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The NS3 protein of Rice hoja blanca tenuivirus suppresses RNA silencing in plant and insect hosts by efficiently binding both siRNAs and miRNAs

机译:水稻白喉tenuivirus的NS3蛋白通过有效结合siRNA和miRNA抑制植物和昆虫宿主中的RNA沉默

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摘要

RNA silencing plays a key role in antiviral defense as well as in developmental processes in plants and insects. Negative strand RNA viruses such as the plant virus Rice hoja blanca tenuivirus (RHBV) replicate in plants and in their insect transmission vector. Like most plant- infecting viruses, RHBV encodes an RNA silencing suppressor, the NS3 protein, and here it is demonstrated that this protein is capable of suppressing RNA silencing in both plants and insect cells. Biochemical analyses showed that NS3 efficiently binds siRNA as well as miRNA molecules. Binding of NS3 is greatly influenced by the size of small RNA molecules, as 21 nucleotide (nt) siRNA molecules are bound > 100 times more efficiently than 26 nt species. Competition assays suggest that the activity of NS3 is based on binding to siRNAs prior to strand separation during the assembly of the RNAinduced silencing complex. In addition, NS3 has a high affinity for miRNA/ miRNA* duplexes, indicating that its activity might also interfere with miRNA-regulated gene expression in both insects and plants.
机译:RNA沉默在抗病毒防御以及植物和昆虫的发育过程中起着关键作用。负链RNA病毒(例如植物病毒水稻白喉细单胞病毒(RHBV))在植物及其昆虫传播载体中复制。像大多数感染植物的病毒一样,RHBV编码一种RNA沉默抑制剂NS3蛋白,在这里证明该蛋白能够在植物和昆虫细胞中抑制RNA沉默。生化分析表明,NS3能有效结合siRNA和miRNA分子。 NS3的结合在很大程度上受到小RNA分子大小的影响,因为21个核苷酸(nt)的siRNA分子的结合效率是26 nt物种的100倍以上。竞争测定表明,NS3的活性是基于在RNA诱导的沉默复合物组装过程中链分离之前与siRNA的结合。此外,NS3对miRNA / miRNA *双链体具有很高的亲和力,表明其活性也可能会干扰昆虫和植物中miRNA调控的基因表达。

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