Division of Human Genetics, Department of Integrated Genetics, National Institute of Genetics, Research Organization of Information and Systems, Mishima, Shizuoka, 411-8540, Japan.
Dev Cell. 2011 Mar 15;20(3):364-75. doi: 10.1016/j.devcel.2011.01.005.
MITOPLD is a member of the phospholipase D superfamily proteins conserved among diverse species. Zucchini (Zuc), the Drosophila homolog of MITOPLD, has been implicated in primary biogenesis of Piwi-interacting RNAs (piRNAs). By contrast, MITOPLD has been shown to hydrolyze cardiolipin in the outer membrane of mitochondria to generate phosphatidic acid, which is a signaling molecule. To assess whether the mammalian MITOPLD is involved in piRNA biogenesis, we generated Mitopld mutant mice. The mice display meiotic arrest during spermatogenesis, demethylation and derepression of retrotransposons, and defects in primary piRNA biogenesis. Furthermore, in mutant germ cells, mitochondria and the components of the nuage, a perinuclear structure involved in piRNA biogenesis/function, are mislocalized to regions around the centrosome, suggesting that MITOPLD may be involved in microtubule-dependent localization of mitochondria and these proteins. Our results indicate a conserved role for MITOPLD/Zuc in the piRNA pathway and link mitochondrial membrane metabolism/signaling to small RNA biogenesis.
MITOPLD 是磷脂酶 D 超家族蛋白的成员,在不同物种中保守。Zucchini(Zuc)是 MITOPLD 在果蝇中的同源物,已被牵连到 Piwi 相互作用 RNA(piRNA)的初级生物发生中。相比之下,MITOPLD 已被证明能在外膜中水解线粒体的心磷脂以生成磷脂酸,后者是一种信号分子。为了评估哺乳动物 MITOPLD 是否参与 piRNA 的生物发生,我们生成了 Mitopld 突变小鼠。这些小鼠在精子发生过程中表现出减数分裂停滞、逆转录转座子去甲基化和去抑制,以及初级 piRNA 生物发生缺陷。此外,在突变的生殖细胞中,线粒体和参与 piRNA 生物发生/功能的核周物质的成分被错误定位到中心体周围的区域,表明 MITOPLD 可能参与线粒体和这些蛋白质的微管依赖性定位。我们的结果表明,MITOPLD/Zuc 在 piRNA 途径中具有保守作用,并将线粒体膜代谢/信号与小 RNA 生物发生联系起来。