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结构灵活性使植物中全局基因沉默调控因子 miR168 能够进行替代成熟、AG04 分选和活动。

Structural Flexibility Enables Alternative Maturation, ARGONAUTE Sorting and Activities of miR168, a Global Gene Silencing Regulator in Plants.

机构信息

Department of Biology, Swiss Federal Institute of Technology (ETH), Universitätstrasse 2, Zürich 8092, Switzerland.

Institute of Molecular Biology and Biophysics, Department of Biology, Swiss Federal Institute of Technology (ETH), Zürich, Switzerland; Biomolecular NMR spectroscopy Platform, ETH Zürich, Switzerland.

出版信息

Mol Plant. 2018 Aug 6;11(8):1008-1023. doi: 10.1016/j.molp.2018.05.006. Epub 2018 May 24.

Abstract

In eukaryotes, the RNase-III Dicer often produces length/sequence microRNA (miRNA) variants, called "isomiRs", owing to intrinsic structural/sequence determinants of the miRNA precursors (pre-miRNAs). In this study, we combined biophysics, genetics and biochemistry approaches to study Arabidopsis miR168, the key feedback regulator of central plant silencing effector protein ARGONAUTE1 (AGO1). We identified a motif conserved among plant pre-miR168 orthologs, which enables flexible internal base-pairing underlying at least three metastable structural configurations. These configurations promote alternative, accurate Dicer cleavage events generating length and structural isomiR168 variants with distinctive AGO sorting properties and modes of action. Among these isomiR168s, a duplex with a 22-nt guide strand exhibits strikingly preferential affinity for AGO10, the closest AGO1 paralog. The 22-nt miR168-AGO10 complex antagonizes AGO1 accumulation in part via "transitive RNAi", a silencing-amplification process, to maintain appropriate AGO1 cellular homeostasis. Furthermore, we found that the tombusviral P19 silencing-suppressor protein displays markedly weaker affinity for the 22-nt form among its isomiR168 cargoes, thereby promoting AGO10-directed suppression of AGO1-mediated antiviral silencing. Taken together, these findings indicate that structural flexibility, a previously overlooked property of pre-miRNAs, considerably increases the versatility and regulatory potential of individual MIRNA genes, and that some pathogens might have evolved the capacity or mechanisms to usurp this property.

摘要

在真核生物中,核糖核酸酶 III Dicer 通常会产生长度/序列微小 RNA(miRNA)变体,称为“isomiRs”,这是由于 miRNA 前体(pre-miRNA)的内在结构/序列决定因素。在这项研究中,我们结合生物物理学、遗传学和生物化学方法来研究拟南芥 miR168,这是植物沉默效应蛋白 ARGONAUTE1(AGO1)的关键反馈调节剂。我们鉴定了一个在植物 pre-miR168 同源物中保守的基序,该基序能够在至少三种亚稳态结构构象下实现灵活的内部碱基配对。这些构象促进了替代的、准确的 Dicer 切割事件,产生具有独特 AGO 分选特性和作用模式的长度和结构 isomiR168 变体。在这些 isomiR168 中,具有 22 个核苷酸向导链的双链体表现出对最接近的 AGO1 旁系同源物 AGO10 的明显偏好亲和力。22-nt miR168-AGO10 复合物通过“转导 RNAi”(一种沉默放大过程)部分拮抗 AGO1 的积累,以维持适当的 AGO1 细胞内稳态。此外,我们发现,番茄丛矮病毒 P19 沉默抑制蛋白对其 isomiR168 货物中 22-nt 形式的亲和力明显较弱,从而促进了 AGO10 指导的对 AGO1 介导的抗病毒沉默的抑制。总之,这些发现表明,结构灵活性,是 pre-miRNA 中以前被忽视的特性,极大地增加了单个 MIRNA 基因的多功能性和调控潜力,并且一些病原体可能已经进化出利用这种特性的能力或机制。

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