Graphics credits: COMPARTMENTS | More Info
Parameter | Value |
---|---|
Gene | HNRNPL |
Protein Name | HNRPL_HUMAN |
Organism | Homo sapiens (Human) |
Alternative name(s) | Heterogeneous nuclear ribonucleoprotein L (hnRNP L) |
Protein Family | N/A |
NCBI Gene ID | 3191 |
UniProt ID | P14866 |
Enzyme Class | - |
Molecular Weight | 64133 |
Protein Length | 589 |
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, nucleoplasm |
Function (UniProt annotation) | Splicing factor binding to exonic or intronic sites and acting as either an activator or repressor of exon inclusion. Exhibits a binding preference for CA-rich elements (PubMed:11809897, PubMed:22570490, PubMed:24164894, PubMed:25623890, PubMed:26051023). Component of the heterogeneous nuclear ribonucleoprotein (hnRNP) complexes and associated with most nascent transcripts (PubMed:2687284). Associates, together with APEX1, to the negative calcium responsive element (nCaRE) B2 of the APEX2 promoter (PubMed:11809897). |
Gene Ontology | GO:0000381; GO:0000398; GO:0003723; GO:0003730; GO:0005634; GO:0005654; GO:0005829; GO:0006396; GO:0007623; GO:0016020; GO:0016070; GO:0034198; GO:0035770; GO:0044212; GO:0045120; GO:0045727; GO:0048025; GO:0048471; GO:0070062; GO:0097157; GO:1901652; GO:1902416; GO:1990715; GO:1990904 |
Gene Name | Organism | P-Site | Sequence(+/-7) | Conservation | Disorder | Curator Assessment | Reliability | Evidence Class | Evidence Logic | PubMed | Phospho-ELM | PhosphoSite-Plus |
---|---|---|---|---|---|---|---|---|---|---|---|---|
CAMK4 (Q16566) | Homo sapiens | S544 | GKSERSSSGLLEWES | 0.656 | 0.3872 | TP | certain | experimental | 8 | 107 | 73 | 55 | 72 | 9 | | 22570490 | - |
|
Reactome Pathways
No KEGG pathways found
No NCI Nature pathways found