAVKSK
Sequence of entity 6 (E), FASTA
>7AQD_6 50S ribosomal protein L4 (chains E)
MPKVALYNQNGSTAGDIELNASVFGIEPNESVVFDAILMQRASLRQGTHKVKNRSEVRGG
GRKPWRQKGTGRARQGSIRSPQWRGGGVVFGPTPRSYSYKLPKKVRRLAIKSVLSSKVID
NNIIVLEDLTLDTAKTKEMAAILKGLSVEKKALIVTADANEAVALSARNIPGVTVVEANG
INVLDVVNHEKLLITKAAVEKVEEVLA
Sequence of entity 7 (F), FASTA
>7AQD_7 50S ribosomal protein L5 (chains F)
MNRLKEKYNKEIAPALMTKFNYDSVMQVPKIEKIVINMGVGDAVQNAKAIDSAVEELTFI
AGQKPVVTRAKKSIAGFRLREGMPIGAKVTLRGERMYDFLDKLISVSLPRVRDFRGVSKK
SFDGRGNYTLGIKEQLIFPEIDYDKVTKVRGMDIVIVTTANTDEEARELLTQVGMPFQK
Sequence of entity 8 (G), FASTA
>7AQD_8 50S ribosomal protein L6 (chains G)
MSRVGKKLLEIPSDVTVTLNDNNTVAVKGPKGELTRTFHPDMEIKVEDNVLTVARPSDQK
EHRALHGTTRSLLGNMVEGVSKGFERGLELVGVGYRASKSGNKLVLNVGYSHPVEIVPEE
GIEIEVPSQTKVVVKGTDKERVGAIAANIRAVRSPEPYKGKGIRYEGEVVRRKEGKSAK
Sequence of entity 9 (I), FASTA
>7AQD_9 50S ribosomal protein L11 (chains I)
MAKKVVKVVKLQIPAGKANPAPPVGPALGQAGVNIMGFCKEFNARTADQAGLIIPVEISV
YEDRSFTFITKTPPAAVLLKKAAGIESGSGEPNRNKVATVKRDKVREIAETKMPDLNAAD
VEAAMRMVEGTARSMGIVIED
Sequence of entity 10 (J), FASTA
>7AQD_10 50S ribosomal protein L13 (chains J)
MRTTPMANASTIERKWLVVDAAGKTLGRLSSEVAAILRGKHKPTYTPHVDTGDHVIIINA
EKIELTGKKLTDKIYYRHTQHPGGLKSRTALEMRTNYPEKMLELAIKGMLPKGSLGRQMF
KKLNVYRGSEHPHEAQKPEVYELRG
Sequence of entity 11 (K), FASTA
>7AQD_11 50S ribosomal protein L14 (chains K)
MIQQETRLKVADNSGAREVLTIKVLGGSGRKTANIGDVIVCTVKQATPGGVVKKGEVVKA
VIVRTKSGARRSDGSYISFDENACVIIRDDKSPRGTRIFGPVARELRENNFMKIVSLAPE
VI
Sequence of entity 12 (L), FASTA
>7AQD_12 50S ribosomal protein L15 (chains L)
MKLHELKPSEGSRKTRNRVGRGIGSGNGKTAGKGHKGQNARSGGGVRPGFEGGQMPLFQR
LPKRGFTNINRKEYAVVNLDKLNGFAEGTEVTPELLLETGVISKLNAGVKILGNGKLEKK
LTVKANKFSASAKEAVEAAGGTAEVI

Primary citation

Mimicry of Canonical Translation Elongation Underlies Alanine Tail Synthesis in RQC. Filbeck, S., Cerullo, F., Paternoga, H. et al. Mol Cell (2021) 81:104. DOI 10.1016/j.molcel.2020.11.001 · PubMed

Other PDB entries of the same protein (UniProt O34693 (AlphaFold model), which also has an AlphaFold model), best resolution first:

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