Metabolic disorders, including obesity and metabolic-associated steatohepatitis, arise from a chronic energy surplus. Thus, enhancing energy dissipation through increased respiration holds significant therapeutic potential for metabolic disorders. Through a comprehensive analysis of human and murine adipose tissues, along with a functional screen, we identify mitochondrial carrier homolog 2, a mitochondrial outer membrane protein, as a pivotal regulator of mitochondrial metabolism. Intriguingly, its expression in adipose tissue is a strong determinant of obesity in humans. Adipocyte-specific ablation of mitochondrial carrier homolog 2 improves mitochondrial function and whole-body energy expenditure, independent of uncoupling protein 1. Furthermore, mitochondrial carrier homolog 2 regulates mitochondrial influx of free fatty acids by modulating the sensitivity of carnitine palmitoyltransferase 1 to malonyl-CoA through direct physical interaction, leading to enhanced energy expenditure in adipocytes/adipose tissue. Here we show mitochondrial carrier homolog 2 functions as a negative regulator of energy metabolism in adipocytes and represents a potential target for treating obesity and related metabolic disorders.
MTCH2 modulates CPT1 activity to regulate lipid metabolism of adipocytes / Wu, C.; Wang, T.; Ghosh, A.; Long, F.; Sharma, A. K.; Dahlby, T.; Noe, F.; Severi, I.; Colleluori, G.; Cinti, S.; Giordano, A.; Ding, L.; Khandelwal, R.; Kostidis, S.; Giera, M.; Balazova, L.; Gardeux, V.; Abu-Nawwas, L.; Deplancke, B.; Chourasia, S.; Kleiner, S.; Hamilton, B. S.; Alcantara, J. M. A.; Ruiz, J. R.; Bluher, M.; Pekcec, A.; Balaz, M.; Gross, A.; Neubauer, H.; Wolfrum, C.. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - ELETTRONICO. - 16:1(2025). [10.1038/s41467-025-63880-7]
MTCH2 modulates CPT1 activity to regulate lipid metabolism of adipocytes
Severi I.;Colleluori G.;Cinti S.;Giordano A.;
2025-01-01
Abstract
Metabolic disorders, including obesity and metabolic-associated steatohepatitis, arise from a chronic energy surplus. Thus, enhancing energy dissipation through increased respiration holds significant therapeutic potential for metabolic disorders. Through a comprehensive analysis of human and murine adipose tissues, along with a functional screen, we identify mitochondrial carrier homolog 2, a mitochondrial outer membrane protein, as a pivotal regulator of mitochondrial metabolism. Intriguingly, its expression in adipose tissue is a strong determinant of obesity in humans. Adipocyte-specific ablation of mitochondrial carrier homolog 2 improves mitochondrial function and whole-body energy expenditure, independent of uncoupling protein 1. Furthermore, mitochondrial carrier homolog 2 regulates mitochondrial influx of free fatty acids by modulating the sensitivity of carnitine palmitoyltransferase 1 to malonyl-CoA through direct physical interaction, leading to enhanced energy expenditure in adipocytes/adipose tissue. Here we show mitochondrial carrier homolog 2 functions as a negative regulator of energy metabolism in adipocytes and represents a potential target for treating obesity and related metabolic disorders.| File | Dimensione | Formato | |
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