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Parameter | Value |
---|---|
Gene | GABBR1 |
Protein Name | GABR1_HUMAN |
Organism | Homo sapiens (Human) |
Alternative name(s) | Gamma-aminobutyric acid type B receptor subunit 1 (GABA-B receptor 1) (GABA-B-R1) (GABA-BR1) (GABABR1) (Gb1) |
Protein Family | G-protein coupled receptor 3 family |
NCBI Gene ID | 2550 |
UniProt ID | Q9UBS5 |
Enzyme Class | - |
Molecular Weight | 108320 |
Protein Length | 961 |
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 | Cell membrane |
Function (UniProt annotation) | Component of a heterodimeric G-protein coupled receptor for GABA, formed by GABBR1 and GABBR2 (PubMed:9872316, PubMed:9872744, PubMed:15617512, PubMed:18165688, PubMed:22660477, PubMed:24305054). Within the heterodimeric GABA receptor, only GABBR1 seems to bind agonists, while GABBR2 mediates coupling to G proteins (PubMed:18165688). Ligand binding causes a conformation change that triggers signaling via guanine nucleotide-binding proteins (G proteins) and modulates the activity of down-stream effectors, such as adenylate cyclase (PubMed:10906333, PubMed:10773016, PubMed:10075644, PubMed:9872744, PubMed:24305054). Signaling inhibits adenylate cyclase, stimulates phospholipase A2, activates potassium channels, inactivates voltage-dependent calcium-channels and modulates inositol phospholipid hydrolysis (PubMed:10075644). Calcium is required for high affinity binding to GABA (By similarity). Plays a critical role in the fine-tuning of inhibitory synaptic transmission (PubMed:9844003). Pre-synaptic GABA receptor inhibits neurotransmitter release by down-regulating high-voltage activated calcium channels, whereas postsynaptic GABA receptor decreases neuronal excitability by activating a prominent inwardly rectifying potassium (Kir) conductance that underlies the late inhibitory postsynaptic potentials (PubMed:9844003, PubMed:9872316, PubMed:10075644, PubMed:9872744, PubMed:22660477). Not only implicated in synaptic inhibition but also in hippocampal long-term potentiation, slow wave sleep, muscle relaxation and antinociception (Probable). Activated by (-)-baclofen, cgp27492 and blocked by phaclofen (PubMed:9844003, PubMed:9872316, PubMed:24305054).; Isoform 1E may regulate the formation of functional GABBR1/GABBR2 heterodimers by competing for GABBR2 binding. This could explain the observation that certain small molecule ligands exhibit differential affinity for central versus peripheral sites. |
Gene Ontology | GO:0004965; GO:0005576; GO:0005737; GO:0005886; GO:0005887; GO:0007186; GO:0007193; GO:0007194; GO:0007214; GO:0030054; GO:0030425; GO:0038039; GO:0042734; GO:0045211; GO:0098685; GO:0098982; GO:0099579 |
Gene Name | Organism | P-Site | Sequence(+/-7) | Conservation | Disorder | Curator Assessment | Reliability | Evidence Class | Evidence Logic | PubMed | Phospho-ELM | PhosphoSite-Plus |
---|---|---|---|---|---|---|---|---|---|---|---|---|
PRKAA1 (Q13131) | Homo sapiens | S918 | ELRHQLQSRQQLRSR | 0.073 | 0.6427 | - | - | - | - | - | - |
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Reactome Pathways
No KEGG pathways found
No NCI Nature pathways found