生物
支持细胞
转录组
细胞生物学
干细胞
精子发生
衰老
男性不育
遗传学
不育
内分泌学
基因表达
基因
怀孕
作者
Daoyuan Huang,Yuesheng Zuo,Chen Zhang,Guoqiang Sun,Ying Jing,Jinghui Lei,Shuai Ma,Shuhui Sun,Huifen Lu,Yusheng Cai,Weiqi Zhang,Fei Gao,Andy Peng Xiang,Juan Carlos Izpisua Belmonte,Guang‐Hui Liu,Jing Qu,Si Wang
出处
期刊:Protein & Cell
[Springer Science+Business Media]
日期:2022-11-18
被引量:42
标识
DOI:10.1093/procel/pwac057
摘要
The testis is pivotal for male reproduction, and its progressive functional decline in aging is associated with infertility. However, the regulatory mechanism underlying primate testicular aging remains largely elusive. Here, we resolve the aging-related cellular and molecular alterations of primate testicular aging by establishing a single-nucleus transcriptomic atlas. Gene-expression patterns along the spermatogenesis trajectory revealed molecular programs associated with attrition of spermatogonial stem cell reservoir, disturbed meiosis and impaired spermiogenesis along the sequential continuum. Remarkably, Sertoli cell was identified as the cell type most susceptible to aging, given its deeply perturbed age-associated transcriptional profiles. Concomitantly, downregulation of the transcription factor Wilms' Tumor 1 (WT1), essential for Sertoli cell homeostasis, was associated with accelerated cellular senescence, disrupted tight junctions, and a compromised cell identity signature, which altogether may help create a hostile microenvironment for spermatogenesis. Collectively, our study depicts in-depth transcriptomic traits of non-human primate (NHP) testicular aging at single-cell resolution, providing potential diagnostic biomarkers and targets for therapeutic interventions against testicular aging and age-related male reproductive diseases.
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