首页> 美国卫生研究院文献>Journal of Cell Science >The Drosophila SUN protein Spag4 cooperates with the coiled-coil protein Yuri Gagarin to maintain association of the basal body and spermatid nucleus
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The Drosophila SUN protein Spag4 cooperates with the coiled-coil protein Yuri Gagarin to maintain association of the basal body and spermatid nucleus

机译:果蝇SUN蛋白Spag4与卷曲螺旋蛋白Yuri Gagarin共同维持基体与精核的结合。

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摘要

Maintaining the proximity of centrosomes to nuclei is important in several cellular contexts, and LINC complexes formed by SUN and KASH proteins are crucial in this process. Here, we characterize the presumed Drosophila ortholog of the mammalian SUN protein, sperm-associated antigen 4 (Spag4, previously named Giacomo), and demonstrate that Spag4 is required for centriole and nuclear attachment during spermatogenesis. Production of spag4 mRNA is limited to the testis, and Spag4 protein shows a dynamic pattern of association with the germline nuclei, including a concentration of protein at the site of attachment of the single spermatid centriole. In the absence of Spag4, nuclei and centrioles or basal bodies (BBs) dissociate from each other after meiosis. This role of Spag4 in centriolar attachment does not involve either of the two KASH proteins of the Drosophila genome (Klarsicht and MSP-300), but does require the coiled-coil protein Yuri Gagarin. Yuri shows an identical pattern of localization at the nuclear surface to Spag4 during spermatogenesis, and epistasis studies show that the activities of Yuri and dynein-dynactin are downstream of spag4 in this centriole attachment pathway. The later defects in spermatogenesis seen for yuri and spag4 mutants are similar, suggesting they could be secondary to initial disruption of events at the nuclear surface.
机译:在某些细胞环境中,保持中心体与细胞核的接近性很重要,由SUN和KASH蛋白质形成的LINC复合物在此过程中至关重要。在这里,我们表征哺乳动物的SUN蛋白,与精子相关的抗原4(Spag4,以前称为Giacomo)的果蝇直系同源物,并证明Spag4是精子发生过程中中心粒和核附着所必需的。 spag4 mRNA的产生仅限于睾丸,而Spag4蛋白显示出与种系核的动态结合模式,包括单个精子中心的附着位点上的蛋白质浓度。在没有Spag4的情况下,减数分裂后细胞核和中心粒或基体(BBs)彼此分离。 Spag4在中心粒附着中的这种作用不涉及果蝇基因组的两个KASH蛋白(Klarsicht和MSP-300)中的任何一个,但确实需要卷曲螺旋蛋白Yuri Gagarin。 Yuri在精子发生过程中在Spag4的核表面显示出相同的定位模式,上位性研究表明Yuri和dynein-dynactin的活性在该中心粒附着途径中位于spag4的下游。对于yuri和spag4突变体来说,后期生精中的缺陷是相似的,这表明它们可能是核表面事件初始破坏的继发因素。

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