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| Parameter | Value |
|---|---|
| Gene | RRN3 |
| Protein Name | RRN3_HUMAN |
| Organism | Homo sapiens (Human) |
| Alternative name(s) | RNA polymerase I-specific transcription initiation factor RRN3 (Transcription initiation factor IA) (TIF-IA) |
| Protein Family | RRN3 family |
| NCBI Gene ID | 54700 |
| UniProt ID | Q9NYV6 |
| Enzyme Class | - |
| Molecular Weight | 74107 |
| Protein Length | 651 |
| Protein Domain | InterPro | Pfam |
| 3D Structure |
PDBe |
PDBj |
RCSB PDB |
DrugPort
ModBase | SwissModel |
| Gene Expression | Gene Expression Atlas |
| Function and Disease | OMIM |
| Protein-protein Interaction Database | STRING | IntAct | MINT |
| Kinase Database | Phospho.ELM | PhosphoSite | NetworKIN |
| Catalytic Activity (UniProt annotation) | - |
| Localization | Nucleus, nucleolus |
| Function (UniProt annotation) | Required for efficient transcription initiation by RNA polymerase I. Required for the formation of the competent preinitiation complex (PIC). Dissociates from pol I as a consequence of transcription. In vitro, cannot activate transcription in a subsequent transcription reaction (By similarity). |
| Gene Ontology | GO:0001042; GO:0001164; GO:0001181; GO:0001701; GO:0005634; GO:0005654; GO:0005730; GO:0006361; GO:0007000; GO:0007028; GO:0008283; GO:0010976; GO:0042254; GO:0045893; GO:0048872; GO:1902254; GO:2000142 |
| Gene Name | Organism | P-Site | Sequence(+/-7) | Conservation | Disorder | Curator Assessment | Reliability | Evidence Class | Evidence Logic | PubMed | Phospho-ELM | PhosphoSite-Plus |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| RPS6KA3 (P51812) | Homo sapiens | S649 | PVLYMQPSPL_____ | 0.5 | 0.4901 | TP | certain | experimental | 3 | 23 | 73 | 273 | 9 | 72 | | 12620228 | - |
|
| PRKAA1 (Q13131) | Homo sapiens | S635 | DTHFRSPSSSVGSPP | 0.237 | 0.4087 | - | - | - | - | - | - |
|
| RPS6KA2 (Q15349) | Homo sapiens | S649 | PVLYMQPSPL_____ | 0.5 | 0.4901 | - | - | - | - | 12620228 | Non high throughput (12620228) |
|
Reactome Pathways
No KEGG pathways found
No NCI Nature pathways found