Carré Gwenn-Aël, Greenfield Andy
Mammalian Genetics Unit, Medical Research Council, Harwell, Oxfordshire, OX11 0RD, UK.
Results Probl Cell Differ. 2016;58:47-66. doi: 10.1007/978-3-319-31973-5_3.
The supporting cell lineage plays a crucial role in nurturing the development of germ cells in the adult gonad. Sertoli cells in the testis support the progression of spermatogonial stem cells through meiosis to the production of motile spermatozoa. Granulosa cells, meanwhile, are a critical component of the ovarian follicle that produces the mature oocyte. It is a distinctive feature of the embryonic gonad that at least some of the supporting cells are derived from a single sexually bipotential precursor lineage. It is the commitment of this somatic lineage to either the Sertoli or granulosa cell fate that defines sex determination. In this chapter we review what is known about the key molecules responsible for this lineage decision in the developing mammalian gonads, relying primarily on data from studies of mice and humans. We focus on recent advances in our understanding of the mutually antagonistic interactions of testis- and ovary-determining pathways and their complexity as revealed by genetic analyses. For the sake of simplicity, we will deal with supporting cells in testis and ovary development in separate sections, but numerous points of contact exist between these accounts of gonadogenesis in male and female embryos, primarily due to the aforementioned mutual antagonisms. The final section will offer a brief synthesis of these organ-specific overviews and a summary of the key themes that emerge in this review of supporting cell differentiation in mammalian sex determination.
支持细胞谱系在成年性腺中对生殖细胞的发育起着至关重要的滋养作用。睾丸中的支持细胞支持精原干细胞通过减数分裂发育为可游动精子的过程。与此同时,颗粒细胞是卵巢卵泡产生成熟卵母细胞的关键组成部分。胚胎性腺的一个显著特征是至少部分支持细胞来源于单一的性双潜能前体细胞谱系。正是这种体细胞谱系向支持细胞或颗粒细胞命运的定向决定了性别决定。在本章中,我们主要依据小鼠和人类研究的数据,综述了发育中的哺乳动物性腺中负责这种谱系决定的关键分子的相关知识。我们重点关注了在睾丸和卵巢决定途径相互拮抗的相互作用及其遗传分析所揭示的复杂性方面的最新进展。为了简便起见,我们将分别阐述睾丸和卵巢发育中的支持细胞,但这些关于雄性和雌性胚胎性腺发生的叙述之间存在诸多联系点,主要是由于上述相互拮抗作用。最后一部分将简要综合这些器官特异性概述,并总结在本次哺乳动物性别决定中支持细胞分化综述中出现的关键主题。