Fructose-Induced Hypothalamic AMPK Activation Stimulates Hepatic PEPCK and Gluconeogenesis due to Increased Corticosterone Levels

Author:

Kinote Andrezza1,Faria Juliana A.1,Roman Erika A.2,Solon Carina2,Razolli Daniela S.2,Ignacio-Souza Letícia M.2,Sollon Carolina S.1,Nascimento Lucas F.2,de Araújo Thiago M.1,Barbosa Ana Paula L.1,Lellis-Santos Camilo3,Velloso Licio A.2,Bordin Silvana3,Anhê Gabriel F.1

Affiliation:

1. Departments of Pharmacology (A.K., J.A.F., C.S.S., T.M.d.A., A.P.L.B., G.F.A.), 13084-971 Campinas, SP, Brazil

2. Internal Medicine (E.A.R., C.S., D.S.R., L.M.I.-S., L.F.N., L.A.V.), Faculty of Medical Sciences, State University of Campinas, 13084-971 Campinas, SP, Brazil

3. Department of Physiology and Biophysics (C.L.-S., S.B.), Institute of Biomedical Sciences, University of Sao Paulo, 05508-900 Sao Paulo SP, Brazil

Abstract

Fructose consumption causes insulin resistance and favors hepatic gluconeogenesis through mechanisms that are not completely understood. Recent studies demonstrated that the activation of hypothalamic 5′-AMP-activated protein kinase (AMPK) controls dynamic fluctuations in hepatic glucose production. Thus, the present study was designed to investigate whether hypothalamic AMPK activation by fructose would mediate increased gluconeogenesis. Both ip and intracerebroventricular (icv) fructose treatment stimulated hypothalamic AMPK and acetyl-CoA carboxylase phosphorylation, in parallel with increased hepatic phosphoenolpyruvate carboxy kinase (PEPCK) and gluconeogenesis. An increase in AMPK phosphorylation by icv fructose was observed in the lateral hypothalamus as well as in the paraventricular nucleus and the arcuate nucleus. These effects were mimicked by icv 5-amino-imidazole-4-carboxamide-1-β-d-ribofuranoside treatment. Hypothalamic AMPK inhibition with icv injection of compound C or with injection of a small interfering RNA targeted to AMPKα2 in the mediobasal hypothalamus (MBH) suppressed the hepatic effects of ip fructose. We also found that fructose increased corticosterone levels through a mechanism that is dependent on hypothalamic AMPK activation. Concomitantly, fructose-stimulated gluconeogenesis, hepatic PEPCK expression, and glucocorticoid receptor binding to the PEPCK gene were suppressed by pharmacological glucocorticoid receptor blockage. Altogether the data presented herein support the hypothesis that fructose-induced hypothalamic AMPK activation stimulates hepatic gluconeogenesis by increasing corticosterone levels.

Publisher

The Endocrine Society

Subject

Endocrinology

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