mTOR, AMPK, and GCN2 coordinate the adaptation of hepatic energy metabolic pathways in response to protein intake in the rat

Author:

Chotechuang Nattida12,Azzout-Marniche Dalila12,Bos Cécile12,Chaumontet Catherine12,Gausserès Nicolas3,Steiler Tatiana3,Gaudichon Claire12,Tomé Daniel12

Affiliation:

1. AgroParisTech, Centre de Recherche en Nutrition Humaine-Ile de France (CRNH-IdF), UMR914, Nutrition Physiology and Ingestive Behavior, F-75005;

2. Institut National de la Recherche Agronomique, CRNH-IdF, UMR914 Nutrition Physiology and Ingestive Behavior, F-75005, Paris; and

3. Danone Vitapole R. D. 128.91 767, Palaiseau, Cedex, France

Abstract

Three transduction pathways are involved in amino acid (AA) sensing in liver: mammalian target of rapamycin (mTOR), AMP-activated protein kinase (AMPK), and general control nondepressible kinase 2 (GCN2). However, no study has investigated the involvement of these signaling pathways in hepatic AA sensing. To address the question of liver AA sensing and signaling in response to a high-protein (HP) dietary supply, we investigated the changes in the phosphorylation state of hepatic mTOR (p-mTOR), AMPKα (p-AMPKα), and GCN2 (p-GCN2) by Western blotting. In rats fed a HP diet for 14 days, the hepatic p-AMPKα and p-GCN2 were lower ( P < 0.001), and those of both the p-mTOR and eukaryotic initiation factor 4E-binding protein-1 phosphorylation (p-4E-BP1) were higher ( P < 0.01) compared with rats receiving a normal protein (NP) diet. In hepatocytes in primary culture, high AA concentration decreased AMPKα phosphorylation whether insulin was present or not ( P < 0.01). Either AAs or insulin can stimulate p-mTOR, but this is not sufficient for 4E-BP1 phosphorylation that requires both ( P < 0.01). As expected, branched-chain AAs (BCAA) or leucine stimulated the phosphorylation of mTOR, but both insulin and BCAA or leucine are required for 4E-BP1 phosphorylation. GCN2 phosphorylation was reduced by both AAs and insulin( P < 0.01), suggesting for the first time that the translation inhibitor GCN2 senses not only the AA deficiency but also the AA increase in the liver. The present findings demonstrate that AAs and insulin exert a coordinated action on translation and involved mTOR, AMPK, and GCN2 transduction pathways.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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