Filter results by: Taxon Proteome
1 - 50 of 136324 UniProtKB matches
(84754 models, 6865 structures.)
UniProtKB AC
(Name)
UniProtKB Section
 
Homology Model
 
Experimental Structure
OrganismDescription
Q9SHD1
(EXPB4_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Expansin-B4;
Ath-ExpBeta-1.1;
Beta-expansin-4;
Q9LRL2
(CRR25_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Putative cysteine-rich repeat secretory protein 25;
O48533
(PYM_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein POLYCHOME;
Protein UV-B-INSENSITIVE 4;
O82798
(ARR4_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Two-component response regulator ARR4;
Response regulator 1;
Q9SE96
(GEML1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
GEM-like protein 1;
Forming homology-interacting protein 1;
Q01525
(14332_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
14-3-3-like protein GF14 omega;
General regulatory factor 2;
P42814
(RNS2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Ribonuclease 2;
Q9LYN2
(FRI3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Ferritin-3, chloroplastic;
Q9LQ08
(BH125_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Transcription factor bHLH125;
Basic helix-loop-helix protein 125;
Transcription factor EN 2;
bHLH transcription factor bHLH125;
Q9ASS6
(PNSL5_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Photosynthetic NDH subunit of lumenal location 5, chloroplastic;
Cyclophilin of 20 kDa 2;
Peptidyl-prolyl cis-trans isomerase CYP20-2;
Rotamase CYP20-2;
Thylakoid lumen PPIase of 20 kDa;
Q9LP56
(WRK65_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable WRKY transcription factor 65;
WRKY DNA-binding protein 65;
Q8LG70
(6PGL2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable 6-phosphogluconolactonase 2;
P0C8Q9
(Y5902_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Uncharacterized protein At5g19025;
Q9AST3
(SBH2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Sphinganine C4-monooxygenase 2;
Sphingoid C4-hydroxylase 2;
Sphingoid base hydroxylase 2;
Q9XIP8
(CDI_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Protein CDI;
Protein CADMIUM INDUCED;
Q58FZ0
(NAKR2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein SODIUM POTASSIUM ROOT DEFECTIVE 2;
Heavy metal-associated plant protein 3;
Q9C8P8
(BH080_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Transcription factor bHLH80;
Basic helix-loop-helix protein 80;
Transcription factor EN 71;
bHLH transcription factor bHLH080;
F4J300
(SDR5_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Short-chain dehydrogenase reductase 5;
Q9FLT9
(HP302_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Chloroplastic import inner membrane translocase subunit HP30-2;
Hypothetical inner plastid envelope protein of 30 kDa 2;
Q9LKA0
(IQD10_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein IQ-DOMAIN 10;
Q9LFD5
(BPA1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Binding partner of ACD11 1;
Q93V51
(PSE1_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Protein LEAD-SENSITIVE 1;
Q6NQN5
(SWET3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Bidirectional sugar transporter SWEET3;
Protein SUGARS WILL EVENTUALLY BE EXPORTED TRANSPORTERS 3;
Q9FMX0
(SODF3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Superoxide dismutase [Fe] 3, chloroplastic;
Protein FE SUPEROXIDE DISMUTASE 3;
O80474
(MES4_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Methylesterase 4;
Alpha/beta fold hydrolase/esterase 4;
Q38942
(RAE1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein RAE1;
RNA export factor 1;
Q9LZT5
(EXLA3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Expansin-like A3;
Ath-ExpBeta-2.3;
Q42029
(PSBP1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Oxygen-evolving enhancer protein 2-1, chloroplastic;
23 kDa subunit of oxygen evolving system of photosystem II;
23 kDa thylakoid membrane protein;
OEC 23 kDa subunit;
Q9LY29
(EF115_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Ethylene-responsive transcription factor ERF115;
Q9LV60
(CRR55_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Cysteine-rich repeat secretory protein 55;
Q8L8W0
(ALIS5_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
ALA-interacting subunit 5;
Q9FX85
(PER10_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Peroxidase 10;
ATP5a;
O82279
(CG160_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Protein CONSERVED ONLY IN THE GREEN LINEAGE 160, chloroplastic;
Q67ZI9
(GDL48_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
GDSL esterase/lipase At2g42990;
Extracellular lipase At2g42990;
Q8L4R0
(TGD1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein TRIGALACTOSYLDIACYLGLYCEROL 1, chloroplastic;
ABC transporter I family member 14;
O81850
(IRT2_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Fe(2+) transport protein 2;
Fe(II) transport protein 2;
Iron-regulated transporter 2;
Q9LMB0
(FB10_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Putative F-box protein At1g19160;
Q9FIH5
(URGT3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
UDP-rhamnose/UDP-galactose transporter 3;
Bi-functional UDP-rhamnose/UDP-galactose transporter;
Q680C0
(GDL62_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
GDSL esterase/lipase At4g10955;
Q9LDR8
(MY102_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Transcription factor MYB102;
Myb-related protein 102;
Myb-related protein M4;
Q9SKB6
(MRL7L_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Thioredoxin-like fold domain-containing protein MRL7L, chloroplastic;
Protein MESOPHYLL-CELL RNAI LIBRARY LINE 7-LIKE;
Protein NUCLEAR CONTROL OF PEP ACTIVITY;
Protein SUPPRESSOR OF VARIEGATION 4-LIKE;
Q9XEC1
(Y4443_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable transposase-like protein At4g04430;
Q9FV50
(MAP1D_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Methionine aminopeptidase 1D, chloroplastic/mitochondrial;
Peptidase M 1D;
E0X9N4
(C3H69_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Putative RING-type E3 ubiquitin transferase C3H69;
Zinc finger CCCH domain-containing protein 69;
Q9ZUB9
(FB17_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Putative F-box protein At1g23770;
Q9C9C9
(SOT18_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Cytosolic sulfotransferase 18;
Desulfo-glucosinolate sulfotransferase B;
Sulfotransferase 5B;
Q9LTW0
(ALIS1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
ALA-interacting subunit 1;
ALA3 beta-subunit 1;
Q8L518
(CK2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable choline kinase 2;
Q9M1T1
(SETH3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable arabinose 5-phosphate isomerase;
CBS domain-containing protein CBSSIS1;
Q8W593
(LGUC_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable lactoylglutathione lyase, chloroplastic;
Glyoxalase I;
1 - 50 of 136324
Arabidopsis thaliana (Mouse-ear cress)

Arabidopsis thaliana is a small flowering plant native to Eurasia. A. thaliana is considered a weed; it is found by roadsides and in disturbed lands.

A winter annual with a relatively short life cycle, Arabidopsis is a popular model organism in plant biology and genetics. For a complex multicellular eukaryote, A. thaliana has a relatively small genome of approximately 135 megabase pairs. It was the first plant to have its genome sequenced, and is a popular tool for understanding the molecular biology of many plant traits, including flower development and light sensing.

The genome of A. thaliana was sequenced in 2000.

"Arabidopsis thaliana", Wikipedia: The Free Encyclopedia

Protein models in Repository

From left to right: i) The number of proteins in the reference proteome of Arabidopsis thaliana, ii) the number of unique protein sequences for which at least one model is available, iii) the total number of models and iv) a coverage bar plot is shown.
The bar plot shows the coverage for every protein in the reference proteome of Arabidopsis thaliana for which there is at least one model. Different colours (dark green to red boxes) represent the coverage of the targets. Targets with high coverage are represented in dark green (more than 80% of the target's length is covered by models), whereas low coverage is shown in red. The size of each box is proportional to the number of target sequences with a given coverage.

For information on the latest proteome for Arabidopsis thaliana, please visit UniProtKB.

You can easily download the latest protein sequences for Arabidopsis thaliana proteome here. Please note this download is for the current UniProtKB release, which may be different to release 2025_04 that was used for the most up to date SWISS-MODEL Repository.

Proteins in proteomeSequences modelledModels
27,44820,84138,762

Detailed coverage numbers are obtained by hovering the mouse over one of the boxes.

Structural Coverage

The plot shows the evolution over years (x-axis) of the fraction of Arabidopsis thaliana reference proteome residues (y-axis) for which structural information is available. Different colors (light blue to dark blue) in the plot represent the quality of the sequence alignment between the reference proteome sequences (targets) and the sequences of the proteins in the structure database (templates). Alignments with low sequence identity are displayed in light blue, whereas alignments with high sequence identity are depicted in dark blue. The SWISS-MODEL Template Library is used as database of templates. Only target-template alignments found by HHblits and only residues with atom coordinates are considered.

Residue Coverage

This chart shows the percentage of residues in the Arabidopsis thaliana proteome which are covered by experimental structures and the enhancement of coverage by homology modelling by the SWISS-MODEL pipeline. Experimental residue coverage is determined using SIFTS mapping. For residues which are not covered by experimental structures (including where there are no atom records in SIFTS mapping) the model coverage bars are coloured by QMEANDisCo local quality score.

Oligomeric State

Many proteins form oligomeric structures either by self-assembly (homo-oligomeric) or by assembly with other proteins (hetero-oligomeric) to accomplish their function. In SWISS-MODEL Repository, the quaternary structure annotation of the template is used to model the target sequence in its oligomeric form. Currently our method is limited to the modelling of homo-oligomeric assemblies. The oligomeric state of the template is only considered if the interface is conserved.

Single Chain2-mer3-mer4-mer5-mer6-mer7-mer8-mer9-mer10-mer11-mer12-mer14-mer15-mer16-mer18-mer24-mer32-mer35-mer36-mer40-mer48-mer51-mer60-mer62-mer
32,1994,6933677743031869488193104203401238111312143
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