Mutations in the human melanocortin-4 receptor gene associated with severe familial obesity disrupts receptor

Giles S H Yeo1, Emma J Lank, I Sadaf Farooqi

  • 1Cambridge Institute for Medical Research, University of Cambridge, Addenbrooke's Hospital, Cambridge CB2 2XY, UK. gyeo@hgmp.mrc.ac.uk

Human Molecular Genetics
|February 18, 2003
PubMed

Insights

Mutations in the melanocortin-4 receptor gene (MC4R) cause obesity. This study reveals how 12 MC4R mutations impair receptor function, often by affecting cell surface expression or ligand binding, offering insights into obesity mechanisms.

Area of Science:

  • Genetics
  • Molecular Biology
  • Endocrinology

Background:

  • Mutations in the melanocortin-4 receptor gene (MC4R) are the most frequent genetic cause of human obesity.
  • Understanding the precise functional impact of these MC4R mutations is crucial for developing targeted therapies.

Purpose of the Study:

  • To comprehensively investigate the functional properties of 12 distinct human MC4R mutations associated with severe, early-onset obesity.
  • To elucidate the molecular mechanisms underlying MC4R dysfunction in familial obesity.

Main Methods:

  • Functional characterization of 12 MC4R mutations using cell-based assays.
  • Assessment of cAMP generation, cell surface expression, and ligand binding affinity (agonist and antagonist).

Main Results:

  • Four of nine missense MC4R mutants showed complete loss of cAMP signaling; five were partially impaired.
  • Defective cell surface expression was observed in four mutants, and reduced ligand binding affinity in six.
  • One mutation (I316S) altered agonist affinity without affecting antagonist affinity, suggesting a novel dysfunction mechanism.

Conclusions:

  • Defective MC4R expression and impaired ligand binding are common mechanisms for obesity-associated mutations.
  • MC4R mutations do not appear to act as dominant-negatives on wild-type receptors.
  • Findings provide critical structure-function insights and identify a potential new mechanism of receptor dysfunction.

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