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0  structures 1  species 0  interactions 1  sequence 1  architecture

Protein: A0A077ZCA7_TRITR (A0A077ZCA7)

Summary

This is the summary of UniProt entry A0A077ZCA7_TRITR (A0A077ZCA7).

Description: Pyruvate carboxylase {ECO:0000256|ARBA:ARBA00013057, ECO:0000256|PIRNR:PIRNR001594}
Source organism: Trichuris trichiura (Whipworm) (Trichocephalus trichiurus) (NCBI taxonomy ID 36087)
Length: 1183 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
sig_p n/a 1 19
Pfam Biotin_carb_N 33 143
Pfam CPSase_L_D2 148 357
low_complexity n/a 195 203
Pfam Biotin_carb_C 372 480
disorder n/a 516 517
Pfam HMGL-like 560 835
low_complexity n/a 688 700
Pfam PYC_OADA 858 1059
disorder n/a 1098 1100
disorder n/a 1102 1107
Pfam Biotin_lipoyl 1108 1175
disorder n/a 1158 1159
disorder n/a 1169 1180
disorder n/a 1182 1183

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Sequence information

This is the amino acid sequence of the UniProt sequence database entry with the accession A0A077ZCA7. 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
MRPRQILSLL PTLCRLRVRQ IVIKADNGQP RREFKKVLVA NRGEIAIRVF
50
51
RALTELHIRS VAIYSEEDRM HMHRLKADEA YLIGQGLSPV AAYLNIKEIV
100
101
DIAREHNVDA VHPGYGFLSE QAEFAQACLD AGIAFIGPSP QVMRRMGDKV
150
151
AARKAALEAG VTVVPGIDTP TEGVTEVLQF GLEHGFPIIL KAAYGGGGRG
200
201
MRRVNAAEEV HEAFARATSE SKAAFGNGAL FVEKFIERPR HIEVQILGDH
250
251
YGNILHLYER DCSVQRRHQK IVEIAPAPNL KSDIRQKMLD DALRLAKHVG
300
301
YQNAGTVEFL LEPNGCHYFI EVNARLQVEH TVTEEVTGID LVQAQIRIAE
350
351
GKSIKELDLT QQSVTPVGSA IQCRVTTEDP GMNFQPDSGR IEVFRCGEGM
400
401
GIRIDSASAF AGAIISPYYD SLLVKIIAHS RSYPDTIDKM IRALMEFRVR
450
451
GVKTNVPFLL NVLSNSKFRD SSVDTCFIDE NPQLFQFTPS QNRAQRLLTF
500
501
LKEVKVNGPM TPLVTNIPPR KEIPEVPNFD HIPLRKGWRN VFLEKGADGF
550
551
AKAVRNHKGT LLSDTTFRDA HQSLLATRVR TYDLKRISPF VARALPQLFS
600
601
LEMWGGATFD VALRFLRECP WSRLEELREQ IPNIPFQMLL RGTNAVGYSS
650
651
YPDNVIYKFC EQAKQYGIDV FRVFDSLNYM PNLLLGIEAS ASAGGVVEAA
700
701
ISYTGDVSDP SRTKYDLKYY LSLADEIVQA GTHILCIKDM AGLLKPKAAK
750
751
ILVSALRERY PELPIHVHSH DTAGAAVASM LACAEAGADI VDVAVDSMSG
800
801
MTSQPSMGAM VAILSGTDLE TGMKLSDVSK YSSYCETMRL LYGPFECTQT
850
851
MKSGNADVYI HEIPGGQYTN LQFQAFSLGL GKKFEEIKKA YADANRLLGD
900
901
LIKVTPTSKM VGDLAQFMVT NKLTAEQVAQ SADQLSLPES VIEFMQGYIG
950
951
QPPYGFPEPL RTKILRDRKC MEKRPGAVLP PVNFDLLKSQ LEDKYGAKTI
1000
1001
RDVDVISYAL YPKVTEEFLA FRNIYGPVDK LPTRAFFIGL DNGEEIDVEL
1050
1051
EKGKTLHIKM LAKSELNAVG EREVFLELNG QLRSFLVIDK EATSGAAAKR
1100
1101
RADPSVKGSI GAPMPGDVLQ INVKVGDRVK VKTPLAVISA MKMEMVIESP
1150
1151
VNGVVKTIVT QPNSRCDAGD LLMEIEEEKS STT                  
1183
 

Show the unformatted sequence.

Checksums:
CRC64:42137572E3A76A10
MD5:d802e15d5d1146fd9a58f33e1bf5b2e6

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;