Description : RING-type zinc-finger, LisH dimerisation motif; Smr domain [Interproscan].
Gene families : OG_01_0001481 (OrthoFinder) Phylogenetic Tree(s): OG0001481_tree
Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.
Type | Description | Actions |
---|---|---|
Neighborhood | HRR: EOD36532 | |
Cluster | HCCA: Cluster_16 |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
No GO annotation available for this sequence |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
MF | GO:0000166 | nucleotide binding | IEP | Enrichment |
MF | GO:0003674 | molecular_function | IEP | Enrichment |
MF | GO:0004386 | helicase activity | IEP | Enrichment |
MF | GO:0004672 | protein kinase activity | IEP | Enrichment |
MF | GO:0004674 | protein serine/threonine kinase activity | IEP | Enrichment |
MF | GO:0005488 | binding | IEP | Enrichment |
MF | GO:0005515 | protein binding | IEP | Enrichment |
MF | GO:0005524 | ATP binding | IEP | Enrichment |
CC | GO:0005783 | endoplasmic reticulum | IEP | Enrichment |
BP | GO:0006464 | cellular protein modification process | IEP | Enrichment |
BP | GO:0006468 | protein phosphorylation | IEP | Enrichment |
BP | GO:0006793 | phosphorus metabolic process | IEP | Enrichment |
BP | GO:0006796 | phosphate-containing compound metabolic process | IEP | Enrichment |
BP | GO:0006807 | nitrogen compound metabolic process | IEP | Enrichment |
MF | GO:0008094 | ATPase, acting on DNA | IEP | Enrichment |
BP | GO:0008150 | biological_process | IEP | Enrichment |
BP | GO:0008152 | metabolic process | IEP | Enrichment |
BP | GO:0009987 | cellular process | IEP | Enrichment |
MF | GO:0016301 | kinase activity | IEP | Enrichment |
BP | GO:0016310 | phosphorylation | IEP | Enrichment |
MF | GO:0016462 | pyrophosphatase activity | IEP | Enrichment |
MF | GO:0016772 | transferase activity, transferring phosphorus-containing groups | IEP | Enrichment |
MF | GO:0016773 | phosphotransferase activity, alcohol group as acceptor | IEP | Enrichment |
MF | GO:0016817 | hydrolase activity, acting on acid anhydrides | IEP | Enrichment |
MF | GO:0016818 | hydrolase activity, acting on acid anhydrides, in phosphorus-containing anhydrides | IEP | Enrichment |
MF | GO:0017076 | purine nucleotide binding | IEP | Enrichment |
MF | GO:0017111 | nucleoside-triphosphatase activity | IEP | Enrichment |
BP | GO:0019538 | protein metabolic process | IEP | Enrichment |
MF | GO:0030554 | adenyl nucleotide binding | IEP | Enrichment |
MF | GO:0032553 | ribonucleotide binding | IEP | Enrichment |
MF | GO:0032555 | purine ribonucleotide binding | IEP | Enrichment |
MF | GO:0032559 | adenyl ribonucleotide binding | IEP | Enrichment |
MF | GO:0035639 | purine ribonucleoside triphosphate binding | IEP | Enrichment |
MF | GO:0036094 | small molecule binding | IEP | Enrichment |
BP | GO:0036211 | protein modification process | IEP | Enrichment |
MF | GO:0043167 | ion binding | IEP | Enrichment |
MF | GO:0043168 | anion binding | IEP | Enrichment |
BP | GO:0043170 | macromolecule metabolic process | IEP | Enrichment |
BP | GO:0043412 | macromolecule modification | IEP | Enrichment |
BP | GO:0044237 | cellular metabolic process | IEP | Enrichment |
BP | GO:0044238 | primary metabolic process | IEP | Enrichment |
BP | GO:0044260 | cellular macromolecule metabolic process | IEP | Enrichment |
BP | GO:0044267 | cellular protein metabolic process | IEP | Enrichment |
MF | GO:0051082 | unfolded protein binding | IEP | Enrichment |
MF | GO:0051537 | 2 iron, 2 sulfur cluster binding | IEP | Enrichment |
BP | GO:0071704 | organic substance metabolic process | IEP | Enrichment |
MF | GO:0097159 | organic cyclic compound binding | IEP | Enrichment |
MF | GO:0097367 | carbohydrate derivative binding | IEP | Enrichment |
MF | GO:1901265 | nucleoside phosphate binding | IEP | Enrichment |
MF | GO:1901363 | heterocyclic compound binding | IEP | Enrichment |
BP | GO:1901564 | organonitrogen compound metabolic process | IEP | Enrichment |
No external refs found! |