Abstract
In this study, we addressed the direct effect of leucine on insulin signaling. In investigating the associated mechanisms, we found that leucine itself does not activate the classical Akt- or ERK1/2 MAP kinase-dependent signaling pathways but can facilitate the insulin-induced phosphorylations of Akt473 and ERK1/2 in a time- and dose-dependent manner in cultured hepatocytes. The leucine-facilitated insulin-induced phosphorylation of Akt at residue 473 was not affected by knocking down the key component of mTORC1 or -2 complexes but was blocked by inhibition of c-Src (PP2), PI3K (LY294002),Gαi protein (pertussis toxin or siRNA against Gαi1 gene, orβ-arrestin 2 (siRNA)). Similarly, the leucine-facilitated insulin activation of ERK1/2 was also blunted by pertussis toxin. We further show that leucine facilitated the insulin-mediated suppression of glucose production and expression of key gluconeogenic genes in a Gα i1 protein-dependent manner in cultured primary hepatocytes. Together, these results show that leucine can directly facilitate insulin signaling through a Gαi protein-dependent intracellular signaling pathway. This is the first evidence showing that macronutrients like amino acid leucine can facilitate insulin signaling through G proteins directly. © 2013 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Yang, X., Mei, S., Wang, X., Li, X., Liu, R., Ma, Y., … Cao, W. (2013). Leucine facilitates insulin signaling through a Gα1 protein-dependent signaling pathway in hepatocytes. Journal of Biological Chemistry, 288(13), 9313–9320. https://doi.org/10.1074/jbc.M112.409409
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