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Obesity due to MC4R deficiency is associated with reduced cholesterol, triglycerides and cardiovascular disease risk
Journal article   Open access   Peer reviewed

Obesity due to MC4R deficiency is associated with reduced cholesterol, triglycerides and cardiovascular disease risk

Stefanie Zorn, Rebecca Bounds, Alice Williamson, Katherine Lawler, Ruth Hanssen, Julia Keogh, Elana Henning, Miriam Smith, Barbara Ann Fielding, Margot Umpleby, …
Nature medicine, Vol.31(12), pp.4180-4188
01/12/2025
PMID: 41102563

Abstract

Adult Cardiovascular Diseases - blood Cardiovascular Diseases - genetics Cardiovascular Diseases - metabolism Cholesterol - blood Cholesterol - metabolism Female Humans Lipid Metabolism - genetics Loss of Function Mutation Male Middle Aged Obesity - blood Obesity - complications Obesity - genetics Obesity - metabolism Receptor, Melanocortin, Type 4 - deficiency Receptor, Melanocortin, Type 4 - genetics Risk Factors Triglycerides - blood Triglycerides - metabolism United Kingdom
Obesity causes dyslipidemia and is a major risk factor for cardiovascular disease. However, the mechanisms coupling weight gain and lipid metabolism are poorly understood. Brain melanocortin 4 receptors (MC4Rs) regulate body weight and lipid metabolism in mice, but the relevance of these findings to humans is unclear. Here we investigated lipid levels in men and women with obesity due to MC4R deficiency. Among 7,719 people from the Genetics of Obesity Study cohort, we identified 316 probands and 144 adult family members with loss-of-function (LoF) MC4R mutations. Adults with MC4R deficiency had lower levels of total and low-density lipoprotein (LDL)-cholesterol and triglycerides than 336,728 controls from the UK Biobank, after adjusting for adiposity. Carriers of LoF MC4R variants within the UK Biobank had lower lipid levels and a lower risk of cardiovascular disease, after accounting for body weight, compared to noncarriers. After a high-fat meal, the postprandial rise in triglyceride-rich lipoproteins and metabolomic markers of fatty acid oxidation were reduced in people with MC4R deficiency compared to controls, changes that favor triglyceride storage in adipose tissue. We concluded that central MC4Rs regulate lipid metabolism and cardiovascular disease risk in humans, highlighting potential therapeutic approaches for cardiovascular risk reduction.
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https://doi.org/10.1038/s41591-025-03976-1View
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