8FKW: Human nucleolar pre-60S ribosomal subunit

Human nucleolar pre-60S ribosomal subunit (State D2). Determined by electron microscopy at 2.5 Å resolution. Released 12 Jul 2023.

Method
Electron microscopy
Resolution
2.5 Å
Organism
Homo sapiens
Chains
53
Atoms
139,783
Mol. weight
3886.1 kDa
Ligands
MG, ZN, ADP, GDP
Released
12 Jul 2023

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

Secondary structure: helices and β-sheets

8FKW contains 580 α-helices and 408 β-strands across 50 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 BA: 7 helices, 6 β-strands

ElementResiduesLengthSheet
β-strand11-1881
α-helix25-3511
α-helix39-5012
β-strand57-6591
β-strand68-7471
α-helix77-859
α-helix87-893
β-strand103-10422
α-helix106-11510
α-helix125-13915
β-strand142-14322
β-strand14612
α-helix148-15710
Chain BB: 13 helices, 10 β-strands
ElementResiduesLengthSheet
α-helix7-2317
β-strand31-3883
α-helix47-493
β-strand50-5454
β-strand65-6845
α-helix71-8010
β-strand84-8525
α-helix87-948
α-helix97-10610
β-strand109-11355
α-helix114-1163
α-helix120-1234
α-helix125-1317
α-helix134-1352
β-strand136-13835
α-helix144-15310
β-strand154-15854
β-strand164-17183
α-helix176-19318
α-helix197-2004
β-strand201-20773
α-helix212-2132
β-strand214-21523
Chain L6: 4 helices, 9 β-strands
ElementResiduesLengthSheet
β-strand22-24318
α-helix28-4619
β-strand55119
β-strand58-60320
β-strand70-72320
β-strand76121
α-helix78-847
α-helix88-947
β-strand96119
β-strand98121
β-strand106122
α-helix107-12216
β-strand124-126323
Chain L7: 11 helices, 10 β-strands
ElementResiduesLengthSheet
β-strand7-10427
β-strand14128
β-strand15129
α-helix16-2813
β-strand33-36427
α-helix38-403
β-strand42-44329
α-helix47-5913
α-helix76-8611
α-helix93-1019
β-strand102-104327
α-helix112-1143
β-strand118127
β-strand119130
α-helix121-1233
β-strand124128
α-helix125-1284
β-strand135-137329
α-helix138-1458
α-helix150-18435
α-helix186-19813
Chain L8: 4 helices, 6 β-strands
ElementResiduesLengthSheet
β-strand7135
β-strand11-15536
β-strand24-30736
β-strand35-40636
β-strand45-51736
β-strand55-61736
α-helix70-8011
α-helix82-887
α-helix90-10213
α-helix106-13530
Chain L9: 11 helices, 5 β-strands
ElementResiduesLengthSheet
α-helix3-1210
α-helix17-3216
β-strand36-39440
α-helix45-506
β-strand59-67940
α-helix98-10912
β-strand114-1231040
β-strand127-135940
α-helix140-1434
α-helix146-1527
α-helix154-1563
α-helix160-1623
α-helix166-1727
α-helix178-1836
α-helix188-1969
β-strand198-200318
Chain LA: 5 helices, 8 β-strands
ElementResiduesLengthSheet
α-helix11-133
β-strand14-22942
α-helix26-3611
β-strand40142
α-helix41-5313
β-strand58-59243
β-strand69144
α-helix72-765
β-strand80144
β-strand81-82243
α-helix85-10521
β-strand112-1211042
β-strand144-152942
Chain LB: 6 helices, 5 β-strands
ElementResiduesLengthSheet
α-helix23-3816
α-helix42-5211
β-strand61-62249
α-helix63-719
β-strand79-87949
β-strand99-105749
α-helix107-1159
β-strand119-121349
α-helix123-1297
β-strand136-138349
α-helix148-1514

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

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
60S ribosomal protein L12BAprotein165Homo sapiensP30050 (AlphaFold model)
60S ribosomal protein L10aBBprotein217Homo sapiensP62906 (AlphaFold model)
5.8S rRNAL1RNA157Homo sapiens
ITS2 rRNAL2RNA1167Homo sapiens
28S rRNAL3RNA5070Homo sapiens
60S ribosomal protein L13L6protein211Homo sapiensP26373 (AlphaFold model)
60S ribosomal protein L13aL7protein203Homo sapiensP40429 (AlphaFold model)
60S ribosomal protein L14L8protein215Homo sapiensP50914
60S ribosomal protein L15L9protein204Homo sapiensP61313
60S ribosomal protein L17LAprotein184Homo sapiensP18621
60S ribosomal protein L18LBprotein188Homo sapiensQ07020
60S ribosomal protein L18aLCprotein176Homo sapiensQ02543

41 more molecules are not listed.

Sequence of entity 1 (BA), FASTA
>8FKW_1 60S ribosomal protein L12 (chains BA)
MPPKFDPNEIKVVYLRCTGGEVGATSALAPKIGPLGLSPKKVGDDIAKATGDWKGLRITV
KLTIQNRQAQIEVVPSASALIIKALKEPPRDRKKQKNIKHSGNITFDEIVNIARQMRHRS
LARELSGTIKEILGTAQSVGCNVDGRHPHDIIDDINSGAVECPAS
Sequence of entity 2 (BB), FASTA
>8FKW_2 60S ribosomal protein L10a (chains BB)
MSSKVSRDTLYEAVREVLHGNQRKRRKFLETVELQISLKNYDPQKDKRFSGTVRLKSTPR
PKFSVCVLGDQQHCDEAKAVDIPHMDIEALKKLNKNKKLVKKLAKKYDAFLASESLIKQI
PRILGPGLNKAGKFPSLLTHNENMVAKVDEVKSTIKFQMKKVLCLAVAVGHVKMTDDELV
YNIHLAVNFLVSLLKKNWQNVRALYIKSTMGKPQRLY
Sequence of entity 3 (L1), FASTA
>8FKW_3 5.8S rRNA (chains L1)
CGACUCUUAGCGGUGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAG
AAUUAAUGUGAAUUGCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCG
GGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCUU
Sequence of entity 4 (L2), FASTA
>8FKW_4 ITS2 rRNA (chains L2)
GCCGAUCAAUCGCCCCCGGGGGUGCCUCCGGGCUCCUCGGGGUGCGCGGCUGGGGGUUCC
CUCGCAGGGCCCGCCGGGGGCCCUCCGUCCCCCUAAGCGCAGACCCGGCGGCGUCCGCCC
UCCUCUUGCCGCCGCGCCCGCCCCUUCCCCCUCCCCCCGCGGGCCCUGCGUGGUCACGCG
UCGGGUGGCGGGGGGGAGAGGGGGGCGCGCCCGGCUGAGAGAGACGGGGAGGGCGGCGCC
GCCGCCGCCCGCGAAGACGGAGAGGGAAAGAGAGAGCCGGCUCGGGCCGAGUUCCCGUGG
CCGCCGCCUGCGGUCCGGGUUCCUCCCUCGGGGGGCUCCCUCGCGCCGCGCGCGGCUCGG
GGUUCGGGGUUCGUCGGCCCCGGCCGGGUGGAAGGUCCCGUGCCCGUCGUCGUCGUCGUC
GUCGCGCGUCGUCGGCGGUGGGGGCGUGUUGCGUGCGGUGUGGUGGUGGGGGAGGAGGAA
GGCGGGUCCGGAAGGGGAAGGGUGCCGGCGGGGAGAGAGGGUCGGGGGAGCGCGUCCCGG
UCGCCGCGGUUCGCCGCCCGCCCCCGGUGGCGGCCCGGCGUCCGGCCGACCGCCGCUCCC
GCGCCCCUCCUCCUCCCCGCCGCCCCUCCUCCGAGGCCCCGCCCGUCCUCCUCGCCCUCC
CCGCGCGUACGCGCGCCCGCCCGCCCGGCUCGCCUCGCGGCGCGUCGGCCGGGGCCGGGA
GCCCGCCCCGCGGCCCGCCCGGCCGCGCCCGUGGCCGCGGCGCCGGGGUUCGCGUGUCCC
CGGCGGCGACCCGCGGGACGCCGCGGUGUCGUCCGCCGUCGCGCGCCCGCCUCCGGCUCG
CGGCCGCGCCGCGCCGCGCCGGGGCCCCGUCCCGAGCUUCCGCGUCGGGGCGGGGCGGCU
CCGCCGCCGCGUCCUCGGACCCGUCCCCCCGACCUCCGCGGGGGAGACGGGUCGGGGCGU
GCGGCGCCCGUCCCGCCCCCGGCCCGUGCCCCUCCCUCCGGUCGUCCCGCUCCGGCGGGG
CGGCGCGGGGGUGCCGCCGGCCGCGCGCUCUCUCUCCCGUCGCCUCUCCCCCUCGCCGGG
CCCGUCUCCCGACGGAGCGUCGGGCGGGCGGUCGGGCCGGCGCGAUUCCGUCCGUCCGUC
CGCCGAGCGGCCCGUCCCCCUCCGAGA
Sequence of entity 5 (L3), FASTA
>8FKW_5 28S rRNA (chains L3)
CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAG
AAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGA
AUCCCCGCCCCGCGGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGC
CGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCG
GUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCA
GCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAA
CAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAA
CCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGC
GGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUUCCUCCCGACCCCU
CCACCCGCCCUCCCUUCCCCCGCCGCCCCUCCUCCUCCUCCCCGGAGGGGGCGGGCUCCG
GCGGGUGCGGGGGUGGGCGGGCGGGGCCGGGGGUGGGGUCGGCGGGGGACCGUCCCCCGA
CCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCGCGACCGGCUCCG
GGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGGGGGCCCCGUCCGUCCGUCCGUC
CGUCCUCCUCCUCCCCCGUCUCCGCCCCCCGGCCCCGCGUCCUCCCUCGGGAGGGCGCGC
GGGUCGGGGCGGCGGCGGCGGCGGCGGUGGCGGCGGCGGCGGCGGCGGCGGGACCGAAAC
CCCCCCCGAGUGUUACAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGA
GCGAGACCCGUCGCCGCGCUCUCCCCCCUCCCGGCGCCCACCCCCGCGGGGAAUCCCCCG
CGAGGGGGGUCUCCCCCGCGGGGGCGCGCCGGCGUCUCCUCGUGGGGGGGCCGGGCCACC
CCUCCCACGGCGCGACCGCUCUCCCACCCCUCCUCCCCGCGCCCCCGCCCCGGCGACGGG
GGGGGUGCCGCGCGCGGGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGG
UCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGG
GGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUU
GAAACACGGACCAAGGAGUCUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCG
UGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCU
CCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCA
CGAGCGCACGUGUUAGGACCCGAAAGAUGGUGAACUAUGCCUGGGCAGGGCGAAGCCAGA
GGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGU
AUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAG
GAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGC
GAAUGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGU
AAGAAGCCCGGCUCGCUGGCGUGGAGCCGGGCGUGGAAUGCGAGUGCCUAGUGGGCCACU
UUUGGUAAGCAGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGC
CGACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAU
GGAAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGA
AAAUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGA
CGGGAGCGGCGGGGGCGGCGCGCGCGCGCGCGCGUGUGGUGUGCGUCGGAGGGCGGCGGC
GGCGGCGGCGGCGGGGGUGUGGGGUCCUUCCCCCGCCCCCCCCCCCACGCCUCCUCCCCU
CCUCCCGCCCACGCCCCGCUCCCCGCCCCCGGAGCCCCGCGGACGCUACGCCGCGACGAG
UAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAGCCGCCGC
AGGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAACGAGAACUUUGAAGGCCGAAGUGG
AGAAGGGUUCCAUGUGAACAGCAGUUGAACAUGGGUCAGUCGGUCCUGAGAGAUGGGCGA
GCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAAGGGAGUC
GGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCAGUGCGGU
AACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUUCUUUGUG
AAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUGGAAAGCG
UCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGGGAGAGGG
UGUAAAUCUCGCGCCGGGCCGUACCCAUAUCCGCAGCAGGUCUCCAAGGUGAACAGCCUC
UGGCAUGUUGGAACAAUGUAGGUAAGGGAAGUCGGCAAGCCGGAUCCGUAACUUCGGGAU
AAGGAUUGGCUCUAAGGGCUGGGUCGGUCGGGCUGGGGCGCGAAGCGGGGCUGGGCGCGC
GCCGCGGCUGGACGAGGCGCCGCCGCCCCCCCCACGCCCGGGGCACCCCCCUCGCGGCCC
UCCCCCGCCCCACCCCGCGCGCGCCGCUCGCUCCCUCCCCGCCCCGCGCCCUCUCUCUCU
CUCUCUCCCCCGCUCCCCGUCCUCCCCCCUCCCCGGGGGAGCGCCGCGUGGGGGCGGCGG
CGGGGGGAGAAGGGUCGGGGCGGCAGGGGCCGGCGGCGGCCCGCCGCGGGGCCCCGGCGG
CGGGGGCACGGUCCCCCGCGAGGGGGGCCCGGGCACCCGGGGGGCCGGCGGCGGCGGCGA
CUCUGGACGCGAGCCGGGCCCUUCCCGUGGAUCGCCCCAGCUGCGGCGGGCGUCGCGGCC
GCCCCCGGGGAGCCCGGCGGGCGCCGGCGCGCCCCCCCCCCCACCCCACGUCUCGUCGCG
CGCGCGUCCGCUGGGGGCGGGGAGCGGUCGGGCGGCGGCGGUCGGCGGGCGGCGGGGCGG
GGCGGUUCGUCCCCCCGCCCUACCCCCCCGGCCCCGUCCGCCCCCCGUUCCCCCCUCCUC
CUCGGCGCGCGGCGGCGGCGGCGGCAGGCGGCGGAGGGGCCGCGGGCCGGUCCCCCCCGC
CGGGUCCGCCCCCGGGGCCGCGGUUCCGCGCGGCGCCUCGCCUCGGCCGGCGCCUAGCAG
CCGACUUAGAACUGGUGCGGACCAGGGGAAUCCGACUGUUUAAUUAAAACAAAGCAUCGC
GAAGGCCCGCGGCGGGUGUUGACGCGAUGUGAUUUCUGCCCAGUGCUCUGAAUGUCAAAG
UGAAGAAAUUCAAUGAAGCGCGGGUAAACGGCGGGAGUAACUAUGACUCUCUUAAGGUAG
CCAAAUGCCUCGUCAUCUAAUUAGUGACGCGCAUGAAUGGAUGAACGAGAUUCCCACUGU
CCCUACCUACUAUCCAGCGAAACCACAGCCAAGGGAACGGGCUUGGCGGAAUCAGCGGGG
AAAGAAGACCCUGUUGAGCUUGACUCUAGUCUGGCACGGUGAAGAGACAUGAGAGGUGUA
GAAUAAGUGGGAGGCCCCCGGCGCCCCCCCGGUGUCCCCGCGAGGGGCCCGGGGCGGGGU
CCGCCGGCCCUGCGGGCCGCCGGUGAAAUACCACUACUCUGAUCGUUUUUUCACUGACCC
GGUGAGGCGGGGGGGCGAGCCCCGAGGGGCUCUCGCUUCUGGCGCCAAGCGCCCGGCCGC
GCGCCGGCCGGGCGCGACCCGCUCCGGGGACAGUGCCAGGUGGGGAGUUUGACUGGGGCG
GUACACCUGUCAAACGGUAACGCAGGUGUCCUAAGGCGAGCUCAGGGAGGACAGAAACCU
CCCGUGGAGCAGAAGGGCAAAAGCUCGCUUGAUCUUGAUUUUCAGUACGAAUACAGACCG
UGAAAGCGGGGCCUCACGAUCCUUCUGACCUUUUGGGUUUUAAGCAGGAGGUGUCAGAAA
AGUUACCACAGGGAUAACUGGCUUGUGGCGGCCAAGCGUUCAUAGCGACGUCGCUUUUUG
AUCCUUCGAUGUCGGCUCUUCCUAUCAUUGUGAAGCAGAAUUCACCAAGCGUUGGAUUGU
UCACCCACUAAUAGGGAACGUGAGCUGGGUUUAGACCGUCGUGAGACAGGUUAGUUUUAC
CCUACUGAUGAUGUGUUGUUGCCAUGGUAAUCCUGCUCAGUACGAGAGGAACCGCAGGUU
CAGACAUUUGGUGUAUGUGCUUGGCUGAGGAGCCAAUGGGGCGAAGCUACCAUCUGUGGG
AUUAUGACUGAACGCCUCUAAGUCAGAAUCCCGCCCAGGCGGAACGAUACGGCAGCGCCG
CGGAGCCUCGGUUGGCCUCGGAUAGCCGGUCCCCCGCCUGUCCCCGCCGGCGGGCCGCCC
CCCCCCUCCACGCGCCCCGCGCGCGCGGGAGGGCGCGUGCCCCGCCGCGCGCCGGGACCG
GGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGGCCGGAGAGGCGGCCGC
CCCCUCGCCCGUCACGCACCGCACGUUCGUGGGGAACCUGGCGCUAAACCAUUCGUAGAC
GACCUGCUUCUGGGUCGGGG
Sequence of entity 6 (L6), FASTA
>8FKW_6 60S ribosomal protein L13 (chains L6)
MAPSRNGMVLKPHFHKDWQRRVATWFNQPARKIRRRKARQAKARRIAPRPASGPIRPIVR
CPTVRYHTKVRAGRGFSLEELRVAGIHKKVARTIGISVDPRRRNKSTESLQANVQRLKEY
RSKLILFPRKPSAPKKGDSSAEELKLATQLTGPVMPVRNVYKKEKARVITEEEKNFKAFA
SLRMARANARLFGIRAKRAKEAAEQDVEKKK
Sequence of entity 7 (L7), FASTA
>8FKW_7 60S ribosomal protein L13a (chains L7)
MAEVQVLVLDGRGHLLGRLAAIVAKQVLLGRKVVVVRCEGINISGNFYRNKLKYLAFLRK
RMNTNPSRGPYHFRAPSRIFWRTVRGMLPHKTKRGQAALDRLKVFDGIPPPYDKKKRMVV
PAALKVVRLKPTRKFAYLGRLAHEVGWKYQAVTATLEEKRKEKAKIHYRKKKQLMRLRKQ
AEKNVEKKIDKYTEVLKTHGLLV
Sequence of entity 8 (L8), FASTA
>8FKW_8 60S ribosomal protein L14 (chains L8)
MVFRRFVEVGRVAYVSFGPHAGKLVAIVDVIDQNRALVDGPCTQVRRQAMPFKCMQLTDF
ILKFPHSAHQKYVRQAWQKADINTKWAATRWAKKIEARERKAKMTDFDRFKVMKAKKMRN
RIIKNEVKKLQKAALLKASPKKAPGTKGTAAAAAAAAAAKVPAKKITAASKKAPAQKVPA
QKATGQKAAPAPKAQKGQKAPAQKAPAPKASGKKA
Sequence of entity 9 (L9), FASTA
>8FKW_9 60S ribosomal protein L15 (chains L9)
MGAYKYIQELWRKKQSDVMRFLLRVRCWQYRQLSALHRAPRPTRPDKARRLGYKAKQGYV
IYRIRVRRGGRKRPVPKGATYGKPVHHGVNQLKFARSLQSVAEERAGRHCGALRVLNSYW
VGEDSTYKFFEVILIDPFHKAIRRNPDTQWITKPVHKHREMRGLTSAGRKSRGLGKGHKF
HHTIGGSRRAAWRRRNTLQLHRYR
Sequence of entity 10 (LA), FASTA
>8FKW_10 60S ribosomal protein L17 (chains LA)
MVRYSLDPENPTKSCKSRGSNLRVHFKNTRETAQAIKGMHIRKATKYLKDVTLQKQCVPF
RRYNGGVGRCAQAKQWGWTQGRWPKKSAEFLLHMLKNAESNAELKGLDVDSLVIEHIQVN
KAPKMRRRTYRAHGRINPYMSSPCHIEMILTEKEQIVPKPEEEVAQKKKISQKKLKKQKL
MARE
Sequence of entity 11 (LB), FASTA
>8FKW_11 60S ribosomal protein L18 (chains LB)
MGVDIRHNKDRKVRRKEPKSQDIYLRLLVKLYRFLARRTNSTFNQVVLKRLFMSRTNRPP
LSLSRMIRKMKLPGRENKTAVVVGTITDDVRVQEVPKLKVCALRVTSRARSRILRAGGKI
LTFDQLALDSPKGCGTVLLSGPRKGREVYRHFGKAPGTPHSHTKPYVRSKGRKFERARGR
RASRGYKN
Sequence of entity 12 (LC), FASTA
>8FKW_12 60S ribosomal protein L18a (chains LC)
MKASGTLREYKVVGRCLPTPKCHTPPLYRMRIFAPNHVVAKSRFWYFVSQLKKMKKSSGE
IVYCGQVFEKSPLRVKNFGIWLRYDSRSGTHNMYREYRDLTTAGAVTQCYRDMGARHRAR
AHSIQIMKVEEIAASKCRRPAVKQFHDSKIKFPLPHRVLRRQHKPRFTTKRPNTFF

Ligands and cofactors

IDNameFormulaCopies
MGMagnesium ionMg59
ZNZinc ionZn2
ADPAdenosine-5'-diphosphateC10 H15 N5 O10 P21
GDPGuanosine-5'-diphosphateC10 H15 N5 O11 P21

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

Primary citation

Principles of human pre-60 S biogenesis. Vanden Broeck, A., Klinge, S. Science (2023) 381:eadh3892-eadh3892. DOI 10.1126/science.adh3892 · PubMed

Other PDB entries of the same protein (UniProt P30050 (AlphaFold model), which also has an AlphaFold model), best resolution first:

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