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17 November 2023 Autophagy core protein BECN1 is vital for spermatogenesis and male fertility in mice
Lu Ke, Xinyi Lin, Yuchuan Luo, Siming Tao, Chang Yan, Yifeilong He, Yingjie Wu, Ning Liu, Yinghe Qin
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Abstract

Mammalian spermatogenesis is a highly complex multi-step biological process, and autophagy has been demonstrated to be involved in the process of spermatogenesis. Beclin-1/BECN1, a core autophagy factor, plays a critical role in many biological processes and diseases. However, its function in spermatogenesis remains largely unclear. In the present study, germ cell–specific Beclin 1 (Becn1) knockout mice were generated and were conducted to determine the role of Becn1 in spermatogenesis and fertility of mice. Results indicate that Becn1 deficiency leads to reduced sperm motility and quantity, partial failure of spermiation, actin network disruption, excessive residual cytoplasm, acrosome malformation, and aberrant mitochondrial accumulation of sperm, ultimately resulting in reduced fertility in male mice. Furthermore, inhibition of autophagy was observed in the testes of germ cell–specific Becn1 knockout mice, which may contribute to impaired spermiogenesis and reduced fertility. Collectively, our results reveal that Becn1 is essential for fertility and spermiogenesis in mice.

Summary Sentence Autophagy core protein BECN1 is required for male fertility and spermiogenesis through maintaining normal autophagy function in germ cells.

Graphical Abstract

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Lu Ke, Xinyi Lin, Yuchuan Luo, Siming Tao, Chang Yan, Yifeilong He, Yingjie Wu, Ning Liu, and Yinghe Qin "Autophagy core protein BECN1 is vital for spermatogenesis and male fertility in mice," Biology of Reproduction 110(3), 599-614, (17 November 2023). https://doi.org/10.1093/biolre/ioad160
Received: 19 May 2023; Accepted: 14 November 2023; Published: 17 November 2023
KEYWORDS
acrosome
autophagy
BECN1
mitochondria
spermiogenesis
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