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VP3, a Structural Protein of Infectious Pancreatic Necrosis Virus, Interacts with RNA-Dependent RNA Polymerase VP1 and with Double-Stranded RNA▿

机译:VP3,一种感染性胰腺坏死病毒的结构蛋白,可与RNA依赖性RNA聚合酶VP1和双链RNA相互作用。

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摘要

Infectious pancreatic necrosis virus (IPNV) is a bisegmented, double-stranded RNA (dsRNA) virus of the Birnaviridae family that causes widespread disease in salmonids. Its two genomic segments are encapsulated together with the viral RNA-dependent RNA polymerase, VP1, and the assumed internal protein, VP3, in a single-shell capsid composed of VP2. Major aspects of the molecular biology of IPNV, such as particle assembly and interference with host macromolecules, are as yet poorly understood. To understand the infection process, analysis of viral protein interactions is of crucial importance. In this study, we focus on the interaction properties of VP3, the suggested key organizer of particle assembly in birnaviruses. By applying the yeast two-hybrid system in combination with coimmunoprecipitation, VP3 was proven to bind to VP1 and to self-associate strongly. In addition, VP3 was shown to specifically bind to dsRNA in a sequence-independent manner by in vitro pull-down experiments. The binding between VP3 and VP1 was not dependent on the presence of dsRNA. Deletion analyses mapped the VP3 self-interaction domain within the 101 N-terminal amino acids and the VP1 interaction domain within the 62 C-terminal amino acids of VP3. The C-terminal end was also crucial but not sufficient for the dsRNA binding capacity of VP3. For VP1, the 90 C-terminal amino acids constituted the only dispensable part for maintaining VP3-binding ability. Kinetic analysis revealed the presence of VP1-VP3 complexes prior to the formation of mature virions in IPNV-infected CHSE-214 cells, which indicates a role in promoting the assembly process.
机译:传染性胰腺坏死病毒(IPNV)是Birnaviridae家族的双链双链RNA(dsRNA)病毒,在鲑鱼中引起广泛的疾病。它的两个基因组片段与病毒RNA依赖性RNA聚合酶VP1和假定的内部蛋白质VP3一起封装在由VP2组成的单壳衣壳中。 IPNV分子生物学的主要方面,例如颗粒组装和对宿主大分子的干扰,还知之甚少。要了解感染过程,分析病毒蛋白相互作用至关重要。在这项研究中,我们专注于VP3的相互作用特性,VP3是建议的双歧病毒颗粒装配的关键组织者。通过将酵母双杂交系统与免疫共沉淀相结合,可证明VP3与VP1结合并强烈地自我结合。此外,通过体外下拉实验显示,VP3以不依赖序列的方式特异性结合dsRNA。 VP3和VP1之间的结合不依赖于dsRNA的存在。缺失分析将VP3的101个N末端氨基酸内的VP3自相互作用域和VP1的62个C末端氨基酸内的VP1相互作用域映射了起来。 C末端也很关键,但不足以达到VP3的dsRNA结合能力。对于VP1,90个C末端氨基酸是维持VP3结合能力的唯一可有可无的部分。动力学分析表明,在感染IPNV的CHSE-214细胞中,在形成成熟的病毒粒子之前,存在VP1-VP3复合物,这表明它在促进组装过程中发挥了作用。

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