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The portal protein plays essential roles at different steps of the SPP1 DNA packaging process

机译:门户蛋白在SPP1 DNA包装过程的不同步骤中起着至关重要的作用

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A large number of viruses use a specialized portal for entry of DNA to the viral capsid and for its polarized exit at the beginning of infection. These families of viruses assemble an icosahedral procapsid containing a portal protein oligomer in one of its 12 vertices. The viral ATPase (terminase) interacts with the portal vertex to form a powerful molecular motor that translocates DNA to the procapsid interior against a steep concentration gradient. The portal protein is an essential component of this DNA packaging machine. Characterization of single amino acid substitutions in the portal protein gp6 of bacteriophage SPP1 that block DNA packaging identified sequential steps in the packaging mechanism that require its action. Gp6 is essential at early steps of DNA packaging and for DNA translocation to the capsid interior, it affects the efficiency of DNA packaging, it is a central component of the headful sensor that determines the size of the packaged DNA molecule, and is essential for closure of the portal pore by the head completion proteins to prevent exit of the DNA encapsidated. Functional regions of gp6 necessary at each step are identified within its primary structure. The similarity between the architecture of portal oligomers and between the DNA packaging strategies of viruses using portals strongly suggests that the portal protein plays the same roles in a large number of viruses.
机译:许多病毒使用专门的门户网站将DNA进入病毒衣壳,并在感染开始时以极化方式退出。这些病毒家族装配了一个二十面体的前壳体,在其十二个顶点之一中包含一个门户蛋白寡聚体。病毒ATP酶(末端酶)与门静脉顶点相互作用,形成强大的分子动力,该分子动力使DNA在陡峭的浓度梯度下易位到前壳体内部。门禁蛋白是该DNA包装机的重要组成部分。噬菌体SPP1的门禁蛋白gp6中单个氨基酸取代的特征可阻断DNA包装,从而确定了包装机制中需要其作用的顺序步骤。 Gp6在DNA包装的早期步骤中至关重要,并且对于DNA转运到衣壳内部至关重要,它会影响DNA包装的效率,它是有头传感器的核心组件,它决定了包装DNA分子的大小,并且对于封闭至关重要头部补全蛋白可以防止门静脉孔的脱落,从而防止被衣壳化的DNA逸出。每个步骤中必需的gp6功能区都在其一级结构中进行了识别。门禁寡聚物的结构与使用门禁病毒的DNA包装策略之间的相似性强烈表明,门禁蛋白在大量病毒中起相同的作用。

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