Description : expressed protein
Gene families : OG_42_0005562 (Orthogroups_2024-Update) Phylogenetic Tree(s): OG0005562_tree
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_Os01g32300 | |
Cluster | HCCA clusters: cluster_0034 |
Target | Alias | Description | ECC score | Gene Family Method | Actions |
---|---|---|---|---|---|
Bradi2g13767 | No alias | RNA polymerase II transcription elongation factor | 0.05 | Orthogroups_2024-Update | |
Seita.5G178500.1 | No alias | Unknown function | 0.03 | Orthogroups_2024-Update |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
No GO annotation available for this sequence |
Type | GO Term | Name | Evidence | Source |
---|---|---|---|---|
BP | GO:0000290 | deadenylation-dependent decapping of nuclear-transcribed mRNA | IEP | Predicted GO |
CC | GO:0000813 | ESCRT I complex | IEP | Predicted GO |
BP | GO:0000956 | nuclear-transcribed mRNA catabolic process | IEP | Predicted GO |
MF | GO:0004618 | phosphoglycerate kinase activity | IEP | Predicted GO |
MF | GO:0004749 | ribose phosphate diphosphokinase activity | IEP | Predicted GO |
MF | GO:0005515 | protein binding | IEP | Predicted GO |
BP | GO:0006401 | RNA catabolic process | IEP | Predicted GO |
BP | GO:0006402 | mRNA catabolic process | IEP | Predicted GO |
BP | GO:0006486 | protein glycosylation | IEP | Predicted GO |
BP | GO:0006753 | nucleoside phosphate metabolic process | IEP | Predicted GO |
BP | GO:0007186 | G protein-coupled receptor signaling pathway | IEP | Predicted GO |
BP | GO:0009117 | nucleotide metabolic process | IEP | Predicted GO |
BP | GO:0009165 | nucleotide biosynthetic process | IEP | Predicted GO |
BP | GO:0016192 | vesicle-mediated transport | IEP | Predicted GO |
BP | GO:0016197 | endosomal transport | IEP | Predicted GO |
MF | GO:0016740 | transferase activity | IEP | Predicted GO |
MF | GO:0016757 | transferase activity, transferring glycosyl groups | IEP | Predicted GO |
MF | GO:0016774 | phosphotransferase activity, carboxyl group as acceptor | IEP | Predicted GO |
MF | GO:0016778 | diphosphotransferase activity | IEP | Predicted GO |
BP | GO:0019439 | aromatic compound catabolic process | IEP | Predicted GO |
CC | GO:0030120 | vesicle coat | IEP | Predicted GO |
CC | GO:0030126 | COPI vesicle coat | IEP | Predicted GO |
MF | GO:0031072 | heat shock protein binding | IEP | Predicted GO |
BP | GO:0032509 | endosome transport via multivesicular body sorting pathway | IEP | Predicted GO |
BP | GO:0034655 | nucleobase-containing compound catabolic process | IEP | Predicted GO |
CC | GO:0036452 | ESCRT complex | IEP | Predicted GO |
BP | GO:0043085 | positive regulation of catalytic activity | IEP | Predicted GO |
BP | GO:0043413 | macromolecule glycosylation | IEP | Predicted GO |
BP | GO:0044093 | positive regulation of molecular function | IEP | Predicted GO |
BP | GO:0044270 | cellular nitrogen compound catabolic process | IEP | Predicted GO |
CC | GO:0044433 | cytoplasmic vesicle part | IEP | Predicted GO |
CC | GO:0044440 | endosomal part | IEP | Predicted GO |
BP | GO:0046700 | heterocycle catabolic process | IEP | Predicted GO |
BP | GO:0046907 | intracellular transport | IEP | Predicted GO |
BP | GO:0051641 | cellular localization | IEP | Predicted GO |
BP | GO:0051649 | establishment of localization in cell | IEP | Predicted GO |
BP | GO:0055086 | nucleobase-containing small molecule metabolic process | IEP | Predicted GO |
BP | GO:0070085 | glycosylation | IEP | Predicted GO |
BP | GO:0071985 | multivesicular body sorting pathway | IEP | Predicted GO |
BP | GO:0090407 | organophosphate biosynthetic process | IEP | Predicted GO |
BP | GO:1901293 | nucleoside phosphate biosynthetic process | IEP | Predicted GO |
BP | GO:1901361 | organic cyclic compound catabolic process | IEP | Predicted GO |
InterPro domains | Description | Start | Stop |
---|---|---|---|
IPR019194 | Tscrpt_elong_fac_Eaf_N | 19 | 117 |
No external refs found! |