The PACAP-Regulated Gene Selenoprotein T Is Highly Induced in Nervous, Endocrine, and Metabolic Tissues during Ontogenetic and Regenerative Processes

Author:

Tanguy Yannick1,Falluel-Morel Anthony1,Arthaud Sébastien1,Boukhzar Loubna1,Manecka Destiny-Love1,Chagraoui Abdeslam1,Prevost Gaetan1,Elias Salah1,Dorval-Coiffec Isabelle2,Lesage Jean3,Vieau Didier3,Lihrmann Isabelle1,Jégou Bernard2,Anouar Youssef1

Affiliation:

1. Institut National de la Santé et de la Recherche Médicale (INSERM), Unité (U)982, Neuronal and Neuroendocrine Differentiation and Communication Laboratory (Y.T., A.F.-M., S.A., L.B., D.-L.M., A.C., G.P., S.E., I.L., Y.A.), University of Rouen, F-76821 Mont-Saint-Aignan, France

2. INSERM, U625 (I.D.-C., B.J.), University of Rennes I, Campus de Beaulieu, Institut Fédératif de Recherche-140, Groupe d'Etude sur la Reproduction chez l'Homme et le Mammifère, Rennes, F-35042, France

3. Maternal Perinatal Undernutrition Team (Perinatal Environment and Growth Unit, EA4489) (J.L., D.V.), University Lille-Nord de France, F-59000 Lille, France

Abstract

Selenoproteins contain the essential trace element selenium whose deficiency leads to major disorders including cancer, male reproductive system failure, or autoimmune thyroid disease. Up to now, 25 selenoprotein-encoding genes were identified in mammals, but the spatiotemporal distribution, regulation, and function of some of these selenium-containing proteins remain poorly documented. Here, we found that selenoprotein T (SelT), a new thioredoxin-like protein, is regulated by the trophic neuropeptide pituitary adenylate cyclase-activating polypeptide (PACAP) in differentiating but not mature adrenomedullary cells. In fact, our analysis revealed that, in rat, SelT is highly expressed in most embryonic structures, and then its levels decreased progressively as these organs develop, to vanish in most adult tissues. In the brain, SelT was abundantly expressed in neural progenitors in various regions such as the cortex and cerebellum but was undetectable in adult nervous cells except rostral migratory-stream astrocytes and Bergmann cells. In contrast, SelT expression was maintained in several adult endocrine tissues such as pituitary, thyroid, or testis. In the pituitary gland, SelT was found in secretory cells of the anterior lobe, whereas in the testis, the selenoprotein was present only in spermatogenic and Leydig cells. Finally, we found that SelT expression is strongly stimulated in liver cells during the regenerative process that occurs after partial hepatectomy. Taken together, these data show that SelT induction is associated with ontogenesis, tissue maturation, and regenerative mechanisms, indicating that this PACAP-regulated selenoprotein may play a crucial role in cell growth and activity in nervous, endocrine, and metabolic tissues.

Publisher

The Endocrine Society

Subject

Endocrinology

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