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The GCN2 kinase biases feeding behavior to maintain amino acid homeostasis in omnivores
Authors:Maurin Anne-Catherine  Jousse Céline  Averous Julien  Parry Laurent  Bruhat Alain  Cherasse Yoan  Zeng Huiqing  Zhang Yuhong  Harding Heather P  Ron David  Fafournoux Pierre
Affiliation:Unité de Nutrition et Métabolisme Protéique, Institut National de la Recherche Agronomique de Theix, 63122 Saint Genès-Champanelle, France.
Abstract:To insure an adequate supply of nutrients, omnivores choose among available food sources. This process is exemplified by the well-characterized innate aversion of omnivores to otherwise nutritious foods of imbalanced amino acid content. We report that brain-specific inactivation of GCN2, a ubiquitously expressed protein kinase that phosphorylates translation initiation factor 2 alpha (eIF2alpha) in response to intracellular amino acid deficiency, impairs this aversive response. GCN2 inactivation also diminishes phosphorylated eIF2alpha levels in the mouse anterior piriform cortex following consumption of an imbalanced meal. An ancient intracellular signal transduction pathway responsive to amino acid deficiency thus affects feeding behavior by activating a neuronal circuit that biases consumption against imbalanced food sources.
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