Sestrin2 和 Sestrin3 保护精子发生免受热诱导的减数分裂缺陷的影响。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-07-12 DOI:10.1093/biolre/ioae042
Wenhui Chen, Mengchen Wang, Huan Wang, Yuqing Jiang, Jing Zhu, Xinxin Zeng, Huihui Xie, Qingling Yang, Yingpu Sun
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引用次数: 0

摘要

热应激(HS)会诱发睾丸氧化应激,损害精子生成,并增加男性不育的风险。最近的研究强调了睾丸素家族在减少细胞氧化损伤方面的抗氧化特性。然而,Sestrins(Sestrin1、2和3)在睾丸对热应激反应中的作用仍不清楚。在这里,我们发现相对于Sestrin1,Sestrin2和3在睾丸中高表达。然后,我们通过CRISPR/Cas9技术产生了Sestrin2-/-和Sestrin3-/-小鼠,研究它们在HS后精子发生过程中的作用。我们的数据显示,与野生型小鼠相比,Sestrin2-/-和Sestrin3-/-小鼠的睾丸在HS后表现出更严重的损伤,表现为生殖细胞损失加剧和氧化应激水平升高。值得注意的是,与对照组相比,Sestrin2-/-和Sestrin3-/-小鼠热诱导的精母细胞凋亡显著增加。从机理上讲,精母细胞转录组和染色体扩增表明,Sestrin2和Sestrin3的缺失会影响热应激后DNA双链断裂(DSB)的修复,从而加剧减数分裂的失败。综上所述,我们的研究表明,Sestrin2和Sestrin3在减轻精子发生对热应激的损害方面具有重要的保护功能。
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Sestrin2 and Sestrin3 protect spermatogenesis against heat-induced meiotic defects†.

Heat stress induces testicular oxidative stress, impairs spermatogenesis, and increases the risk of male infertility. Recent studies have highlighted the antioxidative properties of the Sestrins family in reducing cellular oxidative damage. However, the role of Sestrins (Sestrin1, 2, and 3) in the testicular response to heat stress remains unclear. Here, we found that Sestrin2 and 3 were highly expressed in the testis relative to Sestrin1. Then, the Sestrin2-/- and Sestrin3-/- mice were generated by CRISPR/Cas9 to investigate the role of them on spermatogenesis after heat stress. Our data showed that Sestrin2-/- and Sestrin3-/- mice testes exhibited more severe damage manifested by exacerbated loss of germ cells and higher levels of oxidative stress as compared to wild-type counterparts after heat stress. Notably, Sestrin2-/- and Sestrin3-/- mice underwent a remarkable increase in heat-induced spermatocyte apoptosis than that of controls. Furthermore, the transcriptome landscape of spermatocytes and chromosome spreading showed that loss of Sestrin2 and Sestrin3 exacerbated meiotic failure by compromising DNA double-strand breaks repair after heat stress. Taken together, our work demonstrated a critical protective function of Sestrin2 and Sestrin3 in mitigating the impairments of spermatogenesis against heat stress.

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