精子发生
生物
转录组
生殖细胞
细胞生物学
减数分裂
精子
条件基因敲除
生殖系
男性不育
男科
遗传学
基因
不育
基因表达
内分泌学
表型
怀孕
医学
作者
Fan Xu,Meiyang Zhou,Hong Li,Xiao Wang,Ling Yang,Jingyi Li,Nana Li,Zhengpin Wang
标识
DOI:10.1096/fj.202502504r
摘要
Mammalian spermatogenesis comprises three phases: the mitotic phase of spermatogonia (involving self-renewal and proliferation), the meiotic phase of spermatocytes (producing haploid round spermatids), and the spermiogenic phase (transforming round spermatids into spermatozoa). This process depends critically on maintaining a normal transcriptome and proteome. While recent studies demonstrated that conditional knockout of Exosc10 in male germ cells prior to meiosis disrupts meiosis, causing spermatogenic defects and male infertility, the role of EXOSC10 in spermatogonial maintenance remained unknown. This study reveals the critical role of EXOSC10 in maintaining mouse spermatogonia. Knockout of Exosc10 in embryonic (E15.5) male germ cells using Ddx4-Cre mice disrupts spermatogonial maintenance. This is manifested by reduced germ cell proliferation, arrested spermatogenesis, failed sperm production, and consequent male infertility. Transcriptomic and proteomic analyses confirmed that Exosc10 deficiency disrupts the expression of genes and proteins associated with spermatogenesis, ribosome biogenesis, germline stem cell maintenance, and regulation of reproductive processes, thereby impairing spermatogonial maintenance and blocking spermatogenesis. In summary, this study highlights that EXOSC10 safeguards normal sperm production and male fertility by maintaining the transcriptome and proteome essential for spermatogenesis, particularly at the spermatogonial stage.
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