Development of sexual dimorphism of skeletal muscles through the adrenal cortex, caused by androgen-induced global gene suppression

Authors
Takahashi, FumiyaBaba, TakashiChristianto, AntoniusYanai, ShogoLee-Okada, Hyeon-CheolIshiwata, KeisukeNakabayashi, KazuhikoHata, KenichiroIshii, TomohiroHasegawa, TomonobuYokomizo, TakehikoChoi, Man HoMorohashi, Ken-ichirou
Issue Date
2024-02
Publisher
Cell Press
Citation
Cell Reports, v.43, no.2
Abstract
The zona fasciculata (zF) in the adrenal cortex contributes to multiple physiological actions through glucocorticoid synthesis. The size, proliferation, and glucocorticoid synthesis characteristics are all female biased, and sexual dimorphism is established by androgen. In this study, transcriptomes were obtained to unveil the sex differentiation mechanism. Interestingly, both the amount of mRNA and the expressions of nearly all genes were higher in females. The expression of Nr5a1, which is essential for steroidogenic cell differentiation, was also female biased. Whole-genome studies demonstrated that NR5A1 regulates nearly all gene expression directly or indirectly. This suggests that androgen -induced global gene suppression is potentially mediated by NR5A1. Using Nr5a1 heterozygous mice, whose adrenal cortex is smaller than the wild type, we demonstrated that the size of skeletal muscles is possibly regulated by glucocorticoid synthesized by zF. Taken together, considering the ubiquitous presence of glucocorticoid receptors, our findings provide a pathway for sex differentiation through glucocorticoid synthesis.
Keywords
GONADAL HORMONE REPLACEMENT; STEROIDOGENIC FACTOR-I; ADRENOCORTICAL STRUCTURE; TRANSCRIPTION FACTOR; NUCLEAR RECEPTOR; POSTPUBERTAL GONADECTOMY; INTEGRATIVE ANALYSIS; NADPH PRODUCTION; EXPRESSION; RAT
ISSN
2211-1247
URI
https://pubs.kist.re.kr/handle/201004/149571
DOI
10.1016/j.celrep.2024.113715
Appears in Collections:
KIST Article > 2024
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