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Arginine methylation of Aubergine mediates Tudor binding and germ plasm localization.

机译:茄子的精氨酸甲基化介导了Tudor结合和种质定位。

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摘要

Piwi proteins such as Drosophila Aubergine (Aub) and mouse Miwi are essential for germline development and for primordial germ cell (PGC) specification. They bind piRNAs and contain symmetrically dimethylated arginines (sDMAs), catalyzed by dPRMT5. PGC specification in Drosophila requires maternal inheritance of cytoplasmic factors, including Aub, dPRMT5, and Tudor (Tud), that are concentrated in the germ plasm at the posterior end of the oocyte. Here we show that Miwi binds to Tdrd6 and Aub binds to Tudor, in an sDMA-dependent manner, demonstrating that binding of sDMA-modified Piwi proteins with Tudor-domain proteins is an evolutionarily conserved interaction in germ cells. We report that in Drosophila tud(1) mutants, the piRNA pathway is intact and most transposons are not de-repressed. However, the localization of Aub in the germ plasm is severely reduced. These findings indicate that germ plasm assembly requires sDMA modification of Aub by dPRMT5, which, in turn, is required for binding to Tudor. Our study also suggests that the function of the piRNA pathway in PGC specification may be independent of its role in transposon control.
机译:Piwi蛋白(如果蝇茄子(Aub)和小鼠Miwi)对于种系发育和原始生殖细胞(PGC)规格至关重要。它们结合piRNA,并含有dPRMT5催化的对称二甲基化精氨酸(sDMA)。果蝇中的PGC规范要求母体遗传细胞质因子,包括Aub,dPRMT5和Tudor(Tud),它们集中在卵母细胞后端的种质中。在这里,我们显示Miwi以sDMA依赖性方式与Tdrd6结合,而Aub与Tudor结合,这表明sDMA修饰的Piwi蛋白与Tudor域蛋白的结合是生殖细胞中进化上保守的相互作用。我们报告在果蝇tud(1)突变体中,piRNA途径是完整的,并且大多数转座子都没有被抑制。但是,Aub在种质中的定位大大降低。这些发现表明,种质组装需要通过dPRMT5对Aub进行sDMA修饰,而这反过来是与Tudor结合所必需的。我们的研究还表明,在PGC规范中piRNA途径的功能可能与其在转座子控制中的作用无关。

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