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被遗忘的英雄归来:Y 染色体编码的 Zfy 在男性生殖中的作用。

Return of the forgotten hero: the role of Y chromosome-encoded Zfy in male reproduction.

机构信息

Institute for Biogenesis Research, John A. Burns School of Medicine, University of Hawaii, Honolulu, HI, USA.

Institut Cochin, INSERM, U1016, CNRS UMR8104, Universite Paris Cite, Paris, France.

出版信息

Mol Hum Reprod. 2023 Jul 31;29(8). doi: 10.1093/molehr/gaad025.

Abstract

The Y-linked zinc finger gene ZFY is conserved across eutherians and is known to be a critical fertility factor in some species. The initial studies of the mouse homologues, Zfy1 and Zfy2, were performed using mice with spontaneous Y chromosome mutations and Zfy transgenes. These studies revealed that Zfy is involved in multiple processes during spermatogenesis, including removal of germ cells with unpaired chromosomes and control of meiotic sex chromosome inactivation during meiosis I, facilitating the progress of meiosis II, promoting spermiogenesis, and improving assisted reproduction outcomes. Zfy was also identified as a key gene in Y chromosome evolution, protecting this chromosome from extinction by serving as the executioner responsible for meiosis surveillance. Studies with targeted Zfy knock-outs revealed that mice lacking both homologues have severe spermatogenic defects and are infertile. Based on protein structure and in vitro assays, Zfy is expected to drive spermatogenesis as a transcriptional regulator. The combined evidence documents that the presence of at least one Zfy homologue is required for male fertility and that Zfy2 plays a more prominent role. This knowledge reinforces the importance of these factors for mouse spermatogenesis and informs our understanding of the human ZFY variants, which are homologous to the mouse Zfy1 and Zfy2.

摘要

Y 连锁锌指基因 ZFY 在真兽亚纲中是保守的,已知在一些物种中是关键的生育因素。最初对小鼠同源物 Zfy1 和 Zfy2 的研究是使用自发发生 Y 染色体突变和 Zfy 转基因的小鼠进行的。这些研究表明,Zfy 参与精子发生过程中的多个过程,包括去除未配对染色体的生殖细胞和控制减数分裂 I 中的性染色体失活,促进减数分裂 II 的进展,促进精子发生,并改善辅助生殖结果。Zfy 也被确定为 Y 染色体进化的关键基因,通过作为负责减数分裂监测的执行者,保护这条染色体免于灭绝。针对 Zfy 敲除的研究表明,缺乏两个同源物的小鼠存在严重的精子发生缺陷,并且不育。基于蛋白质结构和体外测定,Zfy 有望作为转录调节剂来驱动精子发生。综合证据表明,至少存在一个 Zfy 同源物是雄性生育所必需的,并且 Zfy2 发挥更重要的作用。这一知识强调了这些因素对小鼠精子发生的重要性,并为我们理解与小鼠 Zfy1 和 Zfy2 同源的人类 ZFY 变体提供了信息。

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