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Mechanism of Regulation of Adipocyte Numbers in Adult Organisms Through Differentiation and Apoptosis Homeostasis
Published on: June 3, 2016
Obesity-associated MRAP2 variants impair multiple MC4R-mediated signaling pathways
Rachael A Wyatt1,2, Aqfan Jamaluddin1,2, Vinesh Mistry1
1Department of Metabolism and Systems Science, University of Birmingham, Birmingham, B15 2TT, United Kingdom.
Abstract:
The melanocortin-4 receptor (MC4R) is a G protein-coupled receptor expressed at hypothalamic neurons that has an important role in appetite suppression and food intake. Mutations in MC4R are the most common cause of monogenic obesity and can affect multiple signaling pathways including Gs-cAMP, Gq, ERK1/2, β-arrestin recruitment, internalization and cell surface expression. The melanocortin-2 receptor accessory protein 2 (MRAP2), is a single-pass transmembrane protein that interacts with and regulates signaling by MC4R. Variants in MRAP2 have also been identified in overweight and obese individuals. However, functional studies that have only measured the effect of MRAP2 variants on MC4R-mediated cAMP signaling have produced inconsistent findings and most do not reduce MC4R function. Here we investigated the effect of twelve of these previously reported MRAP2 variants and showed that all variants that have been identified in overweight or obese individuals impair MC4R function. When expressed at equal concentrations, seven MRAP2 variants impaired MC4R-mediated cAMP signaling, while nine variants impaired IP3 signaling. Four mutations in the MRAP2 C-terminus affected internalization. MRAP2 variants had no effect on total or cell surface expression of either the MRAP2 or MC4R proteins. Structural models predicted that MRAP2 interacts with MC4R transmembrane helices 5 and 6, and mutations in two MRAP2 residues in putative contact sites impaired the ability of MRAP2 to facilitate MC4R signaling. In summary, our studies demonstrate that human MRAP2 variants associated with obesity impair multiple MC4R signaling pathways and that both Gs-cAMP and Gq-IP3 pathways should be assessed to determine variant pathogenicity.
Insights
Genetic variants in melanocortin-2 receptor accessory protein 2 (MRAP2) linked to obesity impair multiple signaling pathways of the melanocortin-4 receptor (MC4R), affecting appetite regulation. Comprehensive assessment of both cAMP and IP3 signaling is crucial for determining variant pathogenicity.
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- Melanocortin-4 receptor (MC4R) is crucial for regulating appetite and energy homeostasis.
- Mutations in MC4R are a leading cause of monogenic obesity.
- Melanocortin-2 receptor accessory protein 2 (MRAP2) modulates MC4R signaling, and its variants are implicated in obesity.
Purpose of the Study:
- To functionally characterize previously reported human MRAP2 variants identified in overweight and obese individuals.
- To investigate the impact of MRAP2 variants on multiple MC4R signaling pathways, including cAMP and IP3 signaling.
- To determine the pathogenicity of MRAP2 variants by assessing their effects on MC4R function.
Main Methods:
- Expression of twelve MRAP2 variants with MC4R in cellular models.
- Measurement of MC4R-mediated cAMP and IP3 signaling.
- Assessment of protein expression, cell surface localization, and internalization.
- Structural modeling to predict MRAP2-MC4R interaction sites.
Main Results:
- All MRAP2 variants identified in obese individuals impaired MC4R function.
- Seven variants reduced cAMP signaling, and nine variants reduced IP3 signaling.
- Mutations in MRAP2 C-terminus affected receptor internalization; structural modeling identified key interaction sites.
Conclusions:
- Human MRAP2 variants associated with obesity disrupt multiple MC4R signaling pathways.
- Both Gs-cAMP and Gq-IP3 signaling pathways must be evaluated to assess MRAP2 variant pathogenicity.
- This study provides a comprehensive functional analysis of MRAP2 variants in the context of obesity.
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