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Moutahir, M.

Publications and source records attributed to Moutahir, M..

2 recordsLinked to original sources

Adipocyte vesicles: ‘all-in-one’ packages that stimulate tumor mitochondrial metabolism and dynamics

Extracellular vesicles are emerging key actors in adipocyte communication. Notably, small extracellular vesicles shed by adipocytes promote melanoma aggressiveness through fatty acid oxidation, with a heightened effect in obesity. However, the vesicular actors and cellular processes involved remain largely unknown. Here, we elucidate the mechanisms linking adipocyte extracellular vesicles to metabolic remodeling and cell migration. We show that adipocyte vesicles stimulate melanoma fatty acid oxidation by providing both enzymes and substrates. In obesity, the heightened effect of extracellular vesicles depends on increased transport of fatty acids, not fatty acid oxidation-related enzymes. These fatty acids, stored within lipid droplets in cancer cells, drive fatty acid oxidation after release through lipophagy. This increase in mitochondrial activity redistributes mitochondria to membrane protrusions of migrating cells, which is necessary to increase cell migration in the presence of adipocyte vesicles. Our results provide key insights into the role of extracellular vesicles in the metabolic cooperation that takes place between adipocytes and tumors with particular relevance in obesity.

cancer biology

Yellow adipocytes comprise a new adipocyte sub-type present in human bone marrow

During energy demanding conditions, white adipocytes store triglycerides and release fatty acids through lipolysis. In contrast, bone marrow adipocytes (BM-Ad) increase in size during caloric restriction, suggesting this fat depot exhibits precise metabolic specificity. We found subcutaneous adipocytes (SC-Ad) and BM-Ad share morphological features, but possess distinct lipid metabolism. BM-Ad show enrichment in cholesterol-oriented metabolism that correlates with increased free cholesterol content, while proteins involved in lipolysis were downregulated. A strong down-regulation in expression of monoacylglycerol (MG) lipase was observed leading to an accumulation of major MG species and accordingly the basal and induced lipolytic responses were absent in BM-Ad. These features are not recapitulated in vitro using differentiated bone marrow mesenchymal stem cells. Since our data demonstrate that BM-Ad comprise a distinct class of adipocytes, we propose renaming them yellow adipocytes.

physiology