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0  structures 1  species 0  interactions 1  sequence 1  architecture

Protein: A0A0D2GX87_9EURO (A0A0D2GX87)

Summary

This is the summary of UniProt entry A0A0D2GX87_9EURO (A0A0D2GX87).

Description: Unplaced genomic scaffold supercont1.1, whole genome shotgun sequence {ECO:0000313|EMBL:KIW85668.1}
Source organism: Fonsecaea pedrosoi CBS 271.37 (NCBI taxonomy ID 1442368)
Length: 912 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.

Show or hide the data used to generate the graphic in JSON format.

Source Domain Start End
disorder n/a 6 7
disorder n/a 17 95
low_complexity n/a 27 48
low_complexity n/a 47 58
low_complexity n/a 78 91
disorder n/a 103 159
low_complexity n/a 116 129
Pfam OPT 165 873
transmembrane n/a 170 188
transmembrane n/a 194 213
transmembrane n/a 294 312
transmembrane n/a 318 337
transmembrane n/a 358 383
transmembrane n/a 395 416
transmembrane n/a 428 452
transmembrane n/a 499 520
low_complexity n/a 514 524
disorder n/a 550 554
disorder n/a 561 562
transmembrane n/a 594 615
transmembrane n/a 621 644
transmembrane n/a 774 793
transmembrane n/a 813 835
transmembrane n/a 856 875

Show or hide domain scores.

Sequence information

This is the amino acid sequence of the UniProt sequence database entry with the accession A0A0D2GX87. 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
MSRGLLLIRS SPAVGTGSYG TVQLVNDRSG SDLESEDEED SHRESVSRKR
50
51
RGKRARSAQD LRDGQGRSSD ERLLYQQRRS SEWTHRRSSS SVASEVGMGL
100
101
DAKASFANPA MAGSKAESSN SSARTASLSD VDQEYIPSTE DPPDNSPYPE
150
151
VRASVPATDN TALSISTPRM WTLSLLFAIG GSATNLFFSL RYPSVAITPV
200
201
IALVLVHPMG KLWDHLLKRA DDQEQFFVNG SLQKDDIPMF QTRLRRLRLW
250
251
LAQGRWNEKE HACVYISSNV SFGFAFATDV IVEQHKFYKQ DVPILYQLLL
300
301
TISTQILGYA FAGLTRRYLV RPAAMIWPGT LMSTAMFSTM HKDENKPANG
350
351
WTISRYRFFL YVWAAAFVWY FFPGLLMPAL SYFNVITWFA PKNVVVSNLF
400
401
GVASGLGLFP LTFDWAQIAY IGSPLLTPWW AAANVVGGLI LVMWIIAPIL
450
451
YYRNVLFSGY LPILSSAVFD NTGKPYDVSK ILTPNFVFDK EAYDNYSKVY
500
501
LPITYVLSYG VQFAALTALL THTTCWHGRD VWRQSQQAFQ ERQEKSSAGY
550
551
QPVPSSAENG RYDPSLRRVD SQSIKAGGED VHNRLMKRYQ DVPMTWYALT
600
601
FVTMLGVGIF VVEYYPVHLP WYGLLMALGI TTVLFIPVGI VMAITNQHSS
650
651
LYLICQLICG VVFPGRPVAN MVFVTYCYIS SAQGIKFSSD LKLGHYMKIP
700
701
PRLLFKVQMA ATLVSSLVQI TVLNWMFINI PGICTPEAIN GFNCPIARVH
750
751
FNGSILWGVV GPQRFFGPGA LYRHLVWAFL IGFIAPILVW LVGRKSTKKS
800
801
VWRRINLPVL FGSLSWIPPA TGLNFSVWAV VCFLFNGLMR RRAPGWWGKY
850
851
TMTMSAALDS GLAFSLLIVF FGFVYPGWTE GFKWWGTEVY KQGCDWRACP
900
901
WLKLGPGEKF GP                                         
912
 

Show the unformatted sequence.

Checksums:
CRC64:D0FB13A4332DE233
MD5:5463cf3afd18cd9cb4f6c0af1579ba04

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;