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Receptor activity-modifying protein-dependent impairment of calcitonin receptor splice variant Δ(1-47)hCT((a))
1School of Biological Sciences, University of Auckland, Auckland, New Zealand.
Background And Purpose:
Alternative splicing expands proteome diversity to GPCRs. Distinct receptor variants have been identified for a secretin family GPCR, the calcitonin receptor (CTR). The possible functional contributions of these receptor variants are further altered by their potential interactions with receptor activity-modifying proteins (RAMPs). One variant of the human CTR lacks the first 47 residues at its N terminus [Δ(1-47)hCT((a)) ]. However, very little is known about the pharmacology of this variant or its ability to interact with RAMPs to form amylin receptors.
Experimental Approach:
Δ(1-47)hCT((a)) was characterized both with and without RAMPs in Cos7 and/or HEK293S cells. The receptor expression (ELISA assays) and function (cAMP and pERK1/2 assays) for up to six agonists and two antagonists were determined.
Key Results:
Despite lacking 47 residues at the N terminus, Δ(1-47)hCT((a)) was still able to express at the cell surface, but displayed a generalized reduction in peptide potency. Δ(1-47)hCT((a)) retained its ability to interact with RAMP1 and formed a functional amylin receptor; this also appeared to be the case with RAMP3. On the other hand, its interaction with RAMP2 and resultant amylin receptor was reduced to a greater extent.
Conclusions And Implications:
Δ(1-47)hCT((a)) acts as a functional receptor at the cell surface. It exhibits altered receptor function, depending on whether it associates with a RAMP and which RAMP it interacts with. Therefore, the presence of this variant in tissues will potentially contribute to altered peptide binding and signalling, depending on the RAMP distribution in tissues.
Insights
A calcitonin receptor (CTR) variant lacking N-terminal residues functions at the cell surface. Its interaction with receptor activity-modifying proteins (RAMPs) alters peptide binding and signaling, impacting amylin receptor function.
Area of Science:
- G-protein coupled receptor (GPCR) research
- Molecular endocrinology
- Proteomics and alternative splicing
Background:
- Alternative splicing diversifies the proteome, including G-protein coupled receptors (GPCRs).
- The secretin family calcitonin receptor (CTR) exhibits distinct variants.
- Receptor activity-modifying proteins (RAMPs) modulate CTR function and amylin receptor formation.
Purpose of the Study:
- To characterize the pharmacology of a human CTR variant lacking the N-terminal 47 residues [Δ(1-47)hCT((a))].
- To investigate the interaction of this variant with RAMPs and its role in forming functional amylin receptors.
Main Methods:
- Cell surface expression of Δ(1-47)hCT((a)) was assessed using ELISA assays.
- Receptor function was evaluated by measuring cAMP and pERK1/2 signaling in response to agonists and antagonists.
- Experiments were conducted in Cos7 and/or HEK293S cells with and without RAMP co-expression.
Main Results:
- The Δ(1-47)hCT((a)) variant expressed at the cell surface, albeit with reduced peptide potency.
- This variant formed functional amylin receptors with RAMP1 and RAMP3.
- Interaction with RAMP2 was reduced, leading to a diminished amylin receptor function.
Conclusions:
- The Δ(1-47)hCT((a)) CTR variant is functional at the cell surface.
- Its signaling is modulated by RAMP interactions, influencing amylin receptor activity.
- Tissue-specific RAMP distribution may lead to altered peptide signaling due to this variant.
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