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哺乳动物生殖母细胞和精原细胞分化:最新进展与尚存挑战

Mammalian gonocyte and spermatogonia differentiation: recent advances and remaining challenges.

作者信息

Manku Gurpreet, Culty Martine

机构信息

The Research Institute of the McGill University Health CentreMontreal General Hospital, 1650 Cedar Avenue, Montreal, Quebec, Canada H3G 1A4Departments of MedicinePharmacology and TherapeuticsMcGill University, Montreal, Quebec, Canada The Research Institute of the McGill University Health CentreMontreal General Hospital, 1650 Cedar Avenue, Montreal, Quebec, Canada H3G 1A4Departments of MedicinePharmacology and TherapeuticsMcGill University, Montreal, Quebec, Canada The Research Institute of the McGill University Health CentreMontreal General Hospital, 1650 Cedar Avenue, Montreal, Quebec, Canada H3G 1A4Departments of MedicinePharmacology and TherapeuticsMcGill University, Montreal, Quebec, Canada.

The Research Institute of the McGill University Health CentreMontreal General Hospital, 1650 Cedar Avenue, Montreal, Quebec, Canada H3G 1A4Departments of MedicinePharmacology and TherapeuticsMcGill University, Montreal, Quebec, Canada The Research Institute of the McGill University Health CentreMontreal General Hospital, 1650 Cedar Avenue, Montreal, Quebec, Canada H3G 1A4Departments of MedicinePharmacology and TherapeuticsMcGill University, Montreal, Quebec, Canada The Research Institute of the McGill University Health CentreMontreal General Hospital, 1650 Cedar Avenue, Montreal, Quebec, Canada H3G 1A4Departments of MedicinePharmacology and TherapeuticsMcGill University, Montreal, Quebec, Canada

出版信息

Reproduction. 2015 Mar;149(3):R139-57. doi: 10.1530/REP-14-0431.

Abstract

The production of spermatozoa relies on a pool of spermatogonial stem cells (SSCs), formed in infancy from the differentiation of their precursor cells, the gonocytes. Throughout adult life, SSCs will either self-renew or differentiate, in order to maintain a stem cell reserve while providing cells to the spermatogenic cycle. By contrast, gonocytes represent a transient and finite phase of development leading to the formation of SSCs or spermatogonia of the first spermatogenic wave. Gonocyte development involves phases of quiescence, cell proliferation, migration, and differentiation. Spermatogonia, on the other hand, remain located at the basement membrane of the seminiferous tubules throughout their successive phases of proliferation and differentiation. Apoptosis is an integral part of both developmental phases, allowing for the removal of defective cells and the maintenance of proper germ-Sertoli cell ratios. While gonocytes and spermatogonia mitosis are regulated by distinct factors, they both undergo differentiation in response to retinoic acid. In contrast to postpubertal spermatogenesis, the early steps of germ cell development have only recently attracted attention, unveiling genes and pathways regulating SSC self-renewal and proliferation. Yet, less is known on the mechanisms regulating differentiation. The processes leading from gonocytes to spermatogonia have been seldom investigated. While the formation of abnormal gonocytes or SSCs could lead to infertility, defective gonocyte differentiation might be at the origin of testicular germ cell tumors. Thus, it is important to better understand the molecular mechanisms regulating these processes. This review summarizes and compares the present knowledge on the mechanisms regulating mammalian gonocyte and spermatogonial differentiation.

摘要

精子的产生依赖于精原干细胞(SSCs)库,这些细胞在婴儿期由其前体细胞——生殖母细胞分化形成。在成年期,精原干细胞会自我更新或分化,以维持干细胞储备,同时为精子发生周期提供细胞。相比之下,生殖母细胞代表着一个短暂且有限的发育阶段,最终导致形成精原干细胞或第一波精子发生的精原细胞。生殖母细胞的发育涉及静止、细胞增殖、迁移和分化阶段。另一方面,精原细胞在其连续的增殖和分化阶段始终位于生精小管的基底膜处。细胞凋亡是这两个发育阶段不可或缺的一部分,它允许清除有缺陷的细胞并维持生殖细胞与支持细胞的适当比例。虽然生殖母细胞和精原细胞的有丝分裂受不同因素调节,但它们都会因视黄酸而发生分化。与青春期后的精子发生不同,生殖细胞发育的早期步骤直到最近才受到关注,揭示了调节精原干细胞自我更新和增殖的基因和途径。然而,对于调节分化的机制了解较少。从生殖母细胞到精原细胞的过程很少被研究。虽然异常生殖母细胞或精原干细胞的形成可能导致不育,但有缺陷的生殖母细胞分化可能是睾丸生殖细胞肿瘤的起源。因此,更好地理解调节这些过程的分子机制非常重要。本综述总结并比较了目前关于调节哺乳动物生殖母细胞和精原细胞分化机制的知识。

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