Description : Pyridoxal reductase, chloroplastic OS=Arabidopsis thaliana (sp|q56y42|plr1_arath : 474.0)
Gene families : OG_01_0002838 (OrthoFinder output from Ath, Cre, Mpo, Ppa and Zci) Phylogenetic Tree(s): OG0002838_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: Mp2g01180.1 | |
| Cluster | HCCA: Cluster_174 |
| 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 | HCCA |
| MF | GO:0003674 | molecular_function | IEP | HCCA |
| MF | GO:0003857 | 3-hydroxyacyl-CoA dehydrogenase activity | IEP | HCCA |
| MF | GO:0004797 | thymidine kinase activity | IEP | HCCA |
| MF | GO:0005488 | binding | IEP | HCCA |
| CC | GO:0005730 | nucleolus | IEP | HCCA |
| CC | GO:0005789 | endoplasmic reticulum membrane | IEP | HCCA |
| BP | GO:0006357 | regulation of transcription by RNA polymerase II | IEP | HCCA |
| BP | GO:0006743 | ubiquinone metabolic process | IEP | HCCA |
| BP | GO:0006744 | ubiquinone biosynthetic process | IEP | HCCA |
| BP | GO:0006873 | cellular ion homeostasis | IEP | HCCA |
| BP | GO:0006875 | cellular metal ion homeostasis | IEP | HCCA |
| BP | GO:0006879 | cellular iron ion homeostasis | IEP | HCCA |
| BP | GO:0006888 | endoplasmic reticulum to Golgi vesicle-mediated transport | IEP | HCCA |
| MF | GO:0008199 | ferric iron binding | IEP | HCCA |
| MF | GO:0008483 | transaminase activity | IEP | HCCA |
| MF | GO:0016409 | palmitoyltransferase activity | IEP | HCCA |
| CC | GO:0016592 | mediator complex | IEP | HCCA |
| MF | GO:0016769 | transferase activity, transferring nitrogenous groups | IEP | HCCA |
| MF | GO:0016887 | ATP hydrolysis activity | IEP | HCCA |
| BP | GO:0017004 | cytochrome complex assembly | IEP | HCCA |
| MF | GO:0019136 | deoxynucleoside kinase activity | IEP | HCCA |
| MF | GO:0019205 | nucleobase-containing compound kinase activity | IEP | HCCA |
| MF | GO:0019206 | nucleoside kinase activity | IEP | HCCA |
| BP | GO:0019725 | cellular homeostasis | IEP | HCCA |
| MF | GO:0019842 | vitamin binding | IEP | HCCA |
| CC | GO:0019898 | extrinsic component of membrane | IEP | HCCA |
| BP | GO:0022613 | ribonucleoprotein complex biogenesis | IEP | HCCA |
| BP | GO:0030003 | cellular cation homeostasis | IEP | HCCA |
| MF | GO:0030170 | pyridoxal phosphate binding | IEP | HCCA |
| MF | GO:0030554 | adenyl nucleotide binding | IEP | HCCA |
| MF | GO:0032559 | adenyl ribonucleotide binding | IEP | HCCA |
| MF | GO:0036094 | small molecule binding | IEP | HCCA |
| BP | GO:0042180 | cellular ketone metabolic process | IEP | HCCA |
| BP | GO:0042181 | ketone biosynthetic process | IEP | HCCA |
| BP | GO:0042254 | ribosome biogenesis | IEP | HCCA |
| BP | GO:0042592 | homeostatic process | IEP | HCCA |
| MF | GO:0043167 | ion binding | IEP | HCCA |
| MF | GO:0043168 | anion binding | IEP | HCCA |
| BP | GO:0046916 | cellular transition metal ion homeostasis | IEP | HCCA |
| BP | GO:0048878 | chemical homeostasis | IEP | HCCA |
| BP | GO:0050801 | ion homeostasis | IEP | HCCA |
| BP | GO:0055065 | metal ion homeostasis | IEP | HCCA |
| BP | GO:0055072 | iron ion homeostasis | IEP | HCCA |
| BP | GO:0055076 | transition metal ion homeostasis | IEP | HCCA |
| BP | GO:0055080 | cation homeostasis | IEP | HCCA |
| BP | GO:0055082 | cellular chemical homeostasis | IEP | HCCA |
| BP | GO:0055114 | obsolete oxidation-reduction process | IEP | HCCA |
| MF | GO:0070279 | vitamin B6 binding | IEP | HCCA |
| BP | GO:0098771 | inorganic ion homeostasis | IEP | HCCA |
| MF | GO:1901265 | nucleoside phosphate binding | IEP | HCCA |
| BP | GO:1901661 | quinone metabolic process | IEP | HCCA |
| BP | GO:1901663 | quinone biosynthetic process | IEP | HCCA |
| InterPro domains | Description | Start | Stop |
|---|---|---|---|
| IPR023210 | NADP_OxRdtase_dom | 31 | 331 |
| No external refs found! |