Chen Dake, Zhou Shiqin, Tang Jinhua, Xiong Hao, Li Jialian, Li Fenge
Key Laboratory of Pig Genetics and Breeding of Ministry of Agriculture & Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry of Education, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.
The Cooperative Innovation Center for Sustainable Pig Production, Wuhan, 430070, People's Republic of China.
Cell Mol Life Sci. 2025 Feb 3;82(1):69. doi: 10.1007/s00018-024-05552-1.
DnaJ heat shock protein family member C5 beta (DNAJC5B), also known as cysteine-string protein beta, exhibits a prominent expression in testicular tissue and plays an important role in acrosomal exocytosis in vitro. Nevertheless, the precise role and underlying mechanism of DNAJC5B in spermatogenesis and male fertility remain poorly understood. The meta-analysis of RNA-sequencing datasets from porcine and murine testes reveals that Dnajc5b could be a pivotal factor in spermatogenesis. This study illustrates that male fertility declines with an increased ratio of abnormal spermatozoa in germ-cell knockout Dnajc5b mice. DNAJC5B has been identified as a mitochondrial protein with high expression in spermatids. The absence of DNAJC5B induces a cascade of mitochondrial damages, including oxidative stress, mitochondrial stress in the testes, and lower mitochondrial membrane potential of spermatozoa. In vivo and in vitro evidence demonstrates that DNAJC5B mitigates excessive cellular autophagy and mitophagy via DNAJ domain under environmental stress conditions, such as starvation or exposure to mitochondrial uncouplers FCCP and CCCP. This study highlights the important role of DNAJC5B in safeguarding male fertility by preserving mitochondrial function and regulating autophagy during spermiogenesis.
DnaJ热休克蛋白家族成员C5β(DNAJC5B),也称为半胱氨酸串珠蛋白β,在睾丸组织中显著表达,并且在体外顶体胞吐中发挥重要作用。然而,DNAJC5B在精子发生和男性生育中的精确作用及潜在机制仍知之甚少。对来自猪和小鼠睾丸的RNA测序数据集的荟萃分析表明,Dnajc5b可能是精子发生中的关键因素。本研究表明,在生殖细胞敲除Dnajc5b的小鼠中,随着异常精子比例的增加,雄性生育力下降。DNAJC5B已被鉴定为一种在精子细胞中高表达的线粒体蛋白。DNAJC5B的缺失会引发一系列线粒体损伤,包括氧化应激、睾丸中的线粒体应激以及精子线粒体膜电位降低。体内和体外证据表明,在饥饿或暴露于线粒体解偶联剂FCCP和CCCP等环境应激条件下,DNAJC5B通过DNAJ结构域减轻过度的细胞自噬和线粒体自噬。本研究强调了DNAJC5B在精子发生过程中通过维持线粒体功能和调节自噬来保障男性生育力方面的重要作用。