Methionine and S-adenosylmethionine levels are critical regulators of PP2A activity modulating lipophagy during steatosis.

蛋氨酸和 S-腺苷蛋氨酸水平是 PP2A 活性的关键调节因子,在脂肪变性过程中调节脂质自噬

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作者:Zubiete-Franco Imanol, García-Rodríguez Juan Luis, Martínez-Uña Maite, Martínez-Lopez Nuria, Woodhoo Ashwin, Juan Virginia Gutiérrez-De, Beraza Naiara, Lage-Medina Sergio, Andrade Fernando, Fernandez Marta Llarena, Aldámiz-Echevarría Luis, Fernández-Ramos David, Falcon-Perez Juan Manuel, Lopitz-Otsoa Fernando, Fernandez-Tussy Pablo, Barbier-Torres Lucía, Luka Zigmund, Wagner Conrad, García-Monzón Carmelo, Lu Shelly C, Aspichueta Patricia, Mato José María, Martínez-Chantar María Luz, Varela-Rey Marta
BACKGROUND & AIMS: Glycine N-methyltransferase (GNMT) expression is decreased in some patients with severe non-alcoholic fatty liver disease. Gnmt deficiency in mice (Gnmt-KO) results in abnormally elevated serum levels of methionine and its metabolite S-adenosylmethionine (SAMe), and this leads to rapid liver steatosis development. Autophagy plays a critical role in lipid catabolism (lipophagy), and defects in autophagy have been related to liver steatosis development. Since methionine and its metabolite SAMe are well known inactivators of autophagy, we aimed to examine whether high levels of both metabolites could block autophagy-mediated lipid catabolism. METHODS: We examined methionine levels in a cohort of 358 serum samples from steatotic patients. We used hepatocytes cultured with methionine and SAMe, and hepatocytes and livers from Gnmt-KO mice. RESULTS: We detected a significant increase in serum methionine levels in steatotic patients. We observed that autophagy and lipophagy were impaired in hepatocytes cultured with high methionine and SAMe, and that Gnmt-KO livers were characterized by an impairment in autophagy functionality, likely caused by defects at the lysosomal level. Elevated levels of methionine and SAMe activated PP2A by methylation, while blocking PP2A activity restored autophagy flux in Gnmt-KO hepatocytes, and in hepatocytes treated with SAMe and methionine. Finally, normalization of methionine and SAMe levels in Gnmt-KO mice using a methionine deficient diet normalized the methylation capacity, PP2A methylation, autophagy, and ameliorated liver steatosis. CONCLUSIONS: These data suggest that elevated levels of methionine and SAMe can inhibit autophagic catabolism of lipids contributing to liver steatosis.

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