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Arabidopsis ARGONAUTE1 is an RNA Slicer that selectively recruits microRNAs and short interfering RNAs

机译:拟南芥属ARGONAUTE1是一种RNA切片机,可选择性募集微小RNA和短干扰RNA

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摘要

ARGONAUTE (AGO) RNA-binding proteins are involved in RNA silencing. They bind to short interfering RNAs (siRNAs) and microRNAs (miRNAs) through a conserved PAZ domain, and, in animals, they assemble into a multisubunit RNA-induced silencing complex (RISC). The mammalian AGO2, termed Slicer, directs siRNA- and miRNA-mediated cleavage of a target RNA. In Arabidopsis, there are 10 members of the AGO family, and the AGO1 protein is potentially the Slicer component in different RNA-silencing pathways. Here, we show that AGO1 selectively recruits certain classes of short silencing-related RNA. AGO1 is physically associated with miRNAs, transacting siRNAs, and transgene-derived siRNAs but excludes virus-derived siRNAs and 24-nt siRNAs involved in chromatin silencing. We also show that AGO1 has Slicer activity. It mediates the in vitro cleavage of a mir165 target RNA in a manner that depends on the sequence identity of amino acid residues in the PIWI domain that are predicted by homology with animal Slicer-competent AGO proteins to constitute the RNase catalytic center. However, unlike animals, we find no evidence that AGO1 Slicer is in a high molecular weight RNA-induced silencing complex. The Slicer activity fractionates as a complex of ≈150 kDa that likely constitutes the AGO1 protein and associated RNA without any other proteins. Based on sequence similarity, we predict that other Arabidopsis AGOs might have a similar catalytic activity but recruit different subsets of siRNAs or miRNAs.
机译:ARGONAUTE(AGO)RNA结合蛋白参与RNA沉默。它们通过保守的PAZ域与短干扰RNA(siRNA)和microRNA(miRNA)结合,在动物中,它们组装成多亚基RNA诱导的沉默复合物(RISC)。称为切片机的哺乳动物AGO2指导siRNA和miRNA介导的靶RNA切割。在拟南芥中,AGO家族有10个成员,而AGO1蛋白可能是不同RNA沉默途径中的Slicer组分。在这里,我们显示AGO1选择性募集某些类型的短沉默相关RNA。 AGO1在物理上与miRNA,交易siRNA和转基因来源的siRNA相关,但不包括与染色质沉默相关的病毒来源的siRNA和24-nt siRNA。我们还显示AGO1具有切片器活动。它以依赖于PIWI域中氨基酸残基的序列同一性的方式介导mir165靶RNA的体外切割,该序列是通过与动物Slicer能力AGO蛋白的同源性预测的,从而构成RNase催化中心。但是,与动物不同,我们没有发现AGO1 Slicer存在于高分子量RNA诱导的沉默复合物中的证据。 Slicer的活性为约150 kDa的复合物,它很可能构成AGO1蛋白和相关的RNA,而没有任何其他蛋白。基于序列相似性,我们预测其他拟南芥AGO可能具有相似的催化活性,但募集不同的siRNA或miRNA子集。

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