LOC_Os04g58710


Description : AMP-binding domain containing protein, expressed


Gene families : OG_42_0004055 (Orthogroups_2024-Update) Phylogenetic Tree(s): OG0004055_tree

Sequence : coding (download), protein (download)


Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.


Type Description Actions
Neighborhood Oryza release: LOC_Os04g58710
Cluster HCCA clusters: cluster_0028


Type GO Term Name Evidence Source
MF GO:0003824 catalytic activity IEA InterProScan predictions
Type GO Term Name Evidence Source
MF GO:0004357 glutamate-cysteine ligase activity IEP Predicted GO
MF GO:0004594 pantothenate kinase activity IEP Predicted GO
MF GO:0004721 phosphoprotein phosphatase activity IEP Predicted GO
MF GO:0005092 GDP-dissociation inhibitor activity IEP Predicted GO
CC GO:0005743 mitochondrial inner membrane IEP Predicted GO
BP GO:0006801 superoxide metabolic process IEP Predicted GO
BP GO:0006839 mitochondrial transport IEP Predicted GO
BP GO:0006848 pyruvate transport IEP Predicted GO
BP GO:0006850 mitochondrial pyruvate transmembrane transport IEP Predicted GO
BP GO:0007264 small GTPase mediated signal transduction IEP Predicted GO
MF GO:0008121 ubiquinol-cytochrome-c reductase activity IEP Predicted GO
MF GO:0008138 protein tyrosine/serine/threonine phosphatase activity IEP Predicted GO
MF GO:0008536 Ran GTPase binding IEP Predicted GO
BP GO:0015711 organic anion transport IEP Predicted GO
BP GO:0015718 monocarboxylic acid transport IEP Predicted GO
BP GO:0015849 organic acid transport IEP Predicted GO
BP GO:0015936 coenzyme A metabolic process IEP Predicted GO
BP GO:0015937 coenzyme A biosynthetic process IEP Predicted GO
BP GO:0016311 dephosphorylation IEP Predicted GO
MF GO:0016624 oxidoreductase activity, acting on the aldehyde or oxo group of donors, disulfide as acceptor IEP Predicted GO
MF GO:0016679 oxidoreductase activity, acting on diphenols and related substances as donors IEP Predicted GO
MF GO:0016681 oxidoreductase activity, acting on diphenols and related substances as donors, cytochrome as acceptor IEP Predicted GO
MF GO:0016879 ligase activity, forming carbon-nitrogen bonds IEP Predicted GO
MF GO:0016881 acid-amino acid ligase activity IEP Predicted GO
MF GO:0016903 oxidoreductase activity, acting on the aldehyde or oxo group of donors IEP Predicted GO
MF GO:0017016 Ras GTPase binding IEP Predicted GO
CC GO:0019866 organelle inner membrane IEP Predicted GO
MF GO:0030695 GTPase regulator activity IEP Predicted GO
CC GO:0031090 organelle membrane IEP Predicted GO
MF GO:0031267 small GTPase binding IEP Predicted GO
CC GO:0031966 mitochondrial membrane IEP Predicted GO
BP GO:0033865 nucleoside bisphosphate metabolic process IEP Predicted GO
BP GO:0033866 nucleoside bisphosphate biosynthetic process IEP Predicted GO
BP GO:0033875 ribonucleoside bisphosphate metabolic process IEP Predicted GO
BP GO:0034030 ribonucleoside bisphosphate biosynthetic process IEP Predicted GO
BP GO:0034032 purine nucleoside bisphosphate metabolic process IEP Predicted GO
BP GO:0034033 purine nucleoside bisphosphate biosynthetic process IEP Predicted GO
BP GO:0042398 cellular modified amino acid biosynthetic process IEP Predicted GO
BP GO:0046942 carboxylic acid transport IEP Predicted GO
MF GO:0051020 GTPase binding IEP Predicted GO
MF GO:0051537 2 iron, 2 sulfur cluster binding IEP Predicted GO
MF GO:0060589 nucleoside-triphosphatase regulator activity IEP Predicted GO
BP GO:0071702 organic substance transport IEP Predicted GO
BP GO:0072593 reactive oxygen species metabolic process IEP Predicted GO
BP GO:0098656 anion transmembrane transport IEP Predicted GO
BP GO:1901475 pyruvate transmembrane transport IEP Predicted GO
BP GO:1903825 organic acid transmembrane transport IEP Predicted GO
BP GO:1905039 carboxylic acid transmembrane transport IEP Predicted GO
BP GO:1990542 mitochondrial transmembrane transport IEP Predicted GO
InterPro domains Description Start Stop
IPR000873 AMP-dep_Synth/Lig 11 415
IPR025110 AMP-bd_C 424 499
No external refs found!