首页> 外文期刊>Frontiers in Cell and Developmental Biology >SUN5 Interacting With Nesprin3 Plays an Essential Role in Sperm Head-to-Tail Linkage: Research on Sun5 Gene Knockout Mice
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SUN5 Interacting With Nesprin3 Plays an Essential Role in Sperm Head-to-Tail Linkage: Research on Sun5 Gene Knockout Mice

机译:Sun5与Nesprin3的互动在精子头到尾部联动中起重要作用:Sun5基因敲除小鼠的研究

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Acephalic spermatozoa syndrome is a rare genetic and reproductive disease. Recent studies have shown that approximately 33~47% of patients with acephalic spermatozoa syndrome have SUN5 mutations, but the molecular mechanism underlying this phenomenon has not been elucidated. In this study, we generated Sun5 knockout mice and found that the head-to-tail linkage was broken in Sun5-/- mice, which was similar to human acephalic spermatozoa syndrome. Furthermore, ultrastructural imaging revealed that the head-tail coupling apparatus (HTCA) and the centrosome were distant from the nucleus at steps 9-10 during spermatid elongation. With the manchette disappearing at steps 13-14, the head and the tail segregated. To explore the molecular mechanism underlying this process, bioinformatic analysis was performed and showed that Sun5 may interact with Nesprin3. Further coimmunoprecipitation (Co-IP) and immunofluorescence assays confirmed that Sun5 and Nesprin3 were indeed bona fide interaction partners that formed the linker of the nucleoskeleton and cytoskeleton (LINC) complex participating in the connection of the head and tail of spermatozoa. Nesprin3 was located posterior and anterior to the nucleus during spermiogenesis in wild-type mice, whereas it lost its localization at the implantation fossa of the posterior region in Sun5-/- mice. Without correct localization of Nesprin3 at the nuclear membrane, the centrosome, which is the originator of the flagellum, was distant from the nucleus, which led to the separation of the head and tail. In addition, iTRAQ results showed that 47 proteins were upregulated, and 56 proteins were downregulated, in the testis in Sun5-/- mice, and the downregulation of spermatogenesis-related proteins (Odf1 and Odf2) may also contribute to the damage to the spermatozoa head-to-tail linkage. Our findings suggested that Sun5 is essential for the localization of Nesprin3 at the posterior nuclear membrane, which plays an essential role in the sperm head-tail connection.
机译:Acephalic精子综合征是一种罕见的遗传和生殖疾病。最近的研究表明,大约33〜47%的避难症综合征患者具有太阳5突变,但是这种现象的分子机制尚未阐明。在这项研究中,我们产生了Sun5敲除小鼠,发现在Sun5 - / - 小鼠中断开了头部到尾部的连杆,其类似于人类肛门术精子综合征。此外,超微结构成像显示,在精纺伸长期间,头尾耦合装置(HTCA)和中心体在步骤9-10中远离核。使用Manchette在步骤13-14中消失,头部和尾巴隔离。为了探讨该方法的潜在的分子机制,进行生物信息分析,并显示Sun5可以与Nesprin3相互作用。进一步的CoImMunopropipipation(Co-​​IP)和免疫荧光测定证实Sun5和Nesprin3确实是BonA FIDE相互作用的伙伴,其形成了参与精子头和尾部的连接的核骨骨骼和细胞骨架(LINC)复合物的连接。 Nesprin3在野生型小鼠中的精子发生器中位于核后侧和前侧,而它在Sun5 - / - 小鼠的后部区域的植入窝中失去了其定位。在没有正确定位Nesprin3的核膜下,是鞭毛的发起者的中心组,远离核,这导致了头部和尾部的分离。此外,ITRAQ结果表明,将47个蛋白质上调,下调56个蛋白质,在Sun5 - / - 小鼠中的睾丸中,并且精子发生相关蛋白(ODF1和ODF2)的下调也可能有助于对精子的损害头部到尾部连杆。我们的研究结果表明,Sun5对于在后核膜处的Nesprin3定位至关重要,这在精子头尾连接中起着重要作用。

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