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首页> 外文期刊>The Journal of biological chemistry >A single amino acid mutation in the mouse MEIG1 protein disrupts a cargo transport system necessary for sperm formation
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A single amino acid mutation in the mouse MEIG1 protein disrupts a cargo transport system necessary for sperm formation

机译:小鼠Meig1蛋白中的单个氨基酸突变破坏了精子形成所需的货物运输系统

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Mammalian spermatogenesis is a highly coordinated process that requires cooperation between specific proteins to coordinate diverse biological functions. For example, mouse Parkin coregulated gene (PACRG) recruits meiosis-expressed gene 1 (MEIG1) to the manchette during normal spermiogenesis. Here we mutated Y68 of MEIG1 using the CRISPR/cas9 system and examined the biological and physiological consequences in mice. All homozygous mutant males examined were completely infertile, and sperm count was dramatically reduced. The few developed sperm were immotile and displayed multiple abnormalities. Histological staining showed impaired spermiogenesis in these mutant mice. Immunofluorescent staining further revealed that this mutant MEIG1 was still present in the cell body of spermatocytes, but also that more MEIG1 accumulated in the acrosome region of round spermatids. The mutant MEIG1 and a cargo protein of the MEIG1/PACRG complex, sperm-associated antigen 16L (SPAG16L), were no longer found to be present in the manchette; however, localization of the PACRG component was not changed in the mutants. These findings demonstrate that Y68 of MEIG1 is a key amino acid required for PACRG to recruit MEIG1 to the manchette to transport cargo proteins during sperm flagella formation. Given that MEIG1 and PACRG are conserved in humans, small molecules that block MEIG1/PACRG interaction are likely ideal targets for the development of male contraconception drugs.
机译:哺乳动物精子发生是一种高度协调的过程,需要在特定蛋白质之间的合作来协调各种生物学功能。例如,小鼠Parkin Coregulated基因(PACRG)在正常精子发生期间将MeIosis表达的基因1(Meig1)募集到曼皮。在这里,我们使用CRISPR / CAS9系统突变了Meig1的Y68,并检查了小鼠的生物和生理结果。检查的所有纯合的突变雄性都是完全不孕的,并且精子计数显着降低。少数发达的精子是Immotile并显示多种异常。组织学染色在这些突变小鼠中显示出的精子发生受损。免疫荧光染色进一步揭示了该突变体Meig1仍然存在于精子细胞的细胞体中,而且还存在更多的Meig1积累在圆形精子的肌肤区域中。突变体Meig1和Meig1 / PACRG复合物的货物蛋白质,不再发现在人类中存在于马氏体中;然而,突变体中没有改变PACRG组分的定位。这些研究结果表明,Meig1的Y68是PACRG招募Meig1到Manchette所需的关键氨基酸,以在精子鞭毛形成期间运输货物蛋白。鉴于Meig1和PACRG在人类中保存,块揭示了Meig1 / PACRG相互作用的小分子可能是男性矛盾毒品发展的理想目标。

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