Testosterone Induces Redistribution of Forkhead Box-3a and Down-Regulation of Growth and Differentiation Factor 9 Messenger Ribonucleic Acid Expression at Early Stage of Mouse Folliculogenesis

Author:

Yang Jun-Ling1,Zhang Chun-Ping1,Li Lei1,Huang Lin1,Ji Shao-Yang1,Lu Cui-Ling1,Fan Cui-Hong1,Cai Huan1,Ren Yu1,Hu Zhao-Yuan1,Gao Fei1,Liu Yi-Xun1

Affiliation:

1. State Key Laboratory of Reproduction Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China

Abstract

Increasing evidence has shown that excess androgen may be a main cause of polycystic ovary syndrome (PCOS). However, the molecular mechanism of androgen action on the ovary is unclear. To investigate the possible impacts of androgen on early follicular development, neonatal mouse ovaries mainly containing primordial follicles were cultured with testosterone. We demonstrated that the number of primary follicles was increased after 10 d culture with testosterone treatment via phosphatidylinositol 3-kinase/Akt pathway. Androgen induced Forkhead box (Foxo)-3a activation, and translocation of Foxo3a protein from oocyte nuclei to cytoplasm, which might be a key step for primordial follicle activation. Interestingly, testosterone was also capable of down-regulating growth and differentiation factor-9 expression via its receptor. In summary, we infer that intraovarian excess androgen in PCOS might result in excess early follicles by inducing oocyte Foxo3a translocation and follicular arrest by down-regulating growth and differentiation factor-9 expression.

Publisher

The Endocrine Society

Subject

Endocrinology

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