Gannon Anne-Louise, O'Hara Laura, Mason Ian J, Jørgensen Anne, Frederiksen Hanne, Curley Michael, Milne Laura, Smith Sarah, Mitchell Rod T, Smith Lee B
MRC Centre for Reproductive Health, University of Edinburgh, The Queen's Medical Research Institute, Edinburgh, United Kingdom.
School of Environmental and Life Sciences, Faculty of Science, University of Newcastle, Callaghan, NSW, Australia.
Front Endocrinol (Lausanne). 2021 Jan 21;11:599869. doi: 10.3389/fendo.2020.599869. eCollection 2020.
Adrenal androgens are fundamental mediators of ovarian folliculogenesis, embryonic implantation, and breast development. Although adrenal androgen function in target tissues are well characterized, there is little research covering the role of androgen-signaling within the adrenal itself. Adrenal glands express AR which is essential for the regression of the X-zone in male mice. Female mice also undergo X-zone regression during their first pregnancy, however whether this is also controlled by AR signaling is unknown. To understand the role of the androgen receptor (AR) in the female adrenal, we utilized a -Cre to specifically ablate AR from the mouse adrenal cortex. Results show that AR-signaling is dispensable for adrenal gland development in females, and for X-zone regression during pregnancy, but is required to suppress elevation of corticosterone levels post-partum. Additionally, following disruption to adrenal AR, aberrant spindle cell development is observed in young adult females. These results demonstrate sexually dimorphic regulation of the adrenal X-zone by AR and point to dysfunctional adrenal androgen signaling as a possible mechanism in the early development of adrenal spindle cell hyperplasia.
肾上腺雄激素是卵巢卵泡生成、胚胎着床和乳腺发育的重要介质。尽管肾上腺雄激素在靶组织中的功能已得到充分表征,但关于雄激素信号在肾上腺自身中的作用却鲜有研究。肾上腺表达雄激素受体(AR),这对雄性小鼠X区的退化至关重要。雌性小鼠在首次怀孕期间也会经历X区退化,然而这是否也受AR信号控制尚不清楚。为了解雄激素受体(AR)在雌性肾上腺中的作用,我们利用α-Cre特异性敲除小鼠肾上腺皮质中的AR。结果表明,AR信号对于雌性肾上腺发育以及孕期X区退化并非必需,但对于抑制产后皮质酮水平升高是必需的。此外,肾上腺AR被破坏后,在年轻成年雌性小鼠中观察到异常的梭形细胞发育。这些结果表明AR对肾上腺X区有性别差异的调控作用,并指出肾上腺雄激素信号功能失调可能是肾上腺梭形细胞增生早期发展的一种机制。