Is membrane androgen and estrogen receptor signaling imperative in the governing function of the adrenal cortex in the Eurasian beaver (Castor fiber L.)?

Author:

Lonc G.1,Hrabia A.2,Krakowska I.1,Korzekwa A. J.3,Zarzycka M.4,Wolak D.2,Wajdzik M.5,Kotula‐Balak M.1

Affiliation:

1. Department of Animal Anatomy and Preclinical Sciences, University Centre of Veterinary Medicine JU‐UA University of Agriculture in Krakow Krakow Poland

2. Department of Animal Physiology and Endocrinology, Faculty of Animal Science University of Agriculture in Krakow Krakow Poland

3. Department of Biodiversity Protection, Institute of Animal Reproduction and Food Research Polish Academy of Sciences Olsztyn Poland

4. Department of Medical Biochemistry Jagiellonian University Medical College Krakow Poland

5. Department of Forest Biodiversity, Faculty of Forestry University of Agriculture Krakow Poland

Abstract

AbstractThere is a need to fully know the physiology of Eurasian beaver due to its essential role in environmental homeostasis. However, a “human factor“ impacts this, including stress conditions and environmental pollution. Adrenal glands protect these all. The regulation of endocrine processes by nonclassical androgen and estrogen signaling, the first and fastest control, is still a matter of research. The specific analyses performed here in mature female and male beaver adrenals contained: anatomical and histological examinations, expression and localization of membrane androgen receptor (zinc transporter, Zinc‐ and Iron‐like protein 9; ZIP9) and membrane estrogen receptor coupled with G protein (GPER), and measurement of zinc (Zn2+) and copper (Ca2+) ion levels and corticosterone levels. We revealed normal anatomical localization, size, and tissue histology in female and male beavers, respectively. Equally, ZIP9 and GPER were localized in the membrane of all adrenal cortex cells. The protein expression of these receptors was higher (p < 0.001) in male than female adrenal cortex cells. Similarly, Zn2+ and Ca2+ ion levels were higher (p < 0.05, p < 0.01) in male than female adrenal cortex. The increased corticosterone levels (p < 0.001) were detected in the adrenal cortex of females when compared to males. The present study is the first to report the presence of nonclassical androgen and estrogen signaling and its possible regulatory function in the adrenal cortex of Eurasian beavers. We assume that this first‐activated and fast‐transmitted regulation can be important in the context of the effect of environmental physical and chemical stressors especially on adrenal cortex cells. The beaver adrenals may constitute an additional supplementary model for searching for universal mechanisms of adrenal cortex physiology and diseases.

Publisher

Wiley

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