Filter results by: Taxon Proteome
1 - 50 of 54642 UniProtKB matches
(64646 models, 4748 structures.)
UniProtKB AC
(Name)
UniProtKB Section
 
Homology Model
 
Experimental Structure
OrganismDescription
Q84JC2
(DOGL4_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein DOG1-like 4;
Q8VY52
(PPD2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
PsbP domain-containing protein 2, chloroplastic;
PsbP-related thylakoid lumenal protein 3;
P35632
(AP3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Floral homeotic protein APETALA 3;
O82169
(MORF6_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Multiple organellar RNA editing factor 6, mitochondrial;
RNA editing-interacting protein 6;
Q9SSQ8
(HS26M_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
26.5 kDa heat shock protein, mitochondrial;
Q0WQQ1
(AGD15_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable ADP-ribosylation factor GTPase-activating protein AGD15;
Protein ARF-GAP DOMAIN 15;
O22922
(RU2B1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
U2 small nuclear ribonucleoprotein B'';
Q9C8J4
(SPP1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable sucrose-phosphatase 1;
Q93XN8
(SPP3B_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable sucrose-phosphatase 3b;
Q9ZQH0
(COAE_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Dephospho-CoA kinase;
AtCoaE;
Dephosphocoenzyme A kinase;
Q9LQQ8
(PBL5_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable serine/threonine-protein kinase PBL5;
PBS1-like protein 5;
Serine/threonine-protein kinase RLCKVII;
Q8GWQ6
(Y6344_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
UPF0235 protein At5g63440;
Q7XA83
(IQD16_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein IQ-DOMAIN 16;
Q9SRS3
(YMG11_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
YlmG homolog protein 1-1, chloroplastic;
YGGT family protein YLMG1-1;
Q9FY60
(MYB64_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Transcription factor MYB64;
Myb-related protein 64;
Protein UAS-TAGGED ROOT PATTERNING 10;
Q9FJF5
(SOK5_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein SOSEKI 5;
Q9ZQR4
(Y2452_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
DUF21 domain-containing protein At2g14520;
CBS domain-containing protein CBSDUF3;
Q9LM71
(FKB18_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Peptidyl-prolyl cis-trans isomerase FKBP18, chloroplastic;
FK506-binding protein 18;
Immunophilin FKBP18;
Rotamase;
O48646
(GPX6_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable phospholipid hydroperoxide glutathione peroxidase 6, mitochondrial;
Q9LPZ1
(MORF9_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Multiple organellar RNA editing factor 9, chloroplastic;
RNA editing-interacting protein 9;
Q9C5D7
(CAMT3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable caffeoyl-CoA O-methyltransferase At4g26220;
Trans-caffeoyl-CoA 3-O-methyltransferase;
Q9SSQ2
(FB55_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
F-box protein At1g52495;
Q9C9W3
(CAMT1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Putative caffeoyl-CoA O-methyltransferase At1g67980;
Trans-caffeoyl-CoA 3-O-methyltransferase;
Q9LIK6
(CP26A_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Peptidyl-prolyl cis-trans isomerase CYP26-1;
Cyclophilin of 26 kDa 1;
Cyclophilin-26-1;
Q9SUB0
(DOF43_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Dof zinc finger protein DOF4.3;
Q8GYM3
(AUG4_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
AUGMIN subunit 4;
Q6NPN4
(LYM3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
LysM domain-containing GPI-anchored protein 3;
O22718
(ACLA2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
ATP-citrate synthase alpha chain protein 2;
ATP-citrate lyase A-2;
Citrate cleavage enzyme A-2;
O04719
(P2C77_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein phosphatase 2C 77;
Protein ABSCISIC ACID-INSENSITIVE 2;
Protein phosphatase 2C ABI2;
Q8VZ56
(AMY1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Alpha-amylase 1;
1,4-alpha-D-glucan glucanohydrolase;
Q8LC76
(CYT7_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Cysteine proteinase inhibitor 7;
Q0WPA5
(MSR2_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
Protein MANNAN SYNTHESIS-RELATED 2;
O-fucosyltransferase 12;
O-fucosyltransferase family protein;
Q9SA23
(SYP51_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Syntaxin-51;
Q9LNC2
(PLA18_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Phospholipase A1-IIalpha;
Q93WU7
(WRK58_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Probable WRKY transcription factor 58;
WRKY DNA-binding protein 58;
Q9ZV53
(ATL49_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Putative RING-H2 finger protein ATL49;
Protein MATERNAL EFFECT EMBRYO ARREST 16;
RING-type E3 ubiquitin transferase ATL49;
Q9LXF8
(AVT1J_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Amino acid transporter AVT1J;
Q941D6
(HDA14_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Histone deacetylase 14, chloroplastic;
N-acetylserotonin deacetylase;
O49639
(CDS2_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Phosphatidate cytidylyltransferase 2;
CDP-DAG synthase 2;
CDP-DG synthase 2;
CDP-diacylglycerol synthase 2;
CDP-diglyceride pyrophosphorylase 2;
CDP-diglyceride synthase 2;
CTP:phosphatidate cytidylyltransferase 2;
Q9FJ90
(ERF25_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Ethylene-responsive transcription factor ERF025;
Q9SK08
(LBD11_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
LOB domain-containing protein 11;
ASYMMETRIC LEAVES 2-like protein 7;
Q9CA57
(GSTUA_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Glutathione S-transferase U10;
GST class-tau member 10;
O23090
(BH014_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Transcription factor bHLH14;
Basic helix-loop-helix protein 14;
Transcription factor EN 33;
bHLH transcription factor bHLH014;
Q9SGY2
(ACLA1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
ATP-citrate synthase alpha chain protein 1;
ATP-citrate lyase A-1;
Citrate cleavage enzyme A-1;
Q9ZUY3
(AROD3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Arogenate dehydratase 3, chloroplastic;
Prephenate dehydratase 1;
O80526
(ACLA3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
ATP-citrate synthase alpha chain protein 3;
ATP-citrate lyase A-3;
Citrate cleavage enzyme A-3;
O04153
(CALR3_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Calreticulin-3;
Protein PRIORITY IN SWEET LIFE 1;
Q9ZVI1
(FB323_ARATH)
Swiss-ProtArabidopsis thaliana
(Mouse-ear cress)
F-box protein At2g38590;
Q8VYG2
(GALAK_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Galacturonokinase;
D-galacturonic acid-1-P kinase;
Q84JN2
(TIN1_ARATH)
Swiss-Prot
Arabidopsis thaliana
(Mouse-ear cress)
Protein TUNICAMYCIN INDUCED 1;
1 - 50 of 54642
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 2026_03 that was used for the most up to date SWISS-MODEL Repository.

Proteins in proteomeSequences modelledModels
27,49621,09538,970

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-mer23-mer24-mer32-mer36-mer39-mer40-mer41-mer48-mer51-mer60-mer62-mer
32,7454,392375746293196936820310020336212381112112143
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