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Identification of an extracellular segment of the oxytocin receptor providing agonist-specific binding epitopes
S R Hawtin1, H C Howard, M Wheatley
1School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, U.K.
Abstract:
The effects of the peptide hormone oxytocin are mediated by oxytocin receptors (OTRs) expressed by the target tissue. The OTR is a member of the large family of G-protein-coupled receptors. Defining differences between the interaction of agonists and antagonists with the OTR at the molecular level is of fundamental importance, and is addressed in this study. Using truncated and chimaeric receptor constructs, we establish that a small 12-residue segment in the distal portion of the N-terminus of the human OTR provides important epitopes which are required for agonist binding. In contrast, this segment does not contribute to the binding site for antagonists, whether peptide or non-peptide. It does, however, have a role in agonist-induced OTR signalling. Oxytocin is also an agonist at the vasopressin V(1a) receptor (V(1a)R). A chimaeric receptor (V(1a)R(N)-OTR) was engineered in which the N-terminus of the OTR was substituted by the corresponding, but unrelated, sequence from the N-terminus of the V(1a)R. We show that the V(1a)R N-terminus present in V(1a)R(N)-OTR fully restored both agonist binding and intracellular signalling to a dysfunctional truncated OTR construct. The N-terminal segment does not, however, contribute to receptor-selective agonism between the OTR and the V(1a)R. Our data establish a key role for the distal N-terminus of the OTR in providing agonist-specific binding epitopes.
Insights
The oxytocin receptor's N-terminus binds agonists, not antagonists. This segment is crucial for oxytocin receptor (OTR) function and signalling.
Area of Science:
- Molecular pharmacology
- G-protein-coupled receptors (GPCRs)
Background:
- Oxytocin receptors (OTRs) mediate the effects of oxytocin.
- OTRs are G-protein-coupled receptors (GPCRs).
- Understanding molecular interactions with OTRs is crucial.
Purpose of the Study:
- To define molecular differences in agonist and antagonist interactions with the OTR.
- To identify key regions of the OTR involved in ligand binding and signalling.
Main Methods:
- Utilized truncated and chimaeric receptor constructs.
- Engineered a V(1a)R(N)-OTR chimaeric receptor.
- Assessed agonist binding and intracellular signalling.
Main Results:
- A 12-residue segment in the OTR N-terminus is essential for agonist binding.
- This N-terminal segment is not involved in antagonist binding.
- The V(1a)R N-terminus restored function to a truncated OTR.
- The N-terminus does not confer receptor selectivity between OTR and V(1a)R.
Conclusions:
- The distal N-terminus of the OTR plays a critical role in agonist-specific binding.
- This region is vital for agonist-induced OTR signalling.
- GPCR N-termini can be crucial for ligand interaction and function.