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雄激素受体在哺乳动物卵母细胞中的命运:一个新假说。

Androgen receptor's destiny in mammalian oocytes: a new hypothesis.

作者信息

Li Mo, Schatten Heide, Sun Qing-Yuan

机构信息

Institute of Zoology, Chinese Academy of Sciences, Chaoyang, Beijing, People's Republic of China.

出版信息

Mol Hum Reprod. 2009 Mar;15(3):149-54. doi: 10.1093/molehr/gap006. Epub 2009 Feb 4.

Abstract

Unlike the well-established roles of androgen and androgen receptor (AR) in males, the functions of this steroid and its receptor in the ovary are still unclear. For decades, androgen and AR have long been considered to play a negative (at least not a positive) role in mammalian oocyte maturation. However, recent studies by us and others showed their positive influence in promoting meiotic maturation. On the other hand, rapid non-genomic effects of androgens have been observed and are now generally accepted as contributing to the physiological effects of the steroids and their related receptors in somatic cells, and this has stimulated us to explore the complex roles of AR in the ovary. Based on the classic dogma and new findings, we collected evidence to propose that the expression of AR shifts from the oocytes to the theca cells and finally disappears in the oocytes during evolution. It is suggested that the non-genomic pathway involving androgen and AR in the mammalian oocytes, unlike somatic cells, cells will undergo elimination. The function of androgen and AR in promoting meiotic maturation may have been replaced gradually by gonadotrophins. Moreover, a possible relationship between AR and polycystic ovary syndrome is also discussed, which might provide a clue for the pathology of the disease.

摘要

与雄激素和雄激素受体(AR)在男性中已明确的作用不同,这种类固醇及其受体在卵巢中的功能仍不清楚。几十年来,雄激素和AR长期被认为在哺乳动物卵母细胞成熟过程中起负面作用(至少不是正面作用)。然而,我们和其他人最近的研究表明它们在促进减数分裂成熟方面具有积极影响。另一方面,雄激素的快速非基因组效应已被观察到,现在普遍认为这有助于类固醇及其相关受体在体细胞中的生理效应,这促使我们探索AR在卵巢中的复杂作用。基于经典理论和新发现,我们收集证据提出,在进化过程中,AR的表达从卵母细胞转移到卵泡膜细胞,最终在卵母细胞中消失。有人提出,与体细胞不同,哺乳动物卵母细胞中涉及雄激素和AR的非基因组途径的细胞将被消除。雄激素和AR在促进减数分裂成熟方面的功能可能已逐渐被促性腺激素取代。此外,还讨论了AR与多囊卵巢综合征之间可能的关系,这可能为该疾病的病理提供线索。

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