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Intraflagellar transport protein IFT20 is essential for male fertility and spermiogenesis in mice

机译:Intraflarar ration蛋白IFT20对于小鼠的男性生育和精子发生至关重要

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摘要

Intraflagellar transport (IFT) is a conserved mechanism thought to be essential for the assembly and maintenance of cilia and flagella. However, little is known about its role in mammalian sperm flagella formation. To fill this gap, we disrupted the Ift20 gene in male germ cells. Homozygous mutant mice were infertile with significantly reduced sperm counts and motility. In addition, abnormally shaped elongating spermatid heads and bulbous round spermatids were found in the lumen of the seminiferous tubules. Electron microscopy revealed increased cytoplasmic vesicles, fiber-like structures, abnormal accumulation of mitochondria and a decrease in mature lysosomes. The few developed sperm had disrupted axonemes and some retained cytoplasmic lobe components on the flagella. ODF2 and SPAG16L, two sperm flagella proteins failed to be incorporated into sperm tails of the mutant mice, and in the germ cells, both were assembled into complexes with lighter density in the absence of IFT20. Disrupting IFT20 did not significantly change expression levels of IFT88, a component of IFT-B complex, and IFT140, a component of IFT-A complex. Even though the expression level of an autophagy core protein that associates with IFT20, ATG16, was reduced in the testis of the Ift20 mutant mice, expression levels of other major autophagy markers, including LC3 and ubiquitin were not changed. Our studies suggest that IFT20 is essential for male fertility and spermiogenesis in mice, and its major function is to transport cargo proteins for sperm flagella formation. It also appears to be involved in removing excess cytoplasmic components.
机译:内葡萄园运输(IFT)是一个守恒的机制,旨在对纤毛和鞭毛的装配和维持至关重要。然而,关于它在哺乳动物精子鞭毛形成中的作用很少。为了填补这种差距,我们在雄性生殖细胞中扰乱了IFT20基因。纯合突变团小鼠不孕,精子数目和运动显着降低。另外,在半成因小管的内腔中发现异常形状的伸长的精子头和球形圆形精子。电子显微镜显示出增加的细胞质囊泡,纤维状结构,线粒体的异常积累和成熟溶酶体的降低。少数发达的精子扰乱了旗杆上的轴突和一些保留的细胞质叶组分。 ODF2和SPAG16L,两种精子鞭毛蛋白未被掺入突变小鼠的精子尾部,并且在胚芽细胞中,两者都在没有IFT20的情况下以较轻的密度组装成复合物。中断IFT20没有显着改变IFT88的表达水平,IFT-B复数的组件和IFT140,IFT-A复合物的组件。尽管在IFT20突变小鼠的睾丸中减少了与IFT20的自噬核心蛋白的表达水平,但在IFT20突变小鼠的睾丸中减少,但不改变其他主要自噬标志物的表达水平,包括LC3和泛素。我们的研究表明,IFT20对小鼠的男性生育和精子发生至关重要,其主要功能是将货物蛋白运输用于精子鞭毛形成。它还似乎参与了去除过量的细胞质组分。

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