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1  structure 1  species 0  interactions 1  sequence 1  architecture

Protein: RAD21_SCHPO (P30776)

Summary

This is the summary of UniProt entry RAD21_SCHPO (P30776).

Description: Cohesin subunit rad21
Source organism: Schizosaccharomyces pombe (strain 972 / ATCC 24843) (Fission yeast) (NCBI taxonomy ID 284812)
Length: 628 amino acids
Reference Proteome: ✓

Please note: when we start each new Pfam data release, we take a copy of the UniProt sequence database. This snapshot of UniProt forms the basis of the overview that you see here. It is important to note that, although some UniProt entries may be removed after a Pfam release, these entries will not be removed from Pfam until the next Pfam data release.

Pfam domains

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Source Domain Start End
Pfam Rad21_Rec8_N 1 107
disorder n/a 155 161
low_complexity n/a 157 174
disorder n/a 173 175
disorder n/a 204 232
disorder n/a 236 266
disorder n/a 268 269
disorder n/a 271 274
disorder n/a 276 277
low_complexity n/a 282 296
disorder n/a 288 293
disorder n/a 295 380
disorder n/a 382 385
disorder n/a 435 436
disorder n/a 438 475
low_complexity n/a 472 490
disorder n/a 480 481
disorder n/a 487 512
disorder n/a 516 518
disorder n/a 529 530
disorder n/a 534 538
disorder n/a 541 555
disorder n/a 557 563
Pfam Rad21_Rec8 568 623
disorder n/a 575 576

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Sequence information

This is the amino acid sequence of the UniProt sequence database entry with the accession P30776. This sequence is stored in the Pfam database and updated with each new Pfam release, but this means that the sequence we store may differ from that stored by UniProt.

Sequence:
1
MFYSEAILSK KGPLAKVWLA AHWEKKLSKV QTLHTSIEQS VHAIVTEETA
50
51
PMALRLSGQL MLGVVRIYSR KARYLLEDCT EALMRLKMSF QPGQVDMIEP
100
101
ATALQSLKGK DAVTQSANLT LPETITEFDL LVPDSTFDFQ WSQLLRTPSR
150
151
SSNTLELHSL PISSSPSFPS SQLSIEAGRN AQVESGFSLG ESFAHVGNDM
200
201
QFHLPISNSG AATPRSVHSD NQSQISIEVG RDAPAAAATD LSGIIGPQMT
250
251
KSPASSVTHF STPSMLPIGG TSLDDELLAP VDDLNLDLGL DDLLGDEQGA
300
301
NAPAIEADEQ AETSSIHLPS DIMEDDSSRP AAAGVEEGQV VESATAPQQE
350
351
KINPQKTVRR QRAIIDPVTE LSSKQMKKQL ADTSSITSPL CLNTSSIVFN
400
401
ATVNFTRNGK FNTSIFSSNL NPKVNELLQA DFKQAILRKR KNESPEEVEP
450
451
AKHQRTDTST ENQETAEVLD PEEIAAAELA NITEAAIATL PQETVVQPEG
500
501
EAPELGSPMG FPVTALESAD DSLFDAPPVM LDEADLLGSE RLDSSVSEAL
550
551
PSSQTAKDSL RNKWDPYTEG EKVSFQTLSA GCNREEAVQL FFDVLVLATK
600
601
DVISVKQDVA IQNEITLTAK RGMLLSSL                        
628
 

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Checksums:
CRC64:DB60FF893AE0C9DE
MD5:3c682badaae4f6f1522ce52dd5a7a5ca

Structures

For those sequences which have a structure in the Protein DataBank, we use the mapping between UniProt, PDB and Pfam coordinate systems from the PDBe SIFTS project, to allow us to map Pfam domains onto UniProt three-dimensional structures. The table below shows the mapping between Pfam domains, this UniProt entry and a corresponding three dimensional structure.

Pfam family UniProt residues PDB ID PDB chain ID PDB residues View
Rad21_Rec8 568 - 619 6YUF B 568 - 619 Show 3D Structure View in InterPro
Rad21_Rec8_N 5 - 88 6YUF B 5 - 88 Show 3D Structure View in InterPro
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The parts of the structure corresponding to the Pfam family are highlighted in blue.

Loading Structure Data

AlphaFold Structure Prediction

The protein structure below has been predicted by DeepMind with AlphaFold. For more information, please visit the AlphaFold page for this protein.

Model confidence scale

  Very High (pLDDT > 90)
  Confident (90 > pLDDT > 70)
  Low (70 > pLDDT > 50)
  Very Low (pLDDT < 50)
Highly accurate protein structure prediction with AlphaFold. John Jumper, Richard Evans, Alexander Pritzel, Tim Green, Michael Figurnov, Olaf Ronneberger, Kathryn Tunyasuvunakool, Russ Bates, Augustin Žídek, Anna Potapenko, Alex Bridgland, Clemens Meyer, Simon A. A. Kohl, Andrew J. Ballard, Andrew Cowie, Bernardino Romera-Paredes, Stanislav Nikolov, Rishub Jain, Jonas Adler, Trevor Back, Stig Petersen, David Reiman, Ellen Clancy, Michal Zielinski, Martin Steinegger, Michalina Pacholska, Tamas Berghammer, Sebastian Bodenstein, David Silver, Oriol Vinyals, Andrew W. Senior, Koray Kavukcuoglu, Pushmeet Kohli & Demis Hassabis Nature 2021-07-15; DOI: 10.1038/s41586-021-03819-2;