Graduate Program at Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100730, China.
J Mol Biol. 2010 Dec 10;404(4):665-79. doi: 10.1016/j.jmb.2010.10.007. Epub 2010 Oct 14.
Plant and animal viruses employ diverse suppressor proteins to thwart the host antiviral reaction of RNA silencing. Many suppressors bind dsRNA with different size specificity. Here, we examine the dsRNA recognition mechanism of the Rice stripe virus NS3 suppressor using quantitative biochemical approaches, as well as mutagenesis and suppression activity analyses in plants. We show that dimeric NS3 is a size-independent, rather than small interfering RNA-specific, dsRNA-binding protein that recognizes a minimum of 9 bp and can bind to long dsRNA with two or more copies. Global analysis using a combinatorial approach reveals that NS3 dimer has an occluded site size of ∼ 13 bp on dsRNA, an intrinsic binding constant of 1 × 10(8) M(-1), and virtually no binding cooperativity. This lack of cooperativity suggests that NS3 is not geared to target long dsRNA. The larger site size of NS3, compared with its interacting size, indicates that the NS3 structure has a border region that has no direct contact with dsRNA but occludes a ∼ 4-bp region from binding. We also develop a method to correct the border effect of ligand by extending the lattice length. In addition, we find that NS3 recognizes the helical structure and 2'-hydroxyl group of dsRNA with moderate specificity. Analysis of dsRNA-binding mutants suggests that silencing of the suppression activity of NS3 is mechanistically related to its dsRNA binding ability.
植物和动物病毒利用多种抑制蛋白来破坏宿主抗病毒的 RNA 沉默反应。许多抑制剂结合 dsRNA 的大小特异性不同。在这里,我们使用定量生化方法以及在植物中的突变和抑制活性分析来研究水稻条纹病毒 NS3 抑制剂的 dsRNA 识别机制。我们表明,二聚体 NS3 是一种大小非依赖性的 dsRNA 结合蛋白,而不是小干扰 RNA 特异性的 dsRNA 结合蛋白,它识别至少 9 个碱基对,并且可以与两个或更多个拷贝的长 dsRNA 结合。使用组合方法进行的全局分析表明,NS3 二聚体在 dsRNA 上具有约 13 个碱基对的封闭位点大小、内在结合常数为 1×10(8)M(-1),并且几乎没有结合协同性。这种缺乏协同性表明 NS3 不是针对长 dsRNA 的。与相互作用大小相比,NS3 的较大结合位点大小表明 NS3 结构具有一个边界区域,该区域与 dsRNA 没有直接接触,但会阻止约 4 个碱基对与 dsRNA 结合。我们还开发了一种通过扩展晶格长度来纠正配体边界效应的方法。此外,我们发现 NS3 对 dsRNA 的螺旋结构和 2'-羟基具有中等特异性的识别。dsRNA 结合突变体的分析表明,NS3 抑制活性的沉默与其 dsRNA 结合能力在机制上相关。