Centro Nacional de Biotecnología-CSIC, 28049 Madrid, Spain.
RNA. 2011 Jun;17(6):1148-58. doi: 10.1261/rna.2510611. Epub 2011 Apr 29.
RNA silencing mediated by siRNAs plays an important role as an anti-viral defense mechanism in plants and other eukaryotic organisms, which is usually counteracted by viral RNA silencing suppressors (RSSs). The ipomovirus Cucumber vein yellowing virus (CVYV) lacks the typical RSS of members of the family Potyviridae, HCPro, which is replaced by an unrelated RSS, P1b. CVYV P1b resembles potyviral HCPro in forming complexes with synthetic siRNAs in vitro. Electrophoretic mobility shift assays showed that P1b, like potyviral HCPro, interacts with double-stranded siRNAs, but is not able to bind single-stranded small RNAs or small DNAs. These assays also showed a preference of CVYV P1b for binding to 21-nt siRNAs, a feature also reported for HCPro. However, these two potyvirid RSSs differ in their requirements of 2-nucleotide (nt) 3' overhangs and 5' terminal phosphoryl groups for siRNA binding. Copurification assays confirmed in vivo P1b-siRNA interactions. We have demonstrated by deep sequencing of small RNA populations interacting in vivo with CVYV P1b that the size preference of P1b for small RNAs of 21 nt also takes place in the plant, and that expression of this RSS causes drastic changes in the endogenous small RNA populations. In addition, a site-directed mutagenesis analysis strongly supported the assumption that P1b-siRNA binding is decisive for the anti-silencing activity of P1b and localized a basic domain involved in the siRNA-binding activity of this protein.
RNA 沉默介导的 siRNA 在植物和其他真核生物中作为抗病毒防御机制发挥着重要作用,而这种机制通常会被病毒 RNA 沉默抑制剂 (RSSs) 所拮抗。马铃薯 Y 病毒科的黄瓜叶脉黄化病毒 (CVYV) 缺乏典型的 RSS,即 HCPro,而被一个不相关的 RSS,即 P1b 所取代。CVYV P1b 与 HCPro 类似,可在体外与合成的 siRNA 形成复合物。电泳迁移率变动分析显示,P1b 与双链 siRNA 相互作用,与 HCPro 类似,但不能与单链小 RNA 或小 DNA 结合。这些分析还表明,CVYV P1b 优先与 21-nt siRNA 结合,这一特征也在 HCPro 中报道过。然而,这两种马铃薯 Y 病毒科的 RSSs 在对 2 个核苷酸 (nt) 3'突出和 5'末端磷酸基团的 siRNA 结合要求上存在差异。共纯化分析证实了 P1b-siRNA 相互作用在体内的存在。通过对与 CVYV P1b 在体内相互作用的小 RNA 群体进行深度测序,我们证明了 P1b 对 21 nt 小 RNA 的大小偏好也发生在植物体内,并且该 RSS 的表达会导致内源性小 RNA 群体的剧烈变化。此外,定点突变分析有力地支持了 P1b-siRNA 结合对 P1b 抗沉默活性具有决定性作用的假设,并定位了一个碱性结构域,该结构域涉及该蛋白的 siRNA 结合活性。