首页> 外文期刊>Molecular Plant-Microbe Interactions >The Benyvirus RNA Silencing Suppressor Is Essential for Long-Distance Movement, Requires Both Zinc-Finger and NoLS Basic Residues but Not a Nucleolar Localization for Its Silencing-Suppression Activity
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The Benyvirus RNA Silencing Suppressor Is Essential for Long-Distance Movement, Requires Both Zinc-Finger and NoLS Basic Residues but Not a Nucleolar Localization for Its Silencing-Suppression Activity

机译:Benyvirus RNA沉默抑制剂对于长距离运动必不可少,它需要锌指和NoLS基本残基,但对其沉默抑制活性不需要核仁定位

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The RNA silencing-suppression properties of Beet necrotic yellow vein virus (BNYVV) and Beet soil-borne mosaic virus (BSBMV) cysteine-rich p14 proteins have been investigated. Suppression of RNA silencing activities were made evident using viral infection of silenced Nicotiana benthamiana 16C, N. benthamiana agroinfiltrated with green fluorescent protein (GFP), and GF-FG hairpin triggers supplemented with viral suppressor of RNA silencing (VSR) constructs or using complementation of a silencing-suppressor-defective BNYVV virus in Chenopodium quinoa. Northern blot analyses of small-interfering RNAs (siRNAs) in agroinfiltration tests revealed reduced amounts of siRNA, especially secondary siRNA, suggesting that benyvirus VSR act downstream of the siRNA production. Using confocal laser-scanning microscopy imaging of infected protoplasts expressing functional p14 protein fused to an enhanced GFP reporter, we showed that benyvirus p14 accumulated in the nucleolus and the cytoplasm independently of other viral factors. Site-directed mutagenesis showed the importance of the nucleolar localization signal embedded in a C4 zinc-finger domain in the VSR function and intrinsic stability of the p14 protein. Conversely, RNA silencing suppression appeared independent of the nucleolar localization of the protein, and a correlation between BNYVV VSR expression and long-distance movement was established.
机译:研究了甜菜坏死黄脉病毒(BNYVV)和甜菜土传花叶病毒(BSBMV)富含半胱氨酸的p14蛋白的RNA沉默特性。沉默的烟草本氏烟草16C,本氏烟草农杆菌经绿色荧光蛋白(GFP)浸润的病毒感染和GF-FG发夹触发物补充了RNA沉默病毒抑制剂(VSR)构建物或使用HCV的互补作用,可明显抑制RNA沉默活性。藜中的一种沉默抑制缺陷型BNYVV病毒。在农杆菌浸润测试中对小干扰RNA(siRNA)的Northern印迹分析表明,减少的siRNA,尤其是次生siRNA的量减少,表明benyvirus VSR在siRNA产生的下游起作用。使用共聚焦激光扫描显微镜成像的感染的原生质体表达融合了增强的GFP报告基因的功能性p14蛋白的感染,我们显示了benyvirus p14积累在核仁和细胞质中独立于其他病毒因素。定点诱变显示在VSR功能和p14蛋白固有稳定性中,嵌入C4锌指结构域的核仁定位信号的重要性。相反,RNA沉默抑制似乎独立于蛋白质的核仁定位,并建立了BNYVV VSR表达与长距离运动之间的相关性。

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