Aliases : ELF4-L3
Description : component *(ELF4) of circadian clock Evening complex (EC) & original description: none
Gene families : OG0000582 (OrthoFinder output from all 47 species) Phylogenetic Tree(s): OG0000582_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: Dde_g10013 | |
Cluster | HCCA: Cluster_136 |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
No GO annotation available for this sequence |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
MF | GO:0003697 | single-stranded DNA binding | IEP | HCCA |
MF | GO:0004000 | adenosine deaminase activity | IEP | HCCA |
MF | GO:0005524 | ATP binding | IEP | HCCA |
CC | GO:0005634 | nucleus | IEP | HCCA |
BP | GO:0006139 | nucleobase-containing compound metabolic process | IEP | HCCA |
BP | GO:0006259 | DNA metabolic process | IEP | HCCA |
BP | GO:0006281 | DNA repair | IEP | HCCA |
BP | GO:0006396 | RNA processing | IEP | HCCA |
BP | GO:0006479 | protein methylation | IEP | HCCA |
BP | GO:0006725 | cellular aromatic compound metabolic process | IEP | HCCA |
BP | GO:0006807 | nitrogen compound metabolic process | IEP | HCCA |
BP | GO:0006950 | response to stress | IEP | HCCA |
BP | GO:0006974 | cellular response to DNA damage stimulus | IEP | HCCA |
BP | GO:0008150 | biological_process | IEP | HCCA |
BP | GO:0008152 | metabolic process | IEP | HCCA |
MF | GO:0008168 | methyltransferase activity | IEP | HCCA |
MF | GO:0008170 | N-methyltransferase activity | IEP | HCCA |
BP | GO:0008213 | protein alkylation | IEP | HCCA |
MF | GO:0008276 | protein methyltransferase activity | IEP | HCCA |
MF | GO:0008757 | S-adenosylmethionine-dependent methyltransferase activity | IEP | HCCA |
BP | GO:0009987 | cellular process | IEP | HCCA |
MF | GO:0016278 | lysine N-methyltransferase activity | IEP | HCCA |
MF | GO:0016279 | protein-lysine N-methyltransferase activity | IEP | HCCA |
BP | GO:0016570 | histone modification | IEP | HCCA |
BP | GO:0016571 | histone methylation | IEP | HCCA |
MF | GO:0016741 | transferase activity, transferring one-carbon groups | IEP | HCCA |
MF | GO:0016810 | hydrolase activity, acting on carbon-nitrogen (but not peptide) bonds | IEP | HCCA |
MF | GO:0016814 | hydrolase activity, acting on carbon-nitrogen (but not peptide) bonds, in cyclic amidines | IEP | HCCA |
BP | GO:0018022 | peptidyl-lysine methylation | IEP | HCCA |
MF | GO:0018024 | histone lysine N-methyltransferase activity | IEP | HCCA |
BP | GO:0018193 | peptidyl-amino acid modification | IEP | HCCA |
BP | GO:0018205 | peptidyl-lysine modification | IEP | HCCA |
MF | GO:0019239 | deaminase activity | IEP | HCCA |
BP | GO:0032259 | methylation | IEP | HCCA |
MF | GO:0032559 | adenyl ribonucleotide binding | IEP | HCCA |
BP | GO:0033554 | cellular response to stress | IEP | HCCA |
BP | GO:0034968 | histone lysine methylation | IEP | HCCA |
BP | GO:0036211 | protein modification process | IEP | HCCA |
MF | GO:0042054 | histone methyltransferase activity | IEP | HCCA |
MF | GO:0043167 | ion binding | IEP | HCCA |
BP | GO:0043170 | macromolecule metabolic process | IEP | HCCA |
BP | GO:0043412 | macromolecule modification | IEP | HCCA |
BP | GO:0043414 | macromolecule methylation | IEP | HCCA |
BP | GO:0044237 | cellular metabolic process | IEP | HCCA |
BP | GO:0044238 | primary metabolic process | IEP | HCCA |
BP | GO:0044260 | cellular macromolecule metabolic process | IEP | HCCA |
BP | GO:0046483 | heterocycle metabolic process | IEP | HCCA |
BP | GO:0051716 | cellular response to stimulus | IEP | HCCA |
BP | GO:0071704 | organic substance metabolic process | IEP | HCCA |
BP | GO:0090304 | nucleic acid metabolic process | IEP | HCCA |
MF | GO:0140096 | catalytic activity, acting on a protein | IEP | HCCA |
BP | GO:1901360 | organic cyclic compound metabolic process | IEP | HCCA |
InterPro domains | Description | Start | Stop |
---|---|---|---|
IPR009741 | EARLY_FLOWERING_4_dom | 16 | 96 |
No external refs found! |