Deficiency of the <i>Tmem232</i> Gene Causes Male Infertility with Morphological Abnormalities of the Sperm Flagellum in Mice

The axoneme and accessory structures of flagella are critical for sperm motility and male fertilization. Sperm production needs precise and highly ordered gene expression to initiate and sustain the many cellular processes that result in mature spermatozoa. Here, we identified a testis enriched gene...

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Bibliographic Details
Main Authors: Xiuqing He, Wenyu Mu, Ziqi Wang, Ke Xu, Yingying Yin, Gang Lu, Wai-Yee Chan, Hongbin Liu, Yue Lv, Shangming Liu
Format: Article
Language:English
Published: MDPI AG 2023-06-01
Series:Cells
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Online Access:https://www.mdpi.com/2073-4409/12/12/1614
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Summary:The axoneme and accessory structures of flagella are critical for sperm motility and male fertilization. Sperm production needs precise and highly ordered gene expression to initiate and sustain the many cellular processes that result in mature spermatozoa. Here, we identified a testis enriched gene transmembrane protein 232 (<i>Tmem232</i>), which is essential for the structural integrity of the spermatozoa flagella axoneme. <i>Tmem232</i> knockout mice were generated for in vivo analyses of its functions in spermatogenesis. Phenotypic analysis showed that deletion of <i>Tmem232</i> in mice causes male-specific infertility. Transmission electron microscopy together with scanning electron microscopy were applied to analyze the spermatozoa flagella and it was observed that the lack of TMEM232 caused failure of the cytoplasm removal and the absence of the 7th outer microtubule doublet with its corresponding outer dense fiber (ODF). Co-IP assays further identified that TMEM232 interacts with ODF family protein ODF1, which is essential to maintain sperm motility. In conclusion, our findings indicate that TMEM232 is a critical protein for male fertility and sperm motility by regulating sperm cytoplasm removal and maintaining axoneme integrity.
ISSN:2073-4409