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0  structures 1  species 0  interactions 1  sequence 1  architecture

Protein: Q54Q20_DICDI (Q54Q20)

Summary

This is the summary of UniProt entry Q54Q20_DICDI (Q54Q20).

Description: Uncharacterized protein {ECO:0000313|EMBL:EAL65408.1}
Source organism: Dictyostelium discoideum (Slime mold) (NCBI taxonomy ID 44689)
Length: 920 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

Download the data used to generate the domain graphic in JSON format.

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Source Domain Start End
disorder n/a 13 72
low_complexity n/a 29 70
disorder n/a 75 82
disorder n/a 87 88
disorder n/a 90 91
disorder n/a 131 135
disorder n/a 137 138
disorder n/a 140 168
disorder n/a 175 211
low_complexity n/a 195 206
disorder n/a 231 305
low_complexity n/a 231 254
low_complexity n/a 265 274
low_complexity n/a 298 328
disorder n/a 307 308
disorder n/a 316 402
low_complexity n/a 342 357
disorder n/a 404 409
disorder n/a 414 416
disorder n/a 425 449
disorder n/a 457 462
disorder n/a 470 474
low_complexity n/a 473 483
low_complexity n/a 481 496
Pfam ThrE 524 766
transmembrane n/a 630 651
transmembrane n/a 657 675
transmembrane n/a 687 704
transmembrane n/a 710 731
transmembrane n/a 743 761
transmembrane n/a 781 799
Pfam ThrE_2 786 913
transmembrane n/a 808 826
transmembrane n/a 832 850
transmembrane n/a 857 875
low_complexity n/a 877 891
transmembrane n/a 895 914

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Sequence information

This is the amino acid sequence of the UniProt sequence database entry with the accession Q54Q20. 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
MYNFFDRIKA PLTEFRKKNP YKKDDDFENN NSGINNNNGI NNITNDGNNN
50
51
NNSNCNSNNS NNNSNINGGN VTEGFLTSSN NINIPTTQPL PVVVNGIAPV
100
101
PSLPISILKQ SQLIGAINPL GSINPLGSIN PLGSINPLGG SSPRGYYQNV
150
151
AANHTHSPNS IPTIISQSPL VNPLNSSTSI HQQLPTTTPI SHHHQQQQQQ
200
201
QQQQQQSIVP PQHIVPNVIS VPIEIAEITS TTPISIVPQQ TPQTQQSPSI
250
251
GSPILNQSIS GNSFQQPQQQ IHHQTPNSIF SSFLQPNQQT TYNHQLPSSL
300
301
GQSASIQQQQ IQQQQLLQHL SNLHQMHQTQ FTSPHSPGLS FQQQLQQQQQ
350
351
QQQQQYQHNT HSLSNSRNKS NDQTNNDGIE MREIKKSTNG LNFTQINSPL
400
401
NNILRNTSSL NSGINYSYNP YSLNQSTINV VSNSNTHQHE HNKYNGIDRL
450
451
STSIPINEIM TNGNGASNEE AELLKIPKIP KKKSRFNKEK MKKFKKSVYQ
500
501
ILSPETQLPI HIVDNDQMEN TVIPFLMELG RALLMSGVPA HRLEYELTLI
550
551
SGTFGIDGHF FTTPTGIFFS FGSPHTILSP YTHFLRINST DYNMNRLILL
600
601
EQLADQVIYG HVSCAEGLVR LKEILRLKPL YNNYLTVISF VLSSFAIAFF
650
651
FKAGWVEVGA CSFVGLYVGL LSAVSSKYAT VGRVLEALSA CGGAVLASLF
700
701
NAFIYPVHIF MVTLGGIIAL APGLSLTLAV AEISTRNLIS GNARLVGVFS
750
751
CLLQLTFGIA LGTRISAKIL PIQIEVNPLS LPSWTMFLAV PIAAISFAVQ
800
801
MKVHPRQIWV IIIASALGIL CGNWGNKFFG EDVGSFFGSC AICMLGNLYA
850
851
RLSGTSAAVP IMSGIILLVP GSMGVKGLVS VSSGDISGGI VFFEGMFMIA
900
901
ASLTIGLLVA NLIVKPNKAL                                 
920
 

Show the unformatted sequence.

Checksums:
CRC64:7A10FE03A0574E6D
MD5:92da84fd1156dd82df33341f8f37147f

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;