A mouse model of human mitofusin-2-related lipodystrophy exhibits adipose-specific mitochondrial stress and reduced leptin secretion

Author:

Mann Jake P1ORCID,Duan Xiaowen1ORCID,Patel Satish1ORCID,Tábara Luis Carlos2,Scurria Fabio1,Alvarez-Guaita Anna1,Haider Afreen1,Luijten Ineke3,Page Matthew4,Protasoni Margherita2,Lim Koini1,Virtue Sam1ORCID,O'Rahilly Stephen1ORCID,Armstrong Martin5,Prudent Julien2ORCID,Semple Robert K36ORCID,Savage David B1ORCID

Affiliation:

1. Wellcome Trust-MRC Institute of Metabolic Science, University of Cambridge

2. Medical Research Council Mitochondrial Biology Unit, University of Cambridge

3. Centre for Cardiovascular Science, University of Edinburgh

4. New Medicines, UCB Pharma

5. UCB Pharma, Chemin du Foriest

6. MRC Human Genetics Unit, University of Edinburgh

Abstract

Mitochondrial dysfunction has been reported in obesity and insulin resistance, but primary genetic mitochondrial dysfunction is generally not associated with these, arguing against a straightforward causal relationship. A rare exception, recently identified in humans, is a syndrome of lower body adipose loss, leptin-deficient severe upper body adipose overgrowth, and insulin resistance caused by the p.Arg707Trp mutation in MFN2, encoding mitofusin 2. How the resulting selective form of mitochondrial dysfunction leads to tissue- and adipose depot-specific growth abnormalities and systemic biochemical perturbation is unknown. To address this, Mfn2R707W/R707W knock-in mice were generated and phenotyped on chow and high fat diets. Electron microscopy revealed adipose-specific mitochondrial morphological abnormalities. Oxidative phosphorylation measured in isolated mitochondria was unperturbed, but the cellular integrated stress response was activated in adipose tissue. Fat mass and distribution, body weight, and systemic glucose and lipid metabolism were unchanged, however serum leptin and adiponectin concentrations, and their secretion from adipose explants were reduced. Pharmacological induction of the integrated stress response in wild-type adipocytes also reduced secretion of leptin and adiponectin, suggesting an explanation for the in vivo findings. These data suggest that the p.Arg707Trp MFN2 mutation selectively perturbs mitochondrial morphology and activates the integrated stress response in adipose tissue. In mice, this does not disrupt most adipocyte functions or systemic metabolism, whereas in humans it is associated with pathological adipose remodelling and metabolic disease. In both species, disproportionate effects on leptin secretion may relate to cell autonomous induction of the integrated stress response.

Funder

Wellcome Trust

Swedish Research Council

Medical Research Council

Ramón Areces Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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