Faculty of Medicine and Biomedical Sciences, University of Algarve, 8005-139 Faro, Portugal.
Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal.
Genetics. 2023 Aug 9;224(4). doi: 10.1093/genetics/iyad104.
Gamete formation is essential for sexual reproduction in metazoans. Meiosis in males gives rise to spermatids that must differentiate and individualize into mature sperm. In Drosophila melanogaster, individualization of interconnected spermatids requires the formation of individualization complexes that synchronously move along the sperm bundles. Here, we show that Mob4, a member of the Mps-one binder family, is essential for male fertility but has no detectable role in female fertility. We show that Mob4 is required for proper axonemal structure and its loss leads to male sterility associated with defective spermatid individualization and absence of mature sperm in the seminal vesicles. Transmission electron micrographs of developing spermatids following mob4RNAi revealed expansion of the outer axonemal microtubules such that the 9 doublets no longer remained linked to each other and defective mitochondrial organization. Mob4 is a STRIPAK component, and male fertility is similarly impaired upon depletion of the STRIPAK components, Strip and Cka. Expression of the human Mob4 gene rescues all phenotypes of Drosophila mob4 downregulation, indicating that the gene is evolutionarily and functionally conserved. Together, this suggests that Mob4 contributes to the regulation of the microtubule- and actin-cytoskeleton during spermatogenesis through the conserved STRIPAK complex. Our study advances the understanding of male infertility by uncovering the requirement for Mob4 in sperm individualization.
配子形成对于后生动物的有性繁殖至关重要。雄性减数分裂产生必须分化并个体化成熟精子的精母细胞。在黑腹果蝇中,相互连接的精母细胞的个体化需要形成同步沿着精子束移动的个体化复合物。在这里,我们表明 Mob4 是 Mps-one 结合家族的成员,对雄性生育力是必需的,但在雌性生育力中没有可检测到的作用。我们表明 Mob4 是适当的轴突结构所必需的,其缺失导致与精母细胞个体化缺陷和精囊中的成熟精子缺失相关的雄性不育。mob4RNAi 后发育中的精母细胞的透射电子显微镜显示,外轴突微管扩张,使得 9 个二联体不再彼此相连,线粒体组织缺陷。Mob4 是 STRIPAK 组件,并且 STRIPAK 组件 Strip 和 Cka 的耗尽同样会损害雄性生育力。人类 Mob4 基因的表达挽救了果蝇 mob4 下调的所有表型,表明该基因在进化和功能上是保守的。总之,这表明 Mob4 通过保守的 STRIPAK 复合物在精子个体化过程中有助于微管和肌动蛋白细胞骨架的调节。我们的研究通过揭示 Mob4 在精子个体化中的必要性,推进了对男性不育症的理解。