QRFP induces aldosterone production via PKC and T-type calcium channel-mediated pathways in human adrenocortical cells: evidence for a novel role of GPR103

Author:

Ramanjaneya Manjunath1,Karteris Emmanouil2,Chen Jing1,Rucinski Marcin3,Ziolkowska Agnieszka3,Ahmed Naima1,Kagerer Sonja4,Jöhren Olaf4,Lehnert Hendrik4,Malendowicz Ludwik K.3,Randeva Harpal S.1

Affiliation:

1. Division of Metabolic and Vascular Health, Warwick Medical School, University of Warwick, Coventry United Kingdom;

2. Department of Biosciences, Brunel University, Uxbridge, United Kingdom;

3. Department of Histology and Embryology, Poznan University of Medical Sciences, Poznan, Poland;

4. Institute of Experimental and Clinical Pharmacology and Toxicology, University of Lübeck, Luebeck, Germany

Abstract

Hormonal regulation of adrenal function occurs primarily through activation of GPCRs. GPCRs are central to many of the body's endocrine and neurotransmitter pathways. Recently, it was shown that activation of GPR103 by its ligand QRFP induced feeding, locomotor activity, and metabolic rate, and QRFP is bioactive in adipose tissue of obese individuals. Given that the adrenal gland is a pivotal organ for energy balance and homeostasis, we hypothesized that GPR103 and QRFP are involved in steroidogenic responses. Using qRT-PCR and immunohistochemistry, we mapped both GPR103 and QRFP in human fetal and adult adrenal gland as well as rat adrenals. Both were primarily localized in the adrenal cortex but not in the medulla. Activation of GPR103 in human adrenocortical H295R cells led to a decrease in forskolin-increased cAMP and an increase of intracellular Ca2+ levels. In addition, treatment of H295R cells with QRFP induced aldosterone and cortisol secretion as measured by ELISA. These increases were accompanied by increased expression and activity of StAR, CYB11B1, and CYP11B2 as assessed by qRT-PCR and luciferase reporter assay, respectively. Using specific inhibitors, we also demonstrated that aldosterone induction involves MAPK, PKC, and/or T-type Ca2+ channel-dependent pathways. These novel data demonstrate that QRFP induces adrenal steroidogenesis in vitro by regulating key steroidogenic enzymes involving MAPK/PKC and Ca2+ signaling pathways.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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