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缺氧应激下小鼠生殖细胞-2精子细胞中RNA修饰的变化

Alterations of RNA Modification in Mouse Germ Cell-2 Spermatids Under Hypoxic Stress.

作者信息

He Tong, Guo Huanping, Xia Lin, Shen Xipeng, Huang Yun, Wu Xiao, Jiang Xuelin, Xu Yinying, Tan Yi, Zhang Yunfang, Tan Dongmei

机构信息

Laboratory Animal Center, Chongqing Medical University, Chongqing, China.

Medical Center of Hematology, Xinqiao Hospital, Army Medical University, Chongqing, China.

出版信息

Front Mol Biosci. 2022 Jun 14;9:871737. doi: 10.3389/fmolb.2022.871737. eCollection 2022.

Abstract

Hypoxia is a known stress factor in mammals and has been shown to potentially impair male fertility, which manifests as spermatogenic dysfunction and decreased semen quality. Studies have shown that RNA modifications, the novel post-transcriptional regulators, are involved in spermatogenesis, and hypoxia-induced alterations in RNA modification in testes and sperm cells may be associated with impaired spermatogenesis in mice. However, the molecular mechanisms via which RNA modifications influence spermatogenesis under hypoxic stress conditions are unclear. In this study, we generated a mouse Germ Cell-2 spermatid (GC-2spd) hypoxia model by culturing cells in a 1% O incubator for 48 h or treating them with CoCl for 24 h. The hypoxia treatment significantly inhibited proliferation and induced apoptosis in GC-2spd cells. The RNA modification signatures of total RNAs (2 types) and differentially sized RNA fragments (7 types of approximately 80 nt-sized tRNAs; 9 types of 17-50 nt-sized sncRNAs) were altered, and tRNA stability was partially affected. Moreover, the expression profiles of sncRNAs, such as microRNAs, tsRNAs, rsRNAs, and ysRNAs, were significantly regulated, and this might be related to the alterations in RNA modification and subsequent transcriptomic changes. We comprehensively analyzed alterations in RNA modification signatures in total RNAs, tRNAs (approximately 80 nt), and small RNAs (17-50 nt) as well as the expression profiles of sncRNAs and transcriptomes in hypoxia-treated GC-2spd cells; our data suggested that RNA modifications may be involved in cellular responses under hypoxic stress conditions and could provide a basis for a better understanding of the molecular mechanisms underlying male infertility.

摘要

缺氧是哺乳动物已知的应激因素,已被证明可能损害雄性生育能力,表现为生精功能障碍和精液质量下降。研究表明,RNA修饰作为新型转录后调节因子参与精子发生,睾丸和精子细胞中缺氧诱导的RNA修饰改变可能与小鼠精子发生受损有关。然而,在缺氧应激条件下RNA修饰影响精子发生的分子机制尚不清楚。在本研究中,我们通过在1%氧气培养箱中培养细胞48小时或用氯化钴处理24小时,建立了小鼠生殖细胞-2精子细胞(GC-2spd)缺氧模型。缺氧处理显著抑制了GC-2spd细胞的增殖并诱导其凋亡。总RNA(2种类型)和不同大小RNA片段(7种约80 nt大小的tRNA;9种17 - 50 nt大小的sncRNA)的RNA修饰特征发生改变,tRNA稳定性受到部分影响。此外,sncRNAs(如microRNAs、tsRNAs、rsRNAs和ysRNAs)的表达谱受到显著调控,这可能与RNA修饰的改变及随后的转录组变化有关。我们全面分析了缺氧处理的GC-2spd细胞中总RNA、tRNA(约80 nt)和小RNA(17 - 50 nt)的RNA修饰特征变化以及sncRNAs的表达谱和转录组;我们的数据表明,RNA修饰可能参与缺氧应激条件下的细胞反应,并可为更好地理解男性不育的分子机制提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc1e/9237606/7bc963e8c94d/fmolb-09-871737-g001.jpg

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