The PACAP-Regulated Gene Selenoprotein T Is Abundantly Expressed in Mouse and Human β-Cells and Its Targeted Inactivation Impairs Glucose Tolerance

Author:

Prevost Gaëtan12,Arabo Arnaud1,Jian Long1,Quelennec Eddy1,Cartier Dorthe1,Hassan Sahar1,Falluel-Morel Anthony1,Tanguy Yannick1,Gargani Sophia3,Lihrmann Isabelle1,Kerr-Conte Julie3,Lefebvre Hervé12,Pattou François3,Anouar Youssef1

Affiliation:

1. Institut National de la Santé et de la Recherche Médicale (INSERM) Unité (U) 982 (G.P., A.A., L.J., E.Q., D.C., S.H., A.F.-M., Y.T., I.L., H.L., Y.A.), Neuronal and Neuroendocrine Differentiation and Communication Laboratory, Institute of Research and Innovation in Biomedicine, Normandie University, University of Rouen, F-76821 Mont-St-Aignan, France

2. Department of Endocrinology (G.P., H.L.), University Hospital of Rouen, F-76031 Rouen, France

3. INSERM U859 (S.G., J.K.-C., F.P.) Biotherapies of Diabetes, Faculty of Medicine, University of Lille, F-59100 Lille, France

Abstract

Selenoproteins are involved in the regulation of redox status, which affects several cellular processes, including cell survival and homeostasis. Considerable interest has arisen recently concerning the role of selenoproteins in the regulation of glucose metabolism. Here, we found that selenoprotein T (SelT), a new thioredoxin-like protein of the endoplasmic reticulum, is present at high levels in human and mouse pancreas as revealed by immunofluorescence and quantitative PCR. Confocal immunohistochemistry studies revealed that SelT is mostly confined to insulin- and somatostatin-producing cells in mouse and human islets. To elucidate the role of SelT in β-cells, we generated, using a Cre-Lox strategy, a conditional pancreatic β-cell SelT-knockout C57BL/6J mice (SelT-insKO) in which SelT gene disruption is under the control of the rat insulin promoter Cre gene. Glucose administration revealed that male SelT-insKO mice display impaired glucose tolerance. Although insulin sensitivity was not modified in the mutant mice, the ratio of glucose to insulin was significantly higher in the SelT-insKO mice compared with wild-type littermates, pointing to a deficit in insulin production/secretion in mutant mice. In addition, morphometric analysis showed that islets from SelT-insKO mice were smaller and that their number was significantly increased compared with islets from their wild-type littermates. Finally, we found that SelT is up-regulated by pituitary adenylate cyclase-activating polypeptide (PACAP) in β-pancreatic cells and that SelT could act by facilitating a feed-forward mechanism to potentiate insulin secretion induced by the neuropeptide. Our findings are the first to show that the PACAP-regulated SelT is localized in pancreatic β- and δ-cells and is involved in the control of glucose homeostasis.

Publisher

The Endocrine Society

Subject

Endocrinology

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