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Multiple Domains Within the Cauliflower mosaic virus Gene VI Product Interact with the Full-Length Protein

机译:花椰菜花叶病毒基因VI产品中的多个域与全长蛋白相互作用

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The Cauliflower mosaic virus (CaMV) gene VI product (P6) is a multifunctional protein essential for viral propagation. It is likely that at least some of these functions require P6 self-association. The work described here was performed to confirm that P6 self-associates and to identify domains involved in this interaction. Yeast two-hybrid analyses indicated that full-length P6 self-associates and that this interaction is specific. Additional analyses indicated that at least four independent domains bind to full-length P6. When a central domain (termed domain D3) was removed, these interactions were abolished. However, this deleted P6 was able to bind to the full-length wild-type protein and to isolated domain D3. Viruses lacking domain D3 were incapable of producing a systemic infection. Isolated domain D3 was capable of binding to at least two of the other domains but was unable to self-associate. This suggests that domain D3 facilitates P6 self-association by binding to the other domains but not itself. The presence of multiple domains involved in P6 self-association may help explain the ability of this protein to form the intracellular inclusions characteristic of caulimoviruses.
机译:花椰菜花叶病毒(CaMV)基因VI产物(P6)是病毒繁殖所必需的多功能蛋白质。这些功能中至少有一些功能可能需要P6自关联。执行此处描述的工作以确认P6自相关并确定参与此交互作用的域。酵母两杂交分析表明全长P6自缔合,并且这种相互作用是特定的。其他分析表明,至少四个独立的域与全长P6结合。当删除中央域(称为域D3)时,这些相互作用将被取消。然而,该缺失的P6能够结合全长野生型蛋白和分离的结构域D3。缺少域D3的病毒无法产生全身感染。分离的结构域D3能够结合至少两个其他结构域,但是不能自缔合。这表明域D3通过与其他域而非自身结合而促进了P6自缔合。参与P6自缔合的多个域的存在可能有助于解释该蛋白质形成花椰菜病毒特征性细胞内包涵体的能力。

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