[Monogenic forms of obesity: from mice to human]

K Clément1

  • 1HHMI/Stanford University, Beckman Center RM B281, 270, Campus drive, Stanford, CA, USA. Karine.clement@td.ap-hop-paris.fr

Annales D'Endocrinologie
|January 10, 2001
PubMed

Insights

Genetic mutations in leptin, leptin receptor, POMC, PC1, and MC4-R genes are linked to human obesity. Understanding these genetic pathways offers new insights into body weight regulation and endocrine functions.

Area of Science:

  • Genetics
  • Endocrinology
  • Molecular Biology

Context:

  • Advances in rodent obesity gene cloning have paved the way for human molecular genetics research.
  • Human molecular genetics has identified mutations in genes related to rodent homologues or similar pathways in obese patients.

Purpose:

  • To explore the genetic underpinnings of human obesity by examining mutations in key regulatory genes.
  • To understand the role of specific genes and pathways in body weight homeostasis and endocrine functions.

Summary:

  • Mutations in leptin and leptin receptor genes cause rare early-onset morbid obesity with hypogonadism.
  • Defects in proopiomelanocortin (POMC) and proconvertase 1 (PC1) genes lead to severe obesity with adrenal insufficiency and metabolic disturbances.
  • Mutations in the melanocortin 4 receptor (MC4-R) gene are identified as a frequent cause of early-onset dominant obesity across diverse populations.

Impact:

  • These findings highlight the critical role of the leptin-melanocortin pathway in regulating body fat mass and endocrine functions.
  • Research into these genetic causes provides new avenues for understanding and potentially treating obesity.
  • Identifies MC4-R mutations as a significant contributor to common monogenic obesity, advancing the field of human obesity genetics.

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