...
首页> 外文期刊>Developmental biology >Intraflagellar transporter protein (IFT27), an IFT25 binding partner, is essential for male fertility and spermiogenesis in mice
【24h】

Intraflagellar transporter protein (IFT27), an IFT25 binding partner, is essential for male fertility and spermiogenesis in mice

机译:Intraflarar转运蛋白(IFT27),一种IFT25结合伴侣对小鼠的男性生育和精子生成至关重要

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract Intraflagellar transport (IFT) is an evolutionarily conserved mechanism essential for the assembly and maintenance of most eukaryotic cilia and flagella. In mice, mutations in IFT proteins have been shown to cause several ciliopathies including retinal degeneration, polycystic kidney disease, and hearing loss. However, little is known about its role in the formation of the sperm tail, which has the longest flagella of mammalian cells. IFT27 is a component of IFT-B complex and binds to IFT25 directly. In mice, IFT27 is highly expressed in the testis. To investigate the role of IFT27 in male germ cells, the floxed Ift27 mice were bred with Stra8?iCre mice so that the Ift27 gene was disrupted in spermatocytes/spermatids. The Ift27: Stra8?iCre mutant mice did not show any gross abnormalities, and all of the mutant mice survived to adulthood. There was no difference between testis weight/body weight between controls and mutant mice. All adult homozygous mutant males examined were completely infertile. Histological examination of the testes revealed abnormally developed germ cells during the spermiogenesis phase. The epididymides contained round bodies of cytoplasm. Sperm number was significantly reduced compared to the controls and only about 2% of them remained significantly reduced motility. Examination of epididymal sperm by light microscopy and SEM revealed multiple morphological abnormalities including round heads, short and bent tails, abnormal thickness of sperm tails in some areas, and swollen tail tips in some sperm. TEM examination of epididymal sperm showed that most sperm lost the “9+2″ axoneme structure, and the mitochondria sheath, fibrous sheath, and outer dense fibers were also disorganized. Some sperm flagella also lost cell membrane. Levels of IFT25 and IFT81 were significantly reduced in the testis of the conditional Ift27 knockout mice, and levels of IFT20, IFT74, and IFT140 were not changed. Sperm lipid rafts, which were disrupted in the conditional Ift 25 knockout mice, appeared to be normal in the conditional Ift27 knockout mice. Our findings suggest that like IFT25, IFT27, even though not required for ciliogenesis in somatic cells, is essential for sperm flagella formation, sperm function, and male fertility in mice. IFT25 and IFT27 control sperm formation/function through many common mechanisms, but IFT25 has additional roles beyond IFT27. Highlights ? IFT27 is indispensable for sperm flagella formation, motility and male fertility. ? IFT27 plays a role in assembling accessory structures, ion channels, and ATPases. ? IFT27 and IFT25 have a different role in sperm lipid raft formation.
机译:摘要型企里的交通(IFT)是一种进化的保守机制,对大多数真核纤毛和鞭毛的组装和维持是必不可少的。在小鼠中,已显示IFT蛋白质中的突变导致几种皮肤病,包括视网膜变性,多囊肾病和听力损失。然而,关于其在形成精子尾部的角色中的作用很少,其具有哺乳动物细胞最长的鞭毛。 IFT27是IFT-B复合物的组件,直接与IFT25绑定。在小鼠中,IFT27在睾丸中高度表达。为了探讨IFT27在雄性生殖细胞中的作用,用STRA8-27小鼠繁殖浮动的IFR27小鼠,使IFT27基因破坏精子胶质细胞/精子。 IFT27:sra8?ICRE突变小鼠没有显示出任何粗糙的异常,并且所有突变小鼠都幸存到于成年期。对照和突变小鼠之间的睾丸重量/体重之间没有差异。检查的所有成人纯合突变雄性均完全不孕。该睾丸的组织学检查揭示了精子发生期间异常发育的生殖细胞。附睾含有细胞质的圆体。与对照相比,精子数显着减少,并且只有约2%的运动仍然显着降低了运动性。通过光学显微镜和SEM检查附睾精子,揭示了多种形态异常,包括圆头,短弯曲,弯曲的尾,一些区域的精子尾部的异常厚度,并在一些精子中肿胀的尾部尖端。附睾精子的TEM检查表明,大多数精子损失了“9 + 2”的轴突结构,并且线粒体护套,纤维状护套和外致密纤维也被混乱。一些精子鞭毛也丢失了细胞膜。 IFT25和IFT81的水平在条件IFT27敲除小鼠的睾丸中显着降低,IFT20,IFT74和IFT140的水平没有改变。在条件IFT 25敲除小鼠中破坏的精子脂肪筏在有条件的IFT27敲除小鼠中似乎是正常的。我们的研究结果表明,如IFT25,IFT27,即使在体细胞中不需要纤西发生,对于小鼠的精子鞭毛形成,精子功能和男性生育是必不可少的。 IFT25和IFT27控制精子形成/功能通过许多常见机制,但IFT25具有超出IFT27的额外角色。强调 ? IFT27对于精子鞭毛形成,运动和男性生育是必不可少的。还是IFT27在组装配件结构,离子通道和ATPASS中起作用。还是IFT27和IFT25在精子脂质筏形成中具有不同的作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号