The Binding Site of Neuropeptide Vasopressin V1a Receptor
Сайт связывания нейропептида рецептора вазопрессина V1a
1995-10-01
SCID: 54.1/vheum8sk
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V1a vasopressin receptoragonist binding sitesite-directed mutagenesistransmembrane helicesvasopressin (AVP)
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Abstract (AI)
To identify receptor functional domains underlying binding of the neurohypophysial hormones vasopressin (AVP) and oxytocin (OT), we have constructed a three-dimensional (3D) model of the V1a vasopressin receptor subtype and docked the endogenous ligand AVP. To verify and to refine the 3D model, residues likely to be involved in agonist binding were selected for site-directed mutagenesis. Our experimental results suggest that AVP, which is characterized by a cyclic structure, could be completely buried into a 15-20-A deep cleft defined by the transmembrane helices of the receptor and interact with amino acids located within this region. Moreover, the AVP-binding site is situated in a position equivalent to that described for the cationic neurotransmitters. Since all mutated residues are highly conserved in AVP and OT receptors, we propose that the same agonist-binding site is shared by all members of this receptor family. In contrast, the affinity for the antagonists tested, including those with a structure closely related to AVP, is not affected by mutations. This indicates a different binding mode for agonists and antagonists in the vasopressin receptor.
Key Findings
1
A three-dimensional V1a vasopressin receptor model identified transmembrane-helical residues potentially forming the AVP agonist-binding site.
2
Conserved mutated residues suggest that vasopressin and oxytocin receptors share a common agonist-binding site.
3
Mutations did not alter antagonist affinity, indicating that vasopressin receptor agonists and antagonists use different binding modes.
4
Site-directed mutagenesis supported a model in which cyclic AVP is deeply buried within a 15–20 Å cleft between transmembrane helices.
5
The AVP-binding site occupies a position equivalent to binding sites for cationic neurotransmitters.
Research Object
V1a vasopressin receptor
Research Subject
The receptor binding site and binding modes of the agonist vasopressin (AVP) and antagonists, including the functional residues and shared agonist-binding architecture
Publication Details
Publication Date
1995-10-01
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