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灵长类睾丸衰老的单细胞转录组图谱揭示了精原干细胞库的衰竭和支持细胞内稳态的丧失。

A single-nucleus transcriptomic atlas of primate testicular aging reveals exhaustion of the spermatogonial stem cell reservoir and loss of Sertoli cell homeostasis.

机构信息

Advanced Innovation Center for Human Brain Protection, National Clinical Research Center for Geriatric Disorders, Xuanwu Hospital Capital Medical University, Beijing 100053, China.

Aging Translational Medicine Center, International Center for Aging and Cancer, Beijing Municipal Geriatric Medical Research Center, Xuanwu Hospital, Capital Medical University, Beijing 100053, China.

出版信息

Protein Cell. 2023 Dec 1;14(12):888-907. doi: 10.1093/procel/pwac057.

Abstract

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.

摘要

睾丸对于男性生殖至关重要,其在衰老过程中的功能逐渐下降与不育有关。然而,灵长类动物睾丸衰老的调控机制在很大程度上仍难以捉摸。在这里,我们通过建立一个单细胞转录组图谱来解决灵长类动物睾丸衰老的相关细胞和分子变化。沿着精子发生轨迹的基因表达模式揭示了与精原干细胞库耗竭、减数分裂紊乱和精子发生受损相关的分子程序,沿着连续体进行。值得注意的是,Sertoli 细胞被鉴定为最易受衰老影响的细胞类型,因为其与年龄相关的转录谱存在深刻的扰动。同时,转录因子 Wilms' Tumor 1(WT1)的下调,对 Sertoli 细胞的稳态至关重要,与细胞衰老加速、紧密连接破坏和细胞身份特征受损有关,这些共同作用可能有助于为精子发生创造一个恶劣的微环境。总之,我们的研究以单细胞分辨率描绘了非人类灵长类动物(NHP)睾丸衰老的深入转录组特征,为治疗睾丸衰老和与年龄相关的男性生殖疾病提供了潜在的诊断生物标志物和靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0300/10691849/dd97f99db073/pwac057_fig1.jpg

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