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CNNM2在精子获能过程中的运动能力及Ca(2+)内流中的补充作用。

Complementary role of CNNM2 in sperm motility and Ca(2+) influx during capacitation.

作者信息

Yamazaki Daisuke, Funato Yosuke, Miyata Haruhiko, Ikawa Masahito, Miki Hiroaki

机构信息

Department of Cellular Regulation, Research Institute for Microbial Diseases, Osaka University, 3-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

Department of Experimental Genome Research, Research Institute for Microbial Diseases, Osaka University, 3-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Biochem Biophys Res Commun. 2016 Jun 3;474(3):441-446. doi: 10.1016/j.bbrc.2016.05.001. Epub 2016 May 2.

Abstract

Ca(2+) plays a central role in the regulation of sperm motility. We recently reported an unexpected role of CNNM4, a Mg(2+) transporter, in this process by demonstrating perturbed Ca(2+) influx and gradual loss of motility of Cnnm4-deficient sperm. However, Cnnm4-deficient male mice were not entirely infertile, and a significant Ca(2+) response was still observed in their sperm. In the present study, we generated Cnnm4-deficient mice harboring a non-functional Cnnm2 allele (Cnnm2(Δ)), to examine whether CNNM2 compensates for the lost function of CNNM4 in sperm. Cnnm2(+/Δ); Cnnm4(Δ/Δ) mice were infertile, and no obvious histological abnormalities were noted in their testis and epididymis. Their sperm showed normal morphology, but became immotile much more rapidly than those from Cnnm4(Δ/Δ) mice. When capacitation was initiated using serum albumin application, a rapid increase of intracellular Ca(2+) levels was observed in most wild-type sperm, but only about half of sperm from Cnnm4(Δ/Δ) mice exhibited a Ca(2+) response, and the response rate was further reduced in sperm from Cnnm2(+/Δ); Cnnm4(Δ/Δ) mice. Thus, sperm motility and Ca(2+) response were more severely affected in sperm from Cnnm2(+/Δ); Cnnm4(Δ/Δ) mice than in those from Cnnm4(Δ/Δ) mice, implicating CNNM2 in regulating these processes.

摘要

钙离子(Ca(2+))在精子运动的调节中起着核心作用。我们最近报道了镁离子(Mg(2+))转运蛋白CNNM4在这一过程中发挥了意想不到的作用,通过证明Cnnm4基因缺陷型精子的钙离子内流受到干扰且运动能力逐渐丧失。然而,Cnnm4基因缺陷型雄性小鼠并非完全不育,并且在它们的精子中仍观察到显著的钙离子反应。在本研究中,我们构建了携带无功能Cnnm2等位基因(Cnnm2(Δ))的Cnnm4基因缺陷型小鼠,以研究CNNM2是否能补偿精子中CNNM4丧失的功能。Cnnm2(+/Δ); Cnnm4(Δ/Δ)小鼠不育,其睾丸和附睾未发现明显的组织学异常。它们的精子形态正常,但比Cnnm4(Δ/Δ)小鼠的精子更快地失去运动能力。当使用血清白蛋白启动获能时,大多数野生型精子的细胞内钙离子水平迅速升高,但Cnnm4(Δ/Δ)小鼠的精子中只有约一半表现出钙离子反应,而Cnnm2(+/Δ); Cnnm4(Δ/Δ)小鼠精子的反应率进一步降低。因此,Cnnm2(+/Δ); Cnnm4(Δ/Δ)小鼠精子的运动能力和钙离子反应比Cnnm4(Δ/Δ)小鼠精子受到的影响更严重,这表明CNNM2参与调节这些过程。

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