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CUG 起始的 CATSPERθ 参与 CatSper 通道组装,并作为鞭毛运输的检查点。

A CUG-initiated CATSPERθ functions in the CatSper channel assembly and serves as a checkpoint for flagellar trafficking.

机构信息

Department of Cellular and Molecular Physiology, Yale School of Medicine, Yale University, New Haven, CT 06510.

Research Institute for Microbial Diseases, Osaka University, Suita 565-0871, Japan.

出版信息

Proc Natl Acad Sci U S A. 2023 Sep 26;120(39):e2304409120. doi: 10.1073/pnas.2304409120. Epub 2023 Sep 19.

Abstract

Calcium signaling is critical for successful fertilization. In spermatozoa, calcium influx into the sperm flagella mediated by the sperm-specific CatSper calcium channel is necessary for hyperactivated motility and male fertility. CatSper is a macromolecular complex and is repeatedly arranged in zigzag rows within four linear nanodomains along the sperm flagella. Here, we report that the -encoded transmembrane (TM) domain-containing protein, CATSPERθ is essential for the CatSper channel assembly during sperm tail formation. CATSPERθ facilitates the channel assembly by serving as a scaffold for a pore-forming subunit CATSPER4. CATSPERθ is specifically localized at the interface of a CatSper dimer and can self-interact, suggesting its potential role in CatSper dimer formation. Male mice lacking CATSPERθ are infertile because the sperm lack the entire CatSper channel from sperm flagella, rendering sperm unable to hyperactivate, regardless of their normal expression in the testis. In contrast, genetic abrogation of any of the other CatSper TM subunits results in loss of CATSPERθ protein in the spermatid cells during spermatogenesis. CATSPERθ might act as a checkpoint for the properly assembled CatSper channel complex to traffic to sperm flagella. This study provides insights into the CatSper channel assembly and elucidates the physiological role of CATSPERθ in sperm motility and male fertility.

摘要

钙信号对于成功受精至关重要。在精子中,由精子特异性 CatSper 钙通道介导的钙离子流入精子鞭毛对于超激活运动和男性生育力是必需的。CatSper 是一个大分子复合物,在精子鞭毛的四个线性纳米域内重复排列成之字形行。在这里,我们报告说,-编码的跨膜 (TM) 结构域包含蛋白 CATSPERθ 对于精子尾部形成过程中的 CatSper 通道组装是必不可少的。CATSPERθ 通过作为形成孔的亚基 CATSPER4 的支架来促进通道组装。CATSPERθ 特异性定位于 CatSper 二聚体的界面,并且可以自我相互作用,表明其在 CatSper 二聚体形成中的潜在作用。缺乏 CATSPERθ 的雄性小鼠不育,因为精子鞭毛中缺乏整个 CatSper 通道,使精子无法超激活,而不管它们在睾丸中的正常表达如何。相比之下,CatSper TM 亚基的任何其他基因缺失都会导致精子发生过程中精子细胞中 CATSPERθ 蛋白的丢失。CATSPERθ 可能作为适当组装的 CatSper 通道复合物运输到精子鞭毛的检查点。本研究深入了解了 CatSper 通道的组装,并阐明了 CATSPERθ 在精子运动和男性生育力中的生理作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3862/10523455/9c05a181e4ec/pnas.2304409120fig01.jpg

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