首页> 美国卫生研究院文献>Journal of Virology >RNA Binding by a Novel Helical Fold of B2 Protein from Wuhan Nodavirus Mediates the Suppression of RNA Interference and Promotes B2 Dimerization
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RNA Binding by a Novel Helical Fold of B2 Protein from Wuhan Nodavirus Mediates the Suppression of RNA Interference and Promotes B2 Dimerization

机译:RNA绑定的武汉诺达病毒的B2蛋白的新型螺旋折叠介导RNA干扰的抑制和促进B2二聚。

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摘要

Wuhan nodavirus (WhNV) is a newly identified member of the Nodaviridae family with a bipartite genome of positive-sense RNAs. A nonstructural protein encoded by subgenomic RNA3 of nodaviruses, B2, serves as a potent RNA silencing suppressor (RSS) by sequestering RNA duplexes. We have previously demonstrated that WhNV B2 blocks RNA silencing in cultured Drosophila cells. However, the molecular mechanism by which WhNV B2 functions remains unknown. Here, we successfully established an RNA silencing system in cells derived from Pieris rapae, a natural host of WhNV, by introducing into these cells double-stranded RNA (dsRNA)-expressing plasmids or chemically synthesized small interfering RNAs (siRNAs). Using this system, we revealed that the WhNV B2 protein inhibited Dicer-mediated dsRNA cleavage and the incorporation of siRNA into the RNA-induced silencing complex (RISC) by sequestering dsRNA and siRNA. Based on the modeled B2 3-dimensional structure, serial single alanine replacement mutations and N-terminal deletion analyses showed that the RNA-binding domain of B2 is formed by its helices α2 and α3, while helix α1 mediates B2 dimerization. Furthermore, positive feedback between RNA binding and B2 dimerization was uncovered by gel shift assay and far-Western blotting, revealing that B2 dimerization is required for its binding to RNA, whereas RNA binding to B2 in turn promotes its dimerization. All together, our findings uncovered a novel RNA-binding mode of WhNV B2 and provided evidence that the promotion effect of RNA binding on dimerization exists in a viral RSS protein.
机译:武汉诺达病毒(WhNV)是新鉴定的诺达病毒科家族成员,具有正向RNA的双部分基因组。诺达病毒亚基因组RNA3编码的非结构蛋白B2通过隔离RNA双链体而充当有效的RNA沉默抑制因子(RSS)。我们以前已经证明,WhNV B2阻止培养的果蝇细胞中的RNA沉默。然而,WhNV B2发挥作用的分子机制仍然未知。在这里,我们通过将表达双链RNA(dsRNA)的质粒或化学合成的小干扰RNA(siRNA)引入这些细胞中,成功地在源自WhiNV天然宿主菜青虫的细胞中建立了RNA沉默系统。使用该系统,我们揭示了WhNV B2蛋白抑制Dicer介导的dsRNA裂解,并通过隔离dsRNA和siRNA将siRNA掺入RNA诱导的沉默复合体(RISC)中。基于建模的B2 3维结构,连续的单个丙氨酸置换突变和N末端缺失分析表明B2的RNA结合结构域由其螺旋α2和α3形成,而螺旋α1介导B2二聚化。此外,通过凝胶位移测定和远西印迹法未发现RNA结合与B2二聚化之间的正反馈,这表明B2二聚化是其与RNA结合所必需的,而RNA与B2的结合反过来又促进了其二聚化。总之,我们的发现揭示了WhNV B2的新型RNA结合模式,并提供了证据表明病毒RSS蛋白中存在RNA结合对二聚化的促进作用。

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