7A01: Uncharacterized protein
The Halastavi arva virus intergenic region IRES promotes translation by the simplest possible initiation mechanism. Determined by electron microscopy at 3.6 Å resolution. Released 30 Dec 2020.
- Method
- Electron microscopy
- Resolution
- 3.6 Å
- Organisms
- Halastavi arva RNA virus, Oryctolagus cuniculus
- Chains
- 85
- Atoms
- 224,880
- Mol. weight
- 3332.09 kDa
- Ligands
- ZN
- Released
- 30 Dec 2020
Explore 7A01 in 3D
Show helices and sheets
RCSB PDB
PDBe
Secondary structure: helices and β-sheets
7A01 contains 459 α-helices and 527 β-strands across 80 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 02: 4 helices, 5 β-strands
| Element | Residues | Length | Sheet |
|---|
| β-strand | 11-15 | 5 | 107 |
| β-strand | 24-30 | 7 | 107 |
| β-strand | 35-40 | 6 | 107 |
| β-strand | 45-51 | 7 | 107 |
| β-strand | 55-61 | 7 | 107 |
| α-helix | 70-80 | 11 | |
| α-helix | 82-88 | 7 | |
| α-helix | 90-102 | 13 | |
| α-helix | 106-137 | 32 | |
Chain 12: 12 helices, 4 β-strands
| Element | Residues | Length | Sheet |
|---|
| α-helix | 3-12 | 10 | |
| α-helix | 18-27 | 10 | |
| α-helix | 29-32 | 4 | |
| β-strand | 36-39 | 4 | 115 |
| α-helix | 45-51 | 7 | |
| β-strand | 59-66 | 8 | 115 |
| α-helix | 76-78 | 3 | |
| α-helix | 98-109 | 12 | |
| β-strand | 114-120 | 7 | 115 |
| β-strand | 128-135 | 8 | 115 |
| α-helix | 140-143 | 4 | |
| α-helix | 146-148 | 3 | |
| α-helix | 154-156 | 3 | |
| α-helix | 159-162 | 4 | |
| α-helix | 170-172 | 3 | |
| α-helix | 190-193 | 4 | |
Chain 13: 4 helices, 4 β-strands
| Element | Residues | Length | Sheet |
|---|
| α-helix | 14-23 | 10 | |
| β-strand | 26-29 | 4 | 172 |
| α-helix | 32-39 | 8 | |
| β-strand | 45-48 | 4 | 172 |
| α-helix | 54-67 | 14 | |
| β-strand | 70-73 | 4 | 172 |
| α-helix | 78-85 | 8 | |
| β-strand | 93-98 | 6 | 172 |
Chain 22: 5 helices, 7 β-strands
| Element | Residues | Length | Sheet |
|---|
| β-strand | 9 | 1 | 122 |
| β-strand | 10-13 | 4 | 123 |
| α-helix | 16-18 | 3 | |
| β-strand | 22-29 | 8 | 123 |
| β-strand | 40-48 | 9 | 123 |
| α-helix | 49-52 | 4 | |
| α-helix | 59-65 | 7 | |
| β-strand | 69-76 | 8 | 123 |
| α-helix | 77-79 | 3 | |
| β-strand | 80-81 | 2 | 123 |
| β-strand | 86 | 1 | 122 |
| α-helix | 104-122 | 19 | |
Chain 32: 10 helices, 2 β-strands
| Element | Residues | Length | Sheet |
|---|
| α-helix | 5-15 | 11 | |
| β-strand | 22-24 | 3 | 130 |
| α-helix | 29-33 | 5 | |
| α-helix | 38-47 | 10 | |
| β-strand | 50-52 | 3 | 130 |
| α-helix | 53-57 | 5 | |
| α-helix | 61-72 | 12 | |
| α-helix | 78-80 | 3 | |
| α-helix | 85-88 | 4 | |
| α-helix | 91-112 | 22 | |
| α-helix | 117-123 | 7 | |
| α-helix | 135-180 | 46 | |
Chain 42: 6 helices, 7 β-strands
| Element | Residues | Length | Sheet |
|---|
| β-strand | 32 | 1 | 138 |
| β-strand | 33-35 | 3 | 139 |
| β-strand | 52-54 | 3 | 140 |
| α-helix | 73-80 | 8 | |
| α-helix | 120-123 | 4 | |
| α-helix | 128-131 | 4 | |
| α-helix | 148-151 | 4 | |
| β-strand | 154-156 | 3 | 140 |
| β-strand | 170 | 1 | 138 |
| α-helix | 176-194 | 19 | |
| α-helix | 204 | 1 | |
| β-strand | 205-207 | 3 | 139 |
| β-strand | 214-215 | 2 | 139 |
Chain 52: 15 helices, 22 β-strands
| Element | Residues | Length | Sheet |
|---|
| α-helix | 9-10 | 2 | |
| α-helix | 14-16 | 3 | |
| α-helix | 33-35 | 3 | |
| β-strand | 42 | 1 | 141 |
| β-strand | 45-46 | 2 | 142 |
| β-strand | 49-59 | 11 | 143 |
| β-strand | 71-80 | 10 | 143 |
| α-helix | 82-83 | 2 | |
| β-strand | 84-95 | 12 | 144 |
| β-strand | 98-106 | 9 | 144 |
| α-helix | 112-115 | 4 | |
| α-helix | 116-118 | 3 | |
| α-helix | 135-138 | 4 | |
| α-helix | 140-155 | 16 | |
| β-strand | 159-165 | 7 | 144 |
| α-helix | 168-170 | 3 | |
| α-helix | 178-179 | 2 | |
| β-strand | 180-184 | 5 | 144 |
| β-strand | 186 | 1 | 141 |
| α-helix | 190-199 | 10 | |
| β-strand | 204-205 | 2 | 144 |
| β-strand | 217-222 | 6 | 142 |
| β-strand | 225 | 1 | 145 |
| α-helix | 238-241 | 4 | |
| β-strand | 273 | 1 | 145 |
| β-strand | 276-282 | 7 | 142 |
| β-strand | 284-288 | 5 | 143 |
| β-strand | 292-293 | 2 | 146 |
| β-strand | 297-298 | 2 | 146 |
| α-helix | 316 | 1 | |
| β-strand | 320 | 1 | 147 |
| β-strand | 324 | 1 | 147 |
| β-strand | 330-334 | 5 | 143 |
| β-strand | 346-348 | 3 | 142 |
| α-helix | 357-360 | 4 | |
| β-strand | 365-368 | 4 | 143 |
| α-helix | 382-389 | 8 | |
Chain 62: 5 helices, 7 β-strands
| Element | Residues | Length | Sheet |
|---|
| β-strand | 9-16 | 8 | 154 |
| β-strand | 28-33 | 6 | 154 |
| α-helix | 37-51 | 15 | |
| α-helix | 56-58 | 3 | |
| β-strand | 59-66 | 8 | 154 |
| α-helix | 68-69 | 2 | |
| β-strand | 76-85 | 10 | 155 |
| β-strand | 90-99 | 10 | 155 |
| α-helix | 102-116 | 15 | |
| β-strand | 124-131 | 8 | 155 |
| α-helix | 140-143 | 4 | |
| β-strand | 168 | 1 | 114 |
72 more chain groups are not listed. Open the entry in the viewer and use the sequence panel to see them.
Molecules and chains
| Molecule | Chains | Type | Length | Organism | UniProt |
|---|
| Internal ribosome entry site | E1 | RNA | 153 | Halastavi arva RNA virus | |
| 28S ribosomal RNA | e2 | RNA | 3825 | Oryctolagus cuniculus | |
| 5.8S ribosomal RNA | h2 | RNA | 156 | Oryctolagus cuniculus | |
| 5S ribosomal RNA | d2 | RNA | 120 | Oryctolagus cuniculus | |
| Uncharacterized protein | p2 | protein | 69 | Oryctolagus cuniculus | G1U001 (AlphaFold model) |
| eL14 | k2 | protein | 131 | Oryctolagus cuniculus | G1T6D1 (AlphaFold model) |
| Ribosomal protein L24 | l2 | protein | 63 | Oryctolagus cuniculus | G1SE28 (AlphaFold model) |
| Uncharacterized protein | m2 | protein | 119 | Oryctolagus cuniculus | G1SE76 (AlphaFold model) |
| Ribosomal protein L26 | o2 | protein | 134 | Oryctolagus cuniculus | G1SQH0 |
| uL15 | q2 | protein | 147 | Oryctolagus cuniculus | G1SNY0 |
| 60S ribosomal protein L29 | r2 | protein | 75 | Oryctolagus cuniculus | G1SGR6 |
| uL4 | t2 | protein | 362 | Oryctolagus cuniculus | G1SVW5 |
73 more molecules are not listed.
Sequence of entity 1 (E1), FASTA
>7A01_1 INTERNAL RIBOSOME ENTRY SITE (chains E1)
AAAACAUGUGAUCUUAUCACUUUUAUAGUUUAUGAAAUCUUUAUUAUUGUUAUUGCUAUG
UUUUAAAUUUCUUUUUCAAAAUUCAUCCUGUUCCAGCAAUGGUUUUAAAGGAACUUGUAU
AUGAAAACCGCCACUAUUACAUCAACAACAUCA
Sequence of entity 2 (e2), FASTA
>7A01_2 28S RIBOSOMAL RNA (chains e2)
CGCGACCUCAGAUCAGACGUGGCGACCCGCUGAAUUUAAGCAUAUUAGUCAGCGGAGGAG
AAGAAACUAACCAGGAUUCCCUCAGUAACGGCGAGUGAACAGGGAAGAGCCCAGCGCCGA
AUCCCCGCCCCGCGGCGGGGCGCGGGACAUGUGGCGUACGGAAGACCCGCUCCCCGGCGC
CGCUCGUGGGGGGCCCAAGUCCUUCUGAUCGAGGCCCAGCCCGUGGACGGUGUGAGGCCG
GUAGCGGCCCCCGGCGCGCCGGGCCCGGGUCUUCCCGGAGUCGGGUUGCUUGGGAAUGCA
GCCCAAAGCGGGUGGUAAACUCCAUCUAAGGCUAAAUACCGGCACGAGACCGAUAGUCAA
CAAGUACCGUAAGGGAAAGUUGAAAAGAACUUUGAAGAGAGAGUUCAAGAGGGCGUGAAA
CCGUUAAGAGGUAAACGGGUGGGGUCCGCGCAGUCCGCCCGGAGGAUUCAACCCGGCGGC
GGGUCCGGCCGUGUCGGCGGCCCGGCGGAUCUUUCCCGCCCCCCGUGGGGUCGGCGGGGG
ACCGUCCCCCGACCGGCGACCGGCCGCCGCCGGGCGCAUUUCCACCGCGGCGGUGCGCCG
CGACCGGCUCCGGGACGGCUGGGAAGGCCCGGCGGGGAAGGUGGCUCGGCCCGAGUGUUA
CAGCCCCCCCGGCAGCAGCACUCGCCGAAUCCCGGGGCCGAGGGAGCGAGACCCGUCGCC
GCGCUCUCCCCCCUCGGCGUCUCCUCGUGGGGGGGCCGGGCCACCCCUCCCACGGCGCGA
CCGCUCUCCCACCCCUCGUCGGGGGGCGGGGCGGACUGUCCCCAGUGCGCCCCGGGCGGG
UCGCGCCGUCGGGCCCGGGGGAGGUUCUCUCGGGGCCACGCGCGCGUCCCCCGAAGAGGG
GGACGGCGGAGCGAGCGCACGGGGUCGGCGGCGACGUCGGCUACCCACCCGACCCGUCUU
GAAACACGGACCAAGGAGUCUAACACGUGCGCGAGUCGGGGGCUCGCACGAAAGCCGCCG
UGGCGCAAUGAAGGUGAAGGCCGGCGCGCUCGCCGGCCGAGGUGGGAUCCCGAGGCCUCU
CCAGUCCGCCGAGGGCGCACCACCGGCCCGUCUCGCCCGCCGCGCCGGGGAGGUGGAGCA
CGAGCGCACGUGUUAGGACCCGAAAGAUGGUGAACUAUGCCUGGGCAGGGCGAAGCCAGA
GGAAACUCUGGUGGAGGUCCGUAGCGGUCCUGACGUGCAAAUCGGUCGUCCGACCUGGGU
AUAGGGGCGAAAGACUAAUCGAACCAUCUAGUAGCUGGUUCCCUCCGAAGUUUCCCUCAG
GAUAGCUGGCGCUCUCGCAGACCCGACGCACCCCCGCCACGCAGUUUUAUCCGGUAAAGC
GAAUGAUUAGAGGUCUUGGGGCCGAAACGAUCUCAACCUAUUCUCAAACUUUAAAUGGGU
AAGAAGCCCGGCUCGCUGGCGUGAGCCGGGCGUGGAAUGGAGUGCCUAGUGGGCCACUUU
UGGUAAGCAGAACUGGCGCUGCGGGAUGAACCGAACGCCGGGUUAAGGCGCCCGAUGCCG
ACGCUCAUCAGACCCCAGAAAAGGUGUUGGUUGAUAUAGACAGCAGGACGGUGGCCAUGG
AAGUCGGAAUCCGCUAAGGAGUGUGUAACAACUCACCUGCCGAAUCAACUAGCCCUGAAA
AUGGAUGGCGCUGGAGCGUCGGGCCCAUACCCGGCCGUCGCCGGCAGUCGAGAGUGGACG
GGAGCGGCGGGGGCGGCGCGCGCGCGCGCCCGCCCCCGGAGCCCCGCGGACGCUACGCCG
CGACGAGUAGGAGGGCCGCUGCGGUGAGCCUUGAAGCCUAGGGCGCGGGCCCGGGUGGAG
CCGCCGCAGGUGCAGAUCUUGGUGGUAGUAGCAAAUAUUCAAACGAGAACUUUGAAGGCC
GAAGUGGAGAAGGGUUCCAUGUGAACAGCAGUUGAACAUGGGUCAGUCGGUCCUGAGAGA
UGGGCGAGCGCCGUUCCGAAGGGACGGGCGAUGGCCUCCGUUGCCCUCGGCCGAUCGAAA
GGGAGUCGGGUUCAGAUCCCCGAAUCCGGAGUGGCGGAGAUGGGCGCCGCGAGGCGUCCA
GUGCGGUAACGCGACCGAUCCCGGAGAAGCCGGCGGGAGCCCCGGGGAGAGUUCUCUUUU
CUUUGUGAAGGGCAGGGCGCCCUGGAAUGGGUUCGCCCCGAGAGAGGGGCCCGUGCCUUG
GAAAGCGUCGCGGUUCCGGCGGCGUCCGGUGAGCUCUCGCUGGCCCUUGAAAAUCCGGGG
GAGAGGGUGUAAAUCUCGCGCCGGGCCGUACCCAUAUCCGCAGCAGGUCUCCAAGGUGAA
CAGCCUCUGGCAUGUUGGAACAAUGUAGGUAAGGGAAGUCGGCAAGCCGGAUCCGUAACU
UCGGGAUAAGGAUUGGCUCUAAGGGCUGCAGCCGACUUAGAACUGGUGCGGACCAGGGGA
AUCCGACUGUUUAAUUAAAACAAAGCAUCGCGAAGGCCCGCGGCGGGUGUUGACGCGAUG
UGAUUUCUGCCCAGUGCUCUGAAUGUCAAAGUGAAGAAAUUCAAUGAAGCGCGGGUAAAC
GGCGGGAGUAACUAUGACUCUCUUAAGGUAGCCAAAUGCCUCGUCAUCUAAUUAGUGACG
CGCAUGAAUGGAUGAACGAGAUUCCCACUGUCCCUACCUACUAUCCAGCGAAACCACAGC
CAAGGGAACGGGCUUGGCGGAAUCAGCGGGGAAAGAAGACCCUGUUGAGCUUGACUCUAG
UCUGGCACGGUGAAGAGACAUGAGAGGUGUAGAAUAAGUGGGAGGCCCCCGGCGCCCCCC
CGGUGUCCCCGCGAGGGGCCCGGGGCGGGGUCCGCCGGCCCUGCGGGCCGCCGGUGAAAU
ACCACUACUCUGAUCGUUUUUUCACUGACCCGGUGAGGCGGGGGGGCGAGCCCCGAGGGG
CUCUCGCUUCUGGCGCCAAGCGCCCGGCCGCGCGCCGGCCGGGCGCGACCCGCUCCGGGG
ACAGUGCCAGGUGGGGAGUUUGACUGGGGCGGUACACCUGUCAAACGGUAACGCAGGUGU
CCUAAGGCGAGCUCAGGGAGGACAGAAACCUCCCGUGGAGCAGAAGGGCAAAAGCUCGCU
UGAUCUUGAUUUUCAGUACGAAUACAGACCGUGAAAGCGGGGCCUCACGAUCCUUCUGAC
CUUUUGGGUUUUAAGCAGGAGGUGUCAGAAAAGUUACCACAGGGAUAACUGGCUUGUGGC
GGCCAAGCGUUCAUAGCGACGUCGCUUUUUGAUCCUUCGAUGUCGGCUCUUCCUAUCAUU
GUGAAGCAGAAUUCACCAAGCGUUGGAUUGUUCACCCACUAAUAGGGAACGUGAGCUGGG
UUUAGACCGUCGUGAGACAGGUUAGUUUUACCCUACUGAUGAUGUGUUGUUGCCAUGGUA
AUCCUGCUCAGUACGAGAGGAACCGCAGGUUCAGACAUUUGGUGUAUGUGCUUGGCUGAG
GAGCCAAUGGGGCGAAGCUACCAUCUGUGGGAUUAUGACUGAACGCCUCUAAGUCAGAAU
CCCGCCCAGGCGGAACGAUACGGCAGCGCCGCGGAGCCUCGGUUGGCCUCGGAUAGCCGG
UCCCCCGCCGGGACCGGGGUCCGGUGCGGAGUGCCCUUCGUCCUGGGAAACGGGGCGCGG
CCGGAGAGGCGGCCGCCCCCUCGCCCGUCACGCACCGGCCGUUCGUGGGGAACCUGGCGC
UAAACCAUUCGUAGACGACCUGCUUCUGGGUCGGGGUUUCGUACGUAGCAGAGCAGCUCC
CUCGCUGCGAUCUAUUGAAAGUCAGCCCUCGACACAAGGGUUUGU
Sequence of entity 3 (h2), FASTA
>7A01_3 5.8S RIBOSOMAL RNA (chains h2)
CGACUCUUAGCGGUGGAUCACUCGGCUCGUGCGUCGAUGAAGAACGCAGCUAGCUGCGAG
AAUUAAUGUGAAUUGCAGGACACAUUGAUCAUCGACACUUCGAACGCACUUGCGGCCCCG
GGUUCCUCCCGGGGCUACGCCUGUCUGAGCGUCGCU
Sequence of entity 4 (d2), FASTA
>7A01_4 5S RIBOSOMAL RNA (chains d2)
GUCUACGGCCAUACCACCCUGAACGCGCCCGAUCUCGUCUGAUCUCGGAAGCUAAGCAGG
GUCGGGCCUGGUUAGUACUUGGAUGGGAGACCGCCUGGGAAUACCGGGUGCUGUAGGCUU
Sequence of entity 5 (p2), FASTA
>7A01_5 Uncharacterized protein (chains p2)
PRKIEEIKDFLLTARRKDAKSVNIKKNKDNVKFKVRCSRYLYTLVITDKEKAEKLKQSLP
PGLAVKELK
Sequence of entity 6 (k2), FASTA
>7A01_6 eL14 (chains k2)
SGAKFRISLGLPVGAVINCADNTGAKNLYIISVKGIKGRLNRLPAAGVGDMVMATVKKGK
PELRKKVHPAVVIRQRKSYRRKDGVFLYFEDNAGVIVNNKGEMKGSAITGPVAKECADLW
PRIASNAGSIA
Sequence of entity 7 (l2), FASTA
>7A01_7 Ribosomal protein L24 (chains l2)
MKVELCSFSGYKIYPGHGRRYARTDGKVFQFLNAKCESAFLSKRNPRQINWTVLYRRKHK
KGQ
Sequence of entity 8 (m2), FASTA
>7A01_8 Uncharacterized protein (chains m2)
KKIRTSPTFRRPKTLRLRRQPKYPRKSAPRRNKLDHYAIIKFPLTTESAMKKIEDNNTLV
FIVDVKANKHQIKQAVKKLYDIDVAKVNTLIRPDGEKKAYVRLAPDYDALDVANKIGII
Sequence of entity 9 (o2), FASTA
>7A01_9 Ribosomal protein L26 (chains o2)
MKFNPFVTSDRSKNRKRHFNAPSHIRRKIMSSPLSKELRQKYNVRSMPIRKDDEVQVVRG
HYKGQQIGKVVQVYRKKYVIYIERVQREKANGTTVHVGIHPSKVVITRLKLDKDRKKILE
RKAKSRQVGKEKGK
Sequence of entity 10 (q2), FASTA
>7A01_10 uL15 (chains q2)
PSRLRKTRKLRGHVSHGHGRIGKHRKHPGGRGNAGGMHHHRINFDKYHPGYFGKVGMRHY
HLKRNQSFCPTVNLDKLWTLVSEQTRVNAAKNKTGAAPIIDVVRSGYYKVLGKGKLPKQP
VIVKAKFFSRRAEEKIKGVGGACVLVA
Sequence of entity 11 (r2), FASTA
>7A01_11 60S ribosomal protein L29 (chains r2)
AKSKNHTTHNQSRKWHRNGIKKPRSQRYESLKGVDPKFLRNMRFAKKHNKKGLKKMQANN
AKAMAARAEAIKALV
Sequence of entity 12 (t2), FASTA
>7A01_12 uL4 (chains t2)
ACARPLISVYSEKGESSGKNVTLPAVFKAPIRPDIVNFVHTNLRKNNRQPYAVSELAGHQ
TSAESWGTGRAVARIPRVRGGGTHRSGQGAFGNMCRGGRMFAPTKTWRRWHRRVNTTQKR
YAICSALAASALPALVMSKGHRIEEVPELPLVVEDKVEGYKKTKEAVLLLKKLKAWNDIK
KVYASQRMRAGKGKMRNRRRIQRRGPCVIYNEDNGIVKAFRNIPGITLLNVTKLNILKLA
PGGHVGRFCIWTESAFRKLDDLYGTWRKAASLKSNYNLPMHKMLNTDLSRILKSPEIQRA
LRAPRKKIHRRVLKKNPLKNLRIMLKLNPYAKTMRRNTILRQARNHKLRVERAAAALAAK
SD
Ligands and cofactors
| ID | Name | Formula | Copies |
|---|
| ZN | Zinc ion | Zn | 6 |
Primary citation
The Halastavi arva Virus Intergenic Region IRES Promotes Translation by the Simplest Possible Initiation Mechanism. Abaeva, I.S., Vicens, Q., Bochler, A. et al. Cell Rep (2020) 33:108476-108476. DOI 10.1016/j.celrep.2020.108476 · PubMed
Other PDB entries of the same protein (UniProt G1U001 (AlphaFold model), which also has an AlphaFold model), best resolution first:
- 7O7Y 2.2 Å, Rabbit 80S ribosome stalled close to the mutated SARS-CoV-2 slippery site by a…
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- 7O7Z 2.4 Å, Rabbit 80S ribosome stalled close to the mutated SARS-CoV-2 slippery site by a…
- 8SCB 2.5 Å, Terminating ribosome with SRI-41315
- 9MR4 2.65 Å, NAC: Ribosome nascent chain complex(Oxa1L)
- 9RHU 2.65 Å, Rabbit 80S ribosome in complex with eRF1-AAQ, stalled at the Stop codon in mutated F2A…
- 8RJB 2.69 Å, Structure of the rabbit 80S ribosome stalled on a 2-TMD rhodopsin intermediate in…
- 8VVQ 2.7 Å, Codon sampling state of elongation inhibitor-treated mammalian ribosomes obtained from…
- 8RJD 2.79 Å, Structure of the rabbit 80S ribosome stalled on a 2-TMD rhodopsin intermediate in…
- 8B6C 2.79 Å, Cryo-EM structure of ribosome-Sec61 in complex with cyclotriazadisulfonamide derivative…
- 6SGC 2.8 Å, Rabbit 80S ribosome stalled on a poly(A) tail
- 8BPO 2.8 Å, Structure of rabbit 80S ribosome translating beta-tubulin in complex with…
Browse structure collections
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