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PRMT1 methylates the single Argonaute of Toxoplasma gondii and is important for the recruitment of Tudor nuclease for target RNA cleavage by antisense guide RNA

机译:PRMT1甲基化弓形虫的单个Argonaute,对于通过反义引导RNA募集用于目标RNA切割的Tudor核酸酶很重要

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Argonaute (Ago) plays a central role in RNA interference in metazoans, but its status in lower organisms remains ill-defined. We report on the Ago complex of the unicellular protozoan, Toxoplasma gondii (Tg), an obligatory pathogen of mammalian hosts. The PIWI-like domain of TgAgo lacked the canonical DDE/H catalytic triad, explaining its weak target RNA cleavage activity. However, TgAgo associated with a stronger RNA slicer, a Tudor staphylococcal nuclease (TSN), and with a protein Arg methyl transferase, PRMT1. Mutational analysis suggested that the N-terminal RGG-repeat domain of TgAgo was methylated by PRMT1, correlating with the recruitment of TSN. The slicer activity of TgAgo was Mg~(2+)-dependent and required perfect complementarity between the guide RNA and the target. In contrast, the TSN activity was Ca~(2+)-dependent and required an imperfectly paired guide RNA. Ago knockout parasites showed essentially normal growth, but in contrast, the PRMT1 knockouts grew abnormally. Chemical inhibition of Arg-methylation also had an anti-parasitic effect. These results suggest that the parasitic PRMT1 plays multiple roles, and its loss affects the recruitment of a more potent second slicer to the parasitic RNA silencing complex, the exact mechanism of which remains to be determined.
机译:Argonaute(Ago)在后生动物的RNA干扰中起着核心作用,但其在低等生物中的地位仍然不确定。我们报告了单细胞原生动物弓形虫(Tg),哺乳动物宿主的一种强制性病原体的前复合体。 TgAgo的PIWI样域缺乏规范的DDE / H催化三联体,解释了其弱的靶RNA裂解活性。然而,TgAgo与更强的RNA切片机,Tudor葡萄球菌核酸酶(TSN)和蛋白质Arg甲基转移酶PRMT1相关。突变分析表明,PRMT1使TgAgo的N末端RGG重复结构域甲基化,这与TSN的募集有关。 TgAgo的切片机活性是Mg〜(2+)依赖性的,并且需要指导RNA与靶标之间的完美互补。相反,TSN活性是Ca〜(2+)依赖性的,需要不完全配对的引导RNA。前基因敲除寄生虫显示出基本正常的生长,但相比之下,PRMT1基因敲除异常生长。化学抑制Arg甲基化也具有抗寄生虫作用。这些结果表明,寄生PRMT1发挥了多种作用,其损失影响了更强大的第二个切片机向寄生RNA沉默复合物的募集,其确切机制尚待确定。

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