7OH3: RRNA-processing protein CGR1

Nog1-TAP associated immature ribosomal particle population B from S. cerevisiae. Determined by electron microscopy at 3.4 Å resolution. Released 3 Nov 2021.

Method
Electron microscopy
Resolution
3.4 Å
Organisms
Saccharomyces cerevisiae (strain ATCC 204508 / S288c), Saccharomyces cerevisiae S288c
Chains
50
Atoms
136,603
Mol. weight
2293 kDa
Ligands
ZN, MG
Released
3 Nov 2021

Explore 7OH3 in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

7OH3 contains 419 α-helices and 376 β-strands across 47 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 5: 2 helices, 0 β-strands

ElementResiduesLengthSheet
α-helix43-9856
α-helix101-11212
Chain a: 6 helices, 7 β-strands
ElementResiduesLengthSheet
α-helix65-684
β-strand72-7435
α-helix75-784
α-helix79-813
α-helix84-918
β-strand99-100247
β-strand101-10336
α-helix104-1074
β-strand111-11335
β-strand124-12636
β-strand129-13025
α-helix132-1409
β-strand144-14636
Chain A: 8 helices, 15 β-strands
ElementResiduesLengthSheet
α-helix6-105
α-helix29-313
α-helix34-385
β-strand40-49108
α-helix571
β-strand58-6478
β-strand71-7778
α-helix781
β-strand7919
β-strand83110
β-strand87-9158
β-strand101-10338
α-helix1081
β-strand112-11438
β-strand116111
β-strand126111
β-strand134-14078
β-strand145-14958
β-strand155-15958
β-strand163-16648
β-strand16919
α-helix174-1763
α-helix182-19211
Chain b: 23 helices, 6 β-strands
ElementResiduesLengthSheet
α-helix8-103
α-helix14-2815
α-helix39-6729
α-helix76-8611
α-helix88-11629
α-helix122-14120
α-helix144-15815
β-strand169-17357
α-helix180-1878
β-strand205-21177
β-strand214-22077
α-helix234-24512
α-helix2481
β-strand249-25577
α-helix264-27411
α-helix275-2784
β-strand284-28857
α-helix295-2973
α-helix300-31011
β-strand317-31937
α-helix326-34722
α-helix380-3845
α-helix385-3884
α-helix399-4057
α-helix412-4143
α-helix416-4183
α-helix425-4273
α-helix441-4444
α-helix449-46618
Chain B: 21 helices, 16 β-strands
ElementResiduesLengthSheet
α-helix9-102
α-helix14-163
α-helix27-293
α-helix33-353
α-helix40-412
β-strand42-43213
β-strand45-601614
β-strand70-801114
α-helix82-832
β-strand84-951213
β-strand98-106913
α-helix112-1176
α-helix131-1344
α-helix135-1373
α-helix142-15413
β-strand157-163713
α-helix166-1683
α-helix175-1773
β-strand178-184713
α-helix188-19811
β-strand199113
β-strand202-203213
α-helix205-2073
β-strand214-220714
α-helix221-2222
β-strand223-227515
α-helix229-2335
α-helix235-2384
β-strand268-271415
β-strand274-2861314
α-helix3071
β-strand321-325514
β-strand335-340614
α-helix348-3514
α-helix353-3542
β-strand356-359414
α-helix373-3808
Chain c: 5 helices, 4 β-strands
ElementResiduesLengthSheet
α-helix10-2011
β-strand22-25412
α-helix27-3610
β-strand41-44412
α-helix50-6314
β-strand66-69412
α-helix74-807
β-strand89-94612
α-helix100-1023
Chain C: 26 helices, 12 β-strands
ElementResiduesLengthSheet
β-strand6-8317
β-strand9118
β-strand10117
β-strand13-20817
α-helix21-233
α-helix24-274
α-helix32-4211
α-helix47-493
β-strand76119
β-strand88119
α-helix98-992
α-helix115-12814
α-helix133-1375
β-strand150-152318
α-helix154-1585
α-helix162-1698
α-helix170-1745
α-helix175-1806
β-strand186-187220
α-helix191-1944
β-strand199-200220
β-strand206-209418
α-helix215-2195
β-strand226-229418
α-helix235-2384
α-helix240-2423
β-strand248-251418
α-helix252-26211
α-helix276-2794
α-helix286-2916
α-helix295-2984
α-helix300-3023
α-helix321-3266
α-helix330-3378
α-helix339-3413
α-helix342-3465
α-helix350-3523
α-helix353-3608
Chain d: 5 helices, 5 β-strands
ElementResiduesLengthSheet
β-strand9-15716
α-helix16-194
α-helix25-273
α-helix28-4417
β-strand49-51316
α-helix53-608
β-strand70-78916
β-strand90-95616
α-helix104-1063
β-strand107-109316

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

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
25S rRNA1RNA3396Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
5.8S rRNA2RNA158Saccharomyces cerevisiae S288c
5S rRNA3RNA121Saccharomyces cerevisiae S288c
rRNA-processing protein CGR15protein120Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P53188 (AlphaFold model)
60S ribosomal protein L2-AAprotein254Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P0CX45 (AlphaFold model)
60S ribosomal protein L3Bprotein387Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P14126 (AlphaFold model)
60S ribosomal protein L4-ACprotein362Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P10664 (AlphaFold model)
60S ribosomal protein L5Dprotein297Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P26321
60S ribosomal protein L6-AEprotein176Saccharomyces cerevisiae (strain ATCC 204508 / S288c)Q02326
60S ribosomal protein L7-AFprotein244Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P05737
60S ribosomal protein L8-AGprotein256Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P17076
60S ribosomal protein L9-AHprotein191Saccharomyces cerevisiae (strain ATCC 204508 / S288c)P05738

38 more molecules are not listed.

Sequence of entity 1 (1), FASTA
>7OH3_1 25S rRNA (chains 1)
GUUUGACCUCAAAUCAGGUAGGAGUACCCGCUGAACUUAAGCAUAUCAAUAAGCGGAGGA
AAAGAAACCAACCGGGAUUGCCUUAGUAACGGCGAGUGAAGCGGCAAAAGCUCAAAUUUG
AAAUCUGGUACCUUCGGUGCCCGAGUUGUAAUUUGGAGAGGGCAACUUUGGGGCCGUUCC
UUGUCUAUGUUCCUUGGAACAGGACGUCAUAGAGGGUGAGAAUCCCGUGUGGCGAGGAGU
GCGGUUCUUUGUAAAGUGCCUUCGAAGAGUCGAGUUGUUUGGGAAUGCAGCUCUAAGUGG
GUGGUAAAUUCCAUCUAAAGCUAAAUAUUGGCGAGAGACCGAUAGCGAACAAGUACAGUG
AUGGAAAGAUGAAAAGAACUUUGAAAAGAGAGUGAAAAAGUACGUGAAAUUGUUGAAAGG
GAAGGGCAUUUGAUCAGACAUGGUGUUUUGUGCCCUCUGCUCCUUGUGGGUAGGGGAAUC
UCGCAUUUCACUGGGCCAGCAUCAGUUUUGGUGGCAGGAUAAAUCCAUAGGAAUGUAGCU
UGCCUCGGUAAGUAUUAUAGCCUGUGGGAAUACUGCCAGCUGGGACUGAGGACUGCGACG
UAAGUCAAGGAUGCUGGCAUAAUGGUUAUAUGCCGCCCGUCUUGAAACACGGACCAAGGA
GUCUAACGUCUAUGCGAGUGUUUGGGUGUAAAACCCAUACGCGUAAUGAAAGUGAACGUA
GGUUGGGGCCUCGCAAGAGGUGCACAAUCGACCGAUCCUGAUGUCUUCGGAUGGAUUUGA
GUAAGAGCAUAGCUGUUGGGACCCGAAAGAUGGUGAACUAUGCCUGAAUAGGGUGAAGCC
AGAGGAAACUCUGGUGGAGGCUCGUAGCGGUUCUGACGUGCAAAUCGAUCGUCGAAUUUG
GGUAUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCUGCCGAAGUUUCCCU
CAGGAUAGCAGAAGCUCGUAUCAGUUUUAUGAGGUAAAGCGAAUGAUUAGAGGUUCCGGG
GUCGAAAUGACCUUGACCUAUUCUCAAACUUUAAAUAUGUAAGAAGUCCUUGUUACUUAA
UUGAACGUGGACAUUUGAAUGAAGAGCUUUUAGUGGGCCAUUUUUGGUAAGCAGAACUGG
CGAUGCGGGAUGAACCGAACGUAGAGUUAAGGUGCCGGAAUACACGCUCAUCAGACACCA
CAAAAGGUGUUAGUUCAUCUAGACAGCCGGACGGUGGCCAUGGAAGUCGGAAUCCGCUAA
GGAGUGUGUAACAACUCACCGGCCGAAUGAACUAGCCCUGAAAAUGGAUGGCGCUCAAGC
GUGUUACCUAUACUCUACCGUCAGGGUUGAUAUGAUGCCCUGACGAGUAGGCAGGCGUGG
AGGUCAGUGACGAAGCCUAGACCGUAAGGUCGGGUCGAACGGCCUCUAGUGCAGAUCUUG
GUGGUAGUAGCAAAUAUUCAAAUGAGAACUUUGAAGACUGAAGUGGGGAAAGGUUCCACG
UCAACAGCAGUUGGACGUGGGUUAGUCGAUCCUAAGAGAUGGGGAAGCUCCGUUUCAAAG
GCCUGAUUUUAUGCAGGCCACCAUCGAAAGGGAAUCCGGUUAAGAUUCCGGAACCUGGAU
AUGGAUUCUUCACGGUAACGUAACUGAAUGUGGAGACGUCGGCGCGAGCCCUGGGAGGAG
UUAUCUUUUCUUCUUAACAGCUUAUCACCCCGGAAUUGGUUUAUCCGGAGAUGGGGUCUU
AUGGCUGGAAGAGGCCAGCACCUUUGCUGGCUCCGGUGCGCUUGUGACGGCCCGUGAAAA
UCCACAGGAAGGAAUAGUUUUCAUGCCAGGUCGUACUGAUAACCGCAGCAGGUCUCCAAG
GUGAACAGCCUCUAGUUGAUAGAAUAAUGUAGAUAAGGGAAGUCGGCAAAAUAGAUCCGU
AACUUCGGGAUAAGGAUUGGCUCUAAGGGUCGGGUAGUGAGGGCCUUGGUCAGACGCAGC
GGGCGUGCUUGUGGACUGCUUGGUGGGGCUUGCUCUGCUAGGCGGACUACUUGCGUGCCU
UGUUGUAGACGGCCUUGGUAGGUCUCUUGUAGACCGUCGCUUGCUACAAUUAACGAUCAA
CUUAGAACUGGUACGGACAAGGGGAAUCUGACUGUCUAAUUAAAACAUAGCAUUGCGAUG
GUCAGAAAGUGAUGUUGACGCAAUGUGAUUUCUGCCCAGUGCUCUGAAUGUCAAAGUGAA
GAAAUUCAACCAAGCGCGGGUAAACGGCGGGAGUAACUAUGACUCUCUUAAGGUAGCCAA
AUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGAUUAACGAGAUUCCCACUGUCCCU
AUCUACUAUCUAGCGAAACCACAGCCAAGGGAACGGGCUUGGCAGAAUCAGCGGGGAAAG
AAGACCCUGUUGAGCUUGACUCUAGUUUGACAUUGUGAAGAGACAUAGAGGGUGUAGAAU
AAGUGGGAGCUUCGGCGCCAGUGAAAUACCACUACCUUUAUAGUUUCUUUACUUAUUCAA
UGAAGCGGAGCUGGAAUUCAUUUUCCACGUUCUAGCAUUCAAGGUCCCAUUCGGGGCUGA
UCCGGGUUGAAGACAUUGUCAGGUGGGGAGUUUGGCUGGGGCGGCACAUCUGUUAAACGA
UAACGCAGAUGUCCUAAGGGGGGCUCAUGGAGAACAGAAAUCUCCAGUAGAACAAAAGGG
UAAAAGCCCCCUUGAUUUUGAUUUUCAGUGUGAAUACAAACCAUGAAAGUGUGGCCUAUC
GAUCCUUUAGUCCCUCGGAAUUUGAGGCUAGAGGUGCCAGAAAAGUUACCACAGGGAUAA
CUGGCUUGUGGCAGUCAAGCGUUCAUAGCGACAUUGCUUUUUGAUUCUUCGAUGUCGGCU
CUUCCUAUCAUACCGAAGCAGAAUUCGGUAAGCGUUGGAUUGUUCACCCACUAAUAGGGA
ACGUGAGCUGGGUUUAGACCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGAAUGUUA
CCGCAAUAGUAAUUGAACUUAGUACGAGAGGAACAGUUCAUUCGGAUAAUUGGUUUUUGC
GGCUGUCUGAUCAGGCAUUGCCGCGAAGCUACCAUCCGCUGGAUUAUGGCUGAACGCCUC
UAAGUCAGAAUCCAUGCUAGAACGCGGUGAUUUCUUUGCUCCACACAAUAUAGAUGGAUA
CGAAUAAGGCGUCCUUGUGGCGUCGCUGAACCAUAGCAGGCUAGCAACGGUGCACUUGGC
GGAAAGGCCUUGGGUGCUUGCUGGCGAAUUGCAAUGUCAUUUUGCGUGGGGAUAAAUCAU
UUGUAUACGACUUAGAUGUACAACGGGGUAUUGUAAGCAGUAGAGUAGCCUUGUUGUUAC
GAUCUGCUGAGAUUAAGCCUUUGUUGUCUGAUUUGU
Sequence of entity 2 (2), FASTA
>7OH3_2 5.8S rRNA (chains 2)
AAACUUUCAACAACGGAUCUCUUGGUUCUCGCAUCGAUGAAGAACGCAGCGAAAUGCGAU
ACGUAAUGUGAAUUGCAGAAUUCCGUGAAUCAUCGAAUCUUUGAACGCACAUUGCGCCCC
UUGGUAUUCCAGGGGGCAUGCCUGUUUGAGCGUCAUUU
Sequence of entity 3 (3), FASTA
>7OH3_3 5S rRNA (chains 3)
GGUUGCGGCCAUAUCUACCAGAAAGCACCGUUUCCCGUCCGAUCAACUGUAGUUAAGCUG
GUAAGAGCCUGACCGAGUAGUGUAGUGGGUGACCAUACGCGAAACUCAGGUGCUGCAAUC
U
Sequence of entity 4 (5), FASTA
>7OH3_4 rRNA-processing protein CGR1 (chains 5)
MVNETGESQKAAKGTPVSGKVWKAEKTPLRAKSRVVKNKKLTSWELKKQKRLEDKQFKER
LKALKDEKEEARQAKITMLKERREKKEENERYERLAAKMHAKKVERMRRREKRNKALKER
Sequence of entity 5 (A), FASTA
>7OH3_5 60S ribosomal protein L2-A (chains A)
MGRVIRNQRKGAGSIFTSHTRLRQGAAKLRTLDYAERHGYIRGIVKQIVHDSGRGAPLAK
VVFRDPYKYRLREEIFIANEGVHTGQFIYAGKKASLNVGNVLPLGSVPEGTIVSNVEEKP
GDRGALARASGNYVIIIGHNPDENKTRVRLPSGAKKVISSDARGVIGVIAGGGRVDKPLL
KAGRAFHKYRLKRNSWPKTRGVAMNPVDHPHGGGNHQHIGKASTISRGAVSGQKAGLIAA
RRTGLLRGSQKTQD
Sequence of entity 6 (B), FASTA
>7OH3_6 60S ribosomal protein L3 (chains B)
MSHRKYEAPRHGHLGFLPRKRAASIRARVKAFPKDDRSKPVALTSFLGYKAGMTTIVRDL
DRPGSKFHKREVVEAVTVVDTPPVVVVGVVGYVETPRGLRSLTTVWAEHLSDEVKRRFYK
NWYKSKKKAFTKYSAKYAQDGAGIERELARIKKYASVVRVLVHTQIRKTPLAQKKAHLAE
IQLNGGSISEKVDWAREHFEKTVAVDSVFEQNEMIDAIAVTKGHGFEGVTHRWGTKKLPR
KTHRGLRKVACIGAWHPAHVMWSVARAGQRGYHSRTSINHKIYRVGKGDDEANGATSFDR
TKKTITPMGGFVHYGEIKNDFIMVKGCIPGNRKRIVTLRKSLYTNTSRKALEEVSLKWID
TASKFGKGRFQTPAEKHAFMGTLKKDL
Sequence of entity 7 (C), FASTA
>7OH3_7 60S ribosomal protein L4-A (chains C)
MSRPQVTVHSLTGEATANALPLPAVFSAPIRPDIVHTVFTSVNKNKRQAYAVSEKAGHQT
SAESWGTGRAVARIPRVGGGGTGRSGQGAFGNMCRGGRMFAPTKTWRKWNVKVNHNEKRY
ATASAIAATAVASLVLARGHRVEKIPEIPLVVSTDLESIQKTKEAVAALKAVGAHSDLLK
VLKSKKLRAGKGKYRNRRWTQRRGPLVVYAEDNGIVKALRNVPGVETANVASLNLLQLAP
GAHLGRFVIWTEAAFTKLDQVWGSETVASSKVGYTLPSHIISTSDVTRIINSSEIQSAIR
PAGQATQKRTHVLKKNPLKNKQVLLRLNPYAKVFAAEKLGSKKAEKTGTKPAAVFTETLK
HD
Sequence of entity 8 (D), FASTA
>7OH3_8 60S ribosomal protein L5 (chains D)
MAFQKDAKSSAYSSRFQTPFRRRREGKTDYYQRKRLVTQHKAKYNTPKYRLVVRFTNKDI
ICQIISSTITGDVVLAAAYSHELPRYGITHGLTNWAAAYATGLLIARRTLQKLGLDETYK
GVEEVEGEYELTEAVEDGPRPFKVFLDIGLQRTTTGARVFGALKGASDGGLYVPHSENRF
PGWDFETEEIDPELLRSYIFGGHVSQYMEELADDDEERFSELFKGYLADDIDADSLEDIY
TSAHEAIRADPAFKPTEKKFTKEQYAAESKKYRQTKLSKEERAARVAAKIAALAGQQ
Sequence of entity 9 (E), FASTA
>7OH3_9 60S ribosomal protein L6-A (chains E)
MSAQKAPKWYPSEDVAALKKTRKAARPQKLRASLVPGTVLILLAGRFRGKRVVYLKHLED
NTLLISGPFKVNGVPLRRVNARYVIATSTKVSVEGVNVEKFNVEYFAKEKLTKKEKKEAN
LFPEQQNKEIKAERVEDQKVVDKALIAEIKKTPLLKQYLSASFSLKNGDKPHMLKF
Sequence of entity 10 (F), FASTA
>7OH3_10 60S ribosomal protein L7-A (chains F)
MAAEKILTPESQLKKSKAQQKTAEQVAAERAARKAANKEKRAIILERNAAYQKEYETAER
NIIQAKRDAKAAGSYYVEAQHKLVFVVRIKGINKIPPKPRKVLQLLRLTRINSGTFVKVT
KATLELLKLIEPYVAYGYPSYSTIRQLVYKRGFGKINKQRVPLSDNAIIEANLGKYGILS
IDDLIHEIITVGPHFKQANNFLWPFKLSNPSGGWGVPRKFKHFIQGGSFGNREEFINKLV
KSMN
Sequence of entity 11 (G), FASTA
>7OH3_11 60S ribosomal protein L8-A (chains G)
MAPGKKVAPAPFGAKSTKSNKTRNPLTHSTPKNFGIGQAVQPKRNLSRYVKWPEYVRVQR
QKKILSIRLKVPPTIAQFQYTLDRNTAAETFKLFNKYRPETAAEKKERLTKEAAAVAEGK
SKQDASPKPYAVKYGLNHVVALIENKKAKLVLIANDVDPIELVVFLPALCKKMGVPYAIV
KGKARLGTLVNQKTSAVAALTEVRAEDEAALAKLVSTIDANFADKYDEVKKHWGGGILGN
KAQAKMDKRAKNSDSA
Sequence of entity 12 (H), FASTA
>7OH3_12 60S ribosomal protein L9-A (chains H)
MKYIQTEQQIEVPEGVTVSIKSRIVKVVGPRGTLTKNLKHIDVTFTKVNNQLIKVAVHNG
GRKHVAALRTVKSLVDNMITGVTKGYKYKMRYVYAHFPINVNIVEKDGAKFIEVRNFLGD
KKIRNVPVRDGVTIEFSTNVKDEIVLSGNSVEDVSQNAADLQQICRVRNKDIRKFLDGIY
VSHKGFITEDL

Ligands and cofactors

IDNameFormulaCopies
ZNZinc ionZn3
MGMagnesium ionMg2

Primary citation

Analysis of subunit folding contribution of three yeast large ribosomal subunit proteins required for stabilisation and processing of intermediate nuclear rRNA precursors. Poll, G., Pilsl, M., Griesenbeck, J. et al. PLoS One (2021) 16:e0252497-e0252497. DOI 10.1371/journal.pone.0252497 · PubMed

Other PDB entries of the same protein (UniProt P53188 (AlphaFold model), which also has an AlphaFold model), best resolution first:

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