Receptor activity-modifying protein-dependent impairment of calcitonin receptor splice variant Δ(1-47)hCT((a))

T Qi1, M Dong, H A Watkins

  • 1School of Biological Sciences, University of Auckland, Auckland, New Zealand.

Abstract

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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