Absence of Melatonin Induces Night-Time Hepatic Insulin Resistance and Increased Gluconeogenesis Due to Stimulation of Nocturnal Unfolded Protein Response

Author:

Nogueira Tatiane C.1,Lellis-Santos Camilo1,Jesus Daniel S.1,Taneda Marco1,Rodrigues Sandra C.1,Amaral Fernanda G.1,Lopes Ana Maria S.1,Cipolla-Neto José1,Bordin Silvana1,Anhê Gabriel F.2

Affiliation:

1. Department of Physiology and Biophysics (T.C.N., C.L.-S., D.S.J., M.T., S.C.R., F.G.A., A.M.S.L., J.C.-N., S.B.), Institute of Biomedical Sciences, University of Sao Paulo, Sao Paulo 05508-900, Brazil

2. Department of Pharmacology (G.F.A.), Faculty of Medical Sciences, State University of Campinas, Campinas 13084-971, Brazil

Abstract

Abstract It is known that the circadian rhythm in hepatic phosphoenolpyruvate carboxykinase expression (a limiting catalytic step of gluconeogenesis) and hepatic glucose production is maintained by both daily oscillation in autonomic inputs to the liver and night feeding behavior. However, increased glycemia and reduced melatonin (Mel) levels have been recently shown to coexist in diabetic patients at the end of the night period. In parallel, pinealectomy (PINX) is known to cause glucose intolerance with increased basal glycemia exclusively at the end of the night. The mechanisms that underlie this metabolic feature are not completely understood. Here, we demonstrate that PINX rats show night-time hepatic insulin resistance characterized by reduced insulin-stimulated RAC-α serine/threonine-protein kinase phosphorylation and increased phosphoenolpyruvate carboxykinase expression. In addition, PINX rats display increased conversion of pyruvate into glucose at the end of the night. The regulatory mechanism suggests the participation of unfolded protein response (UPR), because PINX induces night-time increase in activating transcription factor 6 expression and prompts a circadian fashion of immunoglobulin heavy chain-binding protein, activating transcription factor 4, and CCAAT/enhancer-binding protein-homologous protein expression with Zenith values at the dark period. PINX also caused a night-time increase in Tribble 3 and regulatory-associated protein of mammalian target of rapamycin; both were reduced in liver of PINX rats treated with Mel. Treatment of PINX rats with 4-phenyl butyric acid, an inhibitor of UPR, restored night-time hepatic insulin sensitivity and abrogated gluconeogenesis in PINX rats. Altogether, the present data show that a circadian oscillation of UPR occurs in the liver due to the absence of Mel. The nocturnal UPR activation is related with night-time hepatic insulin resistance and increased gluconeogenesis in PINX rats.

Publisher

The Endocrine Society

Subject

Endocrinology

Reference36 articles.

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