6I27: PDB entry 6I27

Rea1 AAA2L-H2alpha deletion mutant in AMPPNP State. Determined by electron microscopy at 7.8 Å resolution. Released 12 Dec 2018.

Method
Electron microscopy
Resolution
7.8 Å
Organism
Saccharomyces cerevisiae
Chains
1
Atoms
22,551
Mol. weight
546.54 kDa
Released
12 Dec 2018

Explore 6I27 in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

6I27 contains 185 α-helices and 57 β-strands across 1 chain. 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: 185 helices, 57 β-strands

ElementResiduesLengthSheet
α-helix20-223
α-helix23-297
α-helix74-818
α-helix87-9610
α-helix116-1194
α-helix124-13815
α-helix145-1517
α-helix155-1617
α-helix168-1703
α-helix172-1765
α-helix184-1896
α-helix209-21810
α-helix239-24911
β-strand26511
β-strand27211
α-helix278-2803
α-helix294-30411
β-strand311-31222
α-helix321-33111
β-strand338-33922
β-strand34212
β-strand355-35733
β-strand366-36833
α-helix369-3702
α-helix371-3788
β-strand381-38552
α-helix394-4018
α-helix404-4063
α-helix4071
β-strand40814
α-helix4091
β-strand41614
β-strand423-42752
α-helix465-4717
α-helix481-49111
α-helix494-4974
α-helix513-5208
α-helix523-5264
α-helix541-5477
α-helix568-5703
α-helix632-64413
α-helix660-6656
β-strand673-67755
α-helix816-8216
β-strand825-82955
α-helix838-8436
β-strand872-87435
α-helix887-8937
α-helix911-9144
α-helix930-9378
α-helix956-9638
α-helix965-9673
α-helix975-9784
α-helix998-10036
β-strand101716
β-strand102416
α-helix1059-107113
β-strand1080-108237
α-helix1089-109911
β-strand1106-110837
α-helix1136-11405
β-strand1147-114937
β-strand1173-117538
β-strand1180-118238
β-strand1191-119447
α-helix1195-11973
β-strand1216-121837
α-helix1225-12328
α-helix1237-12404
α-helix1243-12453
α-helix1261-127616
α-helix1285-129612
β-strand130019
β-strand130219
α-helix1306-131712
α-helix1344-135815
α-helix1362-13632
β-strand1364110
β-strand1366111
α-helix1374-138411
α-helix1401-14044
β-strand1406112
α-helix1411-143121
α-helix1455-147218
β-strand1475112
α-helix1478-14847
β-strand1488-1492511
α-helix1499-15046
β-strand1514-1518513
β-strand1524-1528513
β-strand1534-1538511
α-helix1547-15493
β-strand1559110
α-helix1572-15776
α-helix1585-159915
α-helix1607-162115
α-helix1631-16344
α-helix1637-16404
α-helix1644-16474
α-helix1653-166715
α-helix1725-173410
α-helix1735-17373
β-strand1742114
β-strand1745-1746215
α-helix1753-176311
β-strand1769-1770214
β-strand1773116
β-strand1811-1814414
β-strand1815116
α-helix1825-18306
β-strand1838-1839217
β-strand1846-1847217
β-strand1854-1857414
β-strand1858-1859215
α-helix1873-18764
β-strand1882-1883215
α-helix1889-18957
α-helix1907-192418
α-helix1939-194911
α-helix1962-19654
α-helix1976-19794
α-helix1980-19889
β-strand2006-2008318
β-strand2011-2013318
α-helix2014-20152
α-helix2034-204512
β-strand2050-2053419
α-helix2062-20709
β-strand2075-2079520
α-helix2085-20884
β-strand2090-2094521
α-helix2099-211921
α-helix2127-214216
α-helix2150-215910
α-helix2167-218317
α-helix2184-21863
β-strand2193-2196421
α-helix2198-22058
β-strand2208-2212520
α-helix2222-22265
α-helix2251-22533
β-strand2258-2260320
β-strand2261-2262219
β-strand2278-2281419
α-helix2285-22884
α-helix2338-235114
α-helix2371-238212
α-helix2390-240213
α-helix2408-24147
α-helix2416-242510
α-helix2430-24323
α-helix2446-24505
α-helix2461-248727
α-helix2496-25027
α-helix2523-25319
α-helix2543-25464
α-helix2550-255910
α-helix2566-25705
α-helix2572-25754
α-helix2578-25836
α-helix2591-25944
α-helix2601-26055
α-helix2613-26164
α-helix2628-264821
α-helix2659-267315
α-helix2681-269919
α-helix2705-27073
α-helix2711-27199
α-helix2727-27326
α-helix2741-27444
α-helix2758-27614
α-helix2780-279011
α-helix2807-28148
α-helix2818-28225
α-helix2831-28377
α-helix2840-28445
α-helix2854-28596
α-helix2861-28644
α-helix2869-28724
α-helix2873-28775
α-helix2879-28857
α-helix2890-290314
α-helix2918-29225
α-helix2925-294218
α-helix2943-29464
α-helix2955-29595
α-helix2961-29644
α-helix2981-29833
α-helix2984-29918
α-helix2998-300811
α-helix3015-303218
α-helix3042-306827
α-helix3088-30936
α-helix3099-31024
α-helix3112-31143
α-helix3116-31238
α-helix3134-314512
α-helix3150-31545
α-helix3203-32064
α-helix3212-32176
α-helix3233-32408
α-helix3254-326815
α-helix3288-330720
α-helix3317-332812
α-helix3337-335721
α-helix3365-338723
α-helix3393-33964
α-helix3405-34117
α-helix3413-34164
α-helix3428-344013
β-strand3443122
α-helix3448-346215
α-helix3474-348310
α-helix3486-351025
α-helix3518-354326
β-strand3546122
α-helix3548-35536
α-helix3581-35855
α-helix3604-361613
α-helix3620-36223
α-helix3624-363916
α-helix3653-367321
α-helix3691-36944
α-helix3707-37115
α-helix3720-37267
α-helix3738-375417
α-helix3757-377923
α-helix3793-380412
α-helix3806-382116
α-helix3828-38303
α-helix3831-38388
α-helix3841-38444
α-helix3855-38573
α-helix3858-387720
α-helix3885-389511
α-helix3914-392411
α-helix3928-39358
α-helix3949-396315
α-helix3965-398016
α-helix3993-39964
α-helix4000-40067
α-helix4010-404031

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
Midasin,Midasin,Midasin,Midasin,Midasin,Midasin,MidasinAprotein4853Saccharomyces cerevisiaeQ12019
Sequence of entity 1 (A), FASTA
>6I27_1 Midasin,Midasin,Midasin,Midasin,Midasin,Midasin,Midasin (chains A)
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXPSVPECFTIEKKSSYFIIEPQDLSTKVASICGVIVPKVHTIHDKVFYPLT
FVPTHKTVSSLRQLGRKIQNSTPIMLIGKAGSGKTFLINELSKYMGCHDSIVKIHLGEQT
DAKLLIGTYTSGDKPGTFEWRAGVLATAVKEGRWVLIEDIDKAPTDVLSILLSLLEKREL
TIPSRGETVKAANGFQLISTVRINEDHQKDSSNKIYNLNMIGMRIWNVIELEEPSEEDLT
HILAQKFPILTNLIPKLIDSYKNVKSIYMNTKFISLNKGAHTRVVSVRDLIKLCERLDIL
FKNNGINKPDQLIQSSVYDSIFSEAADCFAGAIGEFKALEPIIQAIGESLDIASSRISLF
LTQHVPTLENLDDSIKIGRAVLLKEKLNIQKKSMNSTLFAFTNHSLRLMEQISVCIQMTE
PVLLVGETGTGKTTVVQQLAKMLAKKLTVINVSQQTETGDLLGGYKPVNSKTVAVPIQEN
FETLFNATFSLKKNEKFHKMLHRCFNKNQWKNVVKLWNEAYKMAQSILKITNTENENENA
KKKKRRLNTHEKKLLLDKWADFNDSVKKFEAQSSSIENSFVFNFVEGSLVKTIRAGEWLL
LDEVNLATADTLESISDLLTEPDSRSILLSEKGDAEPIKAHPDFRIFACMNPATDVGKRD
LPMGIRSRFTEIYVHSPERDITDLLSIIDKYIGKYSVSDEWVGNDIAELYLEAKKLSDNN
TIVDGSNQKPHFSIRTLTRTLLYVTDIIHIYGLRRSLYDGFCMSFLTLLDQKSEAILKPV
IEKFTLGRLKNVKSIMSQTPPSPGPDYVQFKHYWMKKGPNTIQEQAHYIITPFVEKNMMN
LVRATSGKRFPVLIQGPTSSGKTSMIKYLADITGHKFVRINNHEHTDLQEYLGTYVTDDT
GKLSFKEGVLVEALRKGYWIVLDELNLAPTDVLEALNRLLDDNRELFIPETQEVVHPHPD
FLLFATQNPPGIYGGRKILSRAFRNRFLELHFDDIPQDELEIILRERCQIAPSYAKKIVE
VYRQLSIERSASRLFEQKNSFATLRDLFRWALRDAVGYEQLAASGYMLLAERCRTPQEKV
TVKKTLEKVMKVKLDMDQYYASLEDKSLEAIGSVTWTKGMRRLSVLVSSCLKNKEPVLLV
GETGCGKTTICQLLAQFMGRELITLNAHQNTETGDILGAQRPVRNRSEIQYKLIKSLKTA
LNIANDQDVDLKELLQLYSKSDNKNIAEDVQLEIQKLRDSLNVLFEWSDGPLIQAMRTGN
FFLLDEISLADDSVLERLNSVLEPERSLLLAEQGSSDSLVTASENFQFFATMNPGGDYGK
KELSPALRNRFTEIWVPSMEDFNDVNMIVSSRLLEDLKDLANPIVKFSEWFGKKLGGGNA
TSGVISLRDILAWVEFINKVFPKIQNKSTALIQGASMVFIDALGTNNTAYLAENENDLKS
LRTECIIQLLKLCGDDLELQQIETNEIIVTQDELQVGMFKIPRFPDAQSSSFNLTAPTTA
SNLVRVVRAMQVHKPILLEGSPGVGKTSLITALANITGNKLTRINLSEQTDLVDLFGADA
PGERSGEFLWHDAPFLRAMKKGEWVLLDEMNLASQSVLEGLNACLDHRGEAYIPELDISF
SCHPNFLVFAAQNPQYQGGGRKGLPKSFVNRFSVVFIDMLTSDDLLLIAKHLYPSIEPDI
IAKMIKLMSTLEDQVCKRKLWGNSGSPWEFNLRDTLRWLKLLNQYSICEDVDVFDFVDII
VKQRFRTISDKNKAQLLIEDIFGKFSTKENFFKLTEDYVQINNEVALRNPHYRYPITQNL
FPLECNVAVYESVLKAINNNWPLVLVGPSNSGKTETIRFLASILGPRVDVFSMNSDIDSM
DILGGYEQVDLTRQISYITEELTNIVREIISMNMKLSPNATAIMEGLNLLKYLLNNIVTP
EKFQDFRNRFNRFFSHLEGHPLLKTMSMNIEKMTEIITKEASVKFEWFDGMLVKAVEKGH
WLILDNANLCSPSVLDRLNSLLEIDGSLLINECSQEDGQPRVLKPHPNFRLFLTMDPKYG
ELSRAMRNRGVEIYIDELHSRSTAFDRLTLGFELGENIDFVSIDDGIKKIKLNEPDMSIP
LKHYVPSYLSRPCIFAQVHDILLLSDEEPIEESLAAVIPISHLGEVGKWANNVLNCTEYS
EKKIAERLYVFITFLTDMGVLEKINNLYKPANLKFQKALGLHDKQLTEETVSLTLNEYVL
PTVSKYSDKIKSPESLYLLSSLRLLLNSLNALKLINEKSTHGKIDELTYIELSAAAFNGR
HLKNIPRIPIFCILYNILTVMSENLKTESLFCGSNQYQYYWDLLVIVIAALETAVTKDEA
RLRVYKELIDSWIASVKSKSDIEITPFLNINLEFTDVLQLSRGHSITLLWDIFRKNYPTT
SNSWLAFEKLINLSEKFDKVRLLQFSESYNSIKDLMDVFRLLNDDVLNNKLSEFNLLLSK
LEDGINELELISNKFLNKRKHYFADEFDNLIRYTFSVDTAELIKELAPASSLATQKLTKL
ITNKYNYPPIFDVLWTEKNAKLTSFTSTIFSSQFLEDVVRKSNNLKSFSGNQIKQSISDA
ELLLSSTIKCSPNLLKSQMEYYKNMLLSWLRKVIDIHVGGDCLKLTLKELCSLIEEKTAS
ETRVTFAEYIFPALDLAESSKSLEELGEAWITFGTGLLLLFVPDSPYDPAIHDYVLYDLF
LKTKTFSQNLMKSWRNVRKVISGDEEIFTEKLINTISDDDAPQSPRVYRTGMSIDSLFDE
WMAFLSSTMSSRQIKELVSSYKCNSDQSDRRLEMLQQNSAHFLNRLESGYSKFADLNDIL
AGYIYSINFGFDLLKLQKSKDRASFQISPLWSMDPINISCAENVLSAYHELSRFFKKGDM
EDTSIEKVLMYFLTLFKFHKRDTNLLEIFEAALYTLYSRWSVRRFRQEQEENEKSNMFKF
NDNSDDYEADFRKLFPDYEDTALVTNEKDISSPENLDDIYFKLADTYISVFDKDHDANFS
SELKSGAIITTILSEDLKNTRIEELKSGSLSAVINTLDAETQSFKNTEVFGNIDFYHDFS
IPEFQKAGDIIETVLKSVLKLLKQWPEHATLKELYRVSQEFLNYPIKTPLARQLQKIEQI
YTYLAEWEKYASSEVSLNNTVKLITDLIVSWRKLELRTWKGLFNSEDAKTRKSIGKWWFY
LYESIVISNFVSEKKETAPNATLLVSSLNLFFSKSTLGEFNARLDLVKAFYKHIQLIGLR
SSKIAGLLHNTIKFYYQFKPLIDERITNGKKSLEKEIDDIILLASWKDVNVDALKQSSRK
SHNNLYKIVRKYRDLLNGDAKTIIEAGLLYXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XRNIDTVASNMDSYLEKISSQEFPNFADLASDFYAEAERLRKETPNVYTKENKKRLAYLK
TQKSKLLGDALKELRRIGLKVNFREDIQKVQSSTTTILANIAPFNNEYLNSSDAFFFKIL
DLLPKLRSAASNPSDDIPVAAIERGMALAQSLMFSLITVRHPLSEFTNDYCKINGMMLDL
EHFTCLKGDIVHSSLKANVDNVRLFEKWLPSLLDYAAQTLSVISKYSATSEQQKILLDAK
STLSSFFVHFNSSRIFDSSFIESYSRFELFINELLKKLENAKETGNAFVFDIIIEWIKAN
KGGPIKKEQKRGPSVEDVEQAFRRTFTSIILSFQKVIGDGIESISETDDNWLSASFKKVM
VNVKLLRSSVVSKNIETALSLLKDFDFTTTESIYVKSVISFTLPVITRYYNAMTVVLERS
RIYYTNTSRGMYILSTILHSLAKNGFCSPQPPSEEVDDKNLQEGTGLGDGEGAQNNNKDV
EQDEDLTEDAQNENKEQQDKDERDDENEDDAVEMEGDMAGELEDLSNGEENDDEDTDSEE
EELDEEIDDLNEDDPNAIDDKMWDDKASDNSKEKDTDQNLDGKNQEEDVQAAENDEQQRD
NKEGGDEDPNAPEDGDEEIENDENAEEENDVGEQEDEVKDEEGEDLEANVPEIETLDLPE
DMNLDSEHEESDEDVDMSDGMPDDLNKEEVGNEDEEVKQESGIESDNENDEPGPEEDAGE
TETALDEEEGAEEDVDMTNDEGKEDEENGPEEQAMSDEEELKQDAAMEENKEKGGEQNTE
GLDGVEEKADTEDIDQEAAVQQDSGSKGAGADATDTQEQDDVGGSGTTQNTYEEDQEDVT
KNNEESREEATAALKQLGDSMKEYHRRRQDIKEAQTNGEEDENLEKNNERPDEFEHVEGA
NTETDTQALGSATQDQLQTIDEDMAIDDDREEQEVDQKELVEDADDEKMDIDEEEMLSDI
DAHDANNDVDSKKSGFIGKRKSEEDFENELSNEHFSADQEDDSEIQSLIENIEDNPPDAS
ASLTPERSLEESRELWHKSEISTADLVSRLGEQLRLILEPTLATKLKGDYKTGKRLNMKR
IIPYIASQFRKDKIWLRRTKPSKRQYQIMIALDDSKSMSESKCVKLAFDSLCLVSKTLTQ
LEAGGLSIVKFGENIKEVHSFDQQFSNESGARAFQWFGFQETKTDVKKLVAESTKIFERA
RAMVHNDQWQLEIVISDGICEDHETIQKLVRRARENKIMLVFVIIDGITSNESILDMSQV
NYIPDQYGNPQLKITKYLDTFPFEFYVVVHDISELPEMLSLILRQYFTDLASS

Primary citation

The CryoEM structure of the Saccharomyces cerevisiae ribosome maturation factor Rea1. Sosnowski, P., Urnavicius, L., Boland, A. et al. Elife (2018) 7. DOI 10.7554/eLife.39163 · PubMed

Other PDB entries of the same protein (UniProt Q12019), best resolution first:

Browse structure collections

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