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生殖中的 mTOR 通路:从性腺功能到发育协调。

The mTOR pathway in reproduction: from gonadal function to developmental coordination.

机构信息

CNC-Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.

Department of Life Sciences, Calçada Martim de Freitas, University of Coimbra, Portugal.

出版信息

Reproduction. 2020 Apr;159(4):R173-R188. doi: 10.1530/REP-19-0057.

Abstract

Reproduction depends on many factors, from gamete quality to placenta formation, to fetal development. The mTOR pathway is emerging as a major player that integrates several cellular processes in response to a variety of environmental cues that are relevant in many aspects of reproduction. This review provides a general overview, summarizing the involvement of the two mTOR complexes (mTORC1 and mTORC2) in integrating signaling pathways, sensing environmental status, and managing physiological processes inherent to successful reproductive outcomes and pluripotent stem cell function. As a well-known governor of multiple cellular functions, it is not surprising that mTOR has a key regulatory role in determining cell quiescence or differentiation. In the gonads mTOR helps maintain spermatogonial stem cell and follicle identity and tightly regulates differentiation in both systems to ensure proper gamete production. The mTOR pathway is also known to prevent premature follicle exhaustion, while also controlling the blood-testis barrier in the male gonad. In stem cells mTOR again seems to have a role in controlling both pluripotency and differentiation, mirrored by its in vivo roles in the embryo, notably in regulating diapause. Finally, although there are clearly more complex systems intertwined in placental function, mTOR seems to serve as an early checkpoint for development progression and successful implantation.

摘要

生殖依赖于许多因素,从配子质量到胎盘形成,再到胎儿发育。mTOR 通路作为一个主要的调控因子,整合了多种细胞过程,以响应许多与生殖相关的环境信号。本综述概述了两个 mTOR 复合物(mTORC1 和 mTORC2)在整合信号通路、感知环境状态以及管理成功生殖结果和多能干细胞功能所固有的生理过程中的作用。作为多种细胞功能的著名调控因子,mTOR 在决定细胞静止或分化方面发挥关键调控作用并不奇怪。在性腺中,mTOR 有助于维持精原干细胞和卵泡的身份,并在这两个系统中严格调控分化,以确保适当的配子产生。mTOR 途径也被认为可以防止卵泡过早衰竭,同时还控制雄性性腺中的血睾屏障。在干细胞中,mTOR 似乎再次在控制多能性和分化方面发挥作用,这与其在胚胎中的体内作用相呼应,特别是在调节休眠方面。最后,尽管胎盘功能中显然有更复杂的系统相互交织,但 mTOR 似乎是发育进展和成功植入的早期检查点。

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