首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Electrostatic Interactions between Capsid and Scaffolding Proteins Mediate the Structural Polymorphism of a Double-stranded RNA Virus
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Electrostatic Interactions between Capsid and Scaffolding Proteins Mediate the Structural Polymorphism of a Double-stranded RNA Virus

机译:衣壳和支架蛋白之间的静电相互作用介导双链RNA病毒的结构多态性。

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摘要

Capsid proteins that adopt distinct conformations constitute a paradigm of the structural polymorphism of macromolecular assemblies. We show the molecular basis of the flexibility mechanism of VP2, the capsid protein of the double-stranded RNA virus infectious bursal disease virus. The initial assembly, a procapsid-like structure, is built by the protein precursor pVP2 and requires VP3, the other infectious bursal disease virus major structural protein, which acts as a scaffold. The pVP2 C-terminal region, which is proteolyzed during virus maturation, contains an amphipathic α-helix that acts as a molecular switch. In the absence of VP3, efficient virus-like particle assembly occurs when the structural unit is a VP2-based chimeric protein with an N-terminal-fused His6 tag. The His tag has a positively charged N terminus and a negatively charged C terminus, both important for virion-like structure assembly. The charge distributions of the VP3 C terminus and His tag are similar. We tested whether the His tag emulates the role of VP3 and found that the presence of a VP3 C-terminal peptide in VP2-based chimeric proteins resulted in the assembly of virus-like particles. We analyzed the electrostatic interactions between these two charged morphogenetic peptides, in which a single residue was mutated to impede the predicted interaction, followed by a compensatory double mutation to rescue electrostatic interactions. The effects of these mutations were monitored by following the virus-like and/or virus-related assemblies. Our results suggest that the basic face of the pVP2 amphipathic α-helix interacts with the acidic region of the VP3 C terminus and that this interaction is essential for VP2 acquisition of competent conformations for capsid assembly.
机译:采用不同构象的衣壳蛋白构成大分子装配体结构多态性的范例。我们显示了VP2,双链RNA病毒感染性法氏囊病病毒的衣壳蛋白的柔性机制的分子基础。最初的组装是一个前壳体状的结构,由蛋白质前体pVP2构建,并需要VP3,这是另一个传染性法氏囊病病毒的主要结构蛋白,可作为支架。在病毒成熟期间被蛋白水解的pVP2 C端区域包含两亲性α-螺旋,可作为分子开关。在缺少VP3的情况下,当结构单元是具有N端融合His6标签的VP2嵌合蛋白时,会发生有效的病毒样颗粒装配。 His标签具有带正电的N末端和带负电的C末端,两者对于病毒体样结构组装都很重要。 VP3 C末端和His标签的电荷分布相似。我们测试了His标记是否模仿VP3的作用,发现基于VP2的嵌合蛋白中VP3 C端肽的存在导致了病毒样颗粒的组装。我们分析了这两个带电的形态发生肽之间的静电相互作用,其中单个残基被突变以阻止预测的相互作用,然后是补偿性双重突变以挽救静电相互作用。通过遵循病毒样和/或病毒相关装配来监控这些突变的作用。我们的结果表明,pVP2两亲性α-螺旋的基本面与VP3 C末端的酸性区域相互作用,并且这种相互作用对于VP2获得衣壳装配的有效构象至关重要。

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