Age-Dependent Clonal Expansion of Non–Sperm-Forming Spermatogonial Stem Cells in Mouse Testes

IF 7.1 1区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Aging Cell Pub Date : 2025-02-22 DOI:10.1111/acel.70019
Terumichi Kawahara, Shinnosuke Suzuki, Toshinori Nakagawa, Yuki Kamo, Miki Kanouchi, Miyako Fujita, Maki Hattori, Atsuko Suzuki, Kentaro Tanemura, Shosei Yoshida, Kenshiro Hara
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Abstract

In male mammals, spermatogonial stem cells (SSCs) are essential for sustaining lifelong spermatogenesis within the testicular open niche, a unique environment that allows SSC migration over an extended niche area. As SSCs undergo continuous mitotic division, mutations accumulate and are transmitted to the descendant SSC clones. Therefore, SSC clonal fate behaviors, in terms of their efficiencies in completing spermatogenesis and undergoing expansion within the niche, influence sperm genomic diversity. We aimed to elucidate the effects of physiological aging on SSC clonal fate behavior within the testicular open niche. We used single-cell RNA sequencing, lineage tracing, and intravital live imaging to investigate SSC behavior in aged mouse testes, where spermatogenesis, although reduced, persists. We found that undifferentiated spermatogonia maintained gene expression heterogeneity during aging. Among these, GFRα1+ cells, which exhibited state heterogeneity, showed accelerated proliferation and persistent motility, continuing to function as SSCs in older mice. In contrast, a subset of SSCs characterized by low Egr4 and Cops5 expression did not contribute to spermatid formation. These non–sperm-forming SSC clones increased in proportion among the total SSC clones and expanded spatially within the testicular open niche in old mice, a phenomenon not observed in young mice. The expansion of non–sperm-forming SSC clones in aged testes suggests that they occupy a niche space, limiting the availability of functional SSCs and potentially reducing sperm production and genetic diversity. These findings highlight age-specific clonal characteristics as hallmarks of stem cell aging within the testicular open niche and provide novel insights into the mechanisms governing reproductive aging.

Abstract Image

非精子形成精原干细胞在小鼠睾丸中的年龄依赖性克隆扩增。
在雄性哺乳动物中,精原干细胞(SSC)对于维持睾丸开放生态位内的终身精子发生至关重要,这是一个独特的环境,允许SSC在扩展的生态位区域内迁移。随着SSC进行连续的有丝分裂,突变积累并传递给后代SSC克隆。因此,SSC克隆命运行为,就其完成精子发生和在生态位内扩张的效率而言,影响精子基因组多样性。我们的目的是阐明生理老化对睾丸开放生态位内SSC克隆命运行为的影响。我们使用单细胞RNA测序、谱系追踪和活体成像来研究SSC在老年小鼠睾丸中的行为,在老年小鼠睾丸中,精子发生虽然减少,但仍然存在。我们发现未分化精原细胞在衰老过程中保持了基因表达的异质性。其中,GFRα1+细胞表现出状态异质性,增殖加速,运动持续,在老年小鼠中继续发挥ssc的功能。相反,以低Egr4和Cops5表达为特征的ssc子集对精细胞的形成没有贡献。这些不形成精子的SSC克隆在老年小鼠的总SSC克隆中所占比例增加,并且在睾丸开放生态位内空间扩大,而在年轻小鼠中没有观察到这种现象。非精子形成SSC克隆在老年睾丸中的扩展表明,它们占据了一个生态位空间,限制了功能性SSC的可用性,并可能降低精子的产生和遗传多样性。这些发现突出了年龄特异性克隆特征作为睾丸开放生态位内干细胞衰老的标志,并为控制生殖衰老的机制提供了新的见解。
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来源期刊
Aging Cell
Aging Cell 生物-老年医学
CiteScore
14.40
自引率
2.60%
发文量
212
审稿时长
8 weeks
期刊介绍: Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.
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