The alternatively spliced deltae13 transcript of the rabbit calcitonin receptor dimerizes with the C1a isoform and
Thomas Seck1, Roland Baron, William C Horne
1Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06510, USA. thomas_seck@hotmail.com
Abstract:
Numerous alternatively spliced transcripts are generated from the gene for the G protein-coupled calcitonin receptor, and some of the splice variants show differences in receptor-mediated signaling events. This study showed that the deltae13 splice variant of the rabbit calcitonin receptor is expressed together with the more common C1a in osteoclast-like cells. Since other G protein-coupled receptors form homo- or heterodimers, we examined whether heterodimerization of the calcitonin receptor splice variants occurs and, if so, whether it affects the function of the receptor. Homodimers of both isoforms and deltae13/C1a heterodimers were detected by co-immunoprecipitation and fluorescence resonance energy transfer analysis. In contrast to the C1a isoform, the deltae13 isoform was not efficiently transported to the cell surface. When co-expressed with the C1a splice variant, the deltae13 isoform colocalized with the C1a isoform within the cell but not at the cell surface. Furthermore, the overexpression of the deltae13 variant led to a significant reduction of the C1a surface expression and consequently a reduction of the cAMP response and Erk phosphorylation after ligand stimulation. We therefore suggest that the deltae13 variant of the rabbit calcitonin receptor acts to regulate the surface expression of the C1a isoform.
Insights
The deltae13 splice variant of the rabbit calcitonin receptor regulates the surface expression of the common C1a isoform. This interaction impacts cellular signaling, including cAMP response and Erk phosphorylation.
Area of Science:
- Molecular biology
- Cellular signaling
- Receptor biology
Background:
- The calcitonin receptor gene produces multiple alternatively spliced transcripts, leading to variants with differing signaling capabilities.
- Osteoclast-like cells express both the common C1a and the deltae13 splice variants of the rabbit calcitonin receptor.
Purpose of the Study:
- To investigate the potential heterodimerization of calcitonin receptor splice variants.
- To determine if splice variant heterodimerization affects receptor function and cell surface expression.
Main Methods:
- Co-immunoprecipitation assays to detect protein interactions.
- Fluorescence resonance energy transfer (FRET) analysis to confirm heterodimerization.
- Cell surface expression analysis and measurement of cAMP response and Erk phosphorylation.
Main Results:
- Homodimers of C1a and deltae13 isoforms, as well as deltae13/C1a heterodimers, were detected.
- The deltae13 isoform showed inefficient transport to the cell surface.
- Overexpression of deltae13 reduced C1a surface expression, leading to diminished cAMP and Erk signaling.
Conclusions:
- The deltae13 splice variant of the rabbit calcitonin receptor heterodimerizes with the C1a isoform.
- Deltae13 variant negatively regulates the cell surface expression and function of the C1a isoform.
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