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Assembly of the Herpes Simplex Virus Capsid: Identification of Soluble Scaffold-Portal Complexes and Their Role in Formation of Portal-Containing Capsids

机译:单纯疱疹病毒衣壳的装配:可溶性支架-门户复合物的鉴定及其在包含门脉的衣壳形成中的作用

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摘要

The herpes simplex virus type 1 (HSV-1) portal complex is a ring-shaped structure located at a single vertex in the viral capsid. Composed of 12 UL6 protein molecules, the portal functions as a channel through which DNA passes as it enters the capsid. The studies described here were undertaken to clarify how the portal becomes incorporated as the capsid is assembled. We tested the idea that an intact portal may be donated to the growing capsid by way of a complex with the major scaffolding protein, UL26.5. Soluble UL26.5-portal complexes were found to assemble when purified portals were mixed in vitro with UL26.5. The complexes, called scaffold-portal particles, were stable during purification by agarose gel electrophoresis or sucrose density gradient ultracentrifugation. Examination of the scaffold-portal particles by electron microscopy showed that they resemble the 50- to 60-nm-diameter “scaffold particles” formed from purified UL26.5. They differed, however, in that intact portals were observed on the surface. Analysis of the protein composition by sodium dodecyl sulfate-polyacrylamide gel electrophoresis demonstrated that portals and UL26.5 combine in various proportions, with the highest observed UL6 content corresponding to two or three portals per scaffold particle. Association between the portal and UL26.5 was antagonized by WAY-150138, a small-molecule inhibitor of HSV-1 replication. Soluble scaffold-portal particles were found to function in an in vitro capsid assembly system that also contained the major capsid (VP5) and triplex (VP19C and VP23) proteins. Capsids that formed in this system had the structure and protein composition expected of mature HSV-1 capsids, including UL6, at a level corresponding to ∼1 portal complex per capsid. The results support the view that UL6 becomes incorporated into nascent HSV-1 capsids by way of a complex with UL26.5 and suggest further that UL6 may be introduced into the growing capsid as an intact portal.
机译:1型单纯疱疹病毒(HSV-1)门脉复合体是位于病毒衣壳中单个顶点的环形结构。门户由12个UL6蛋白分子组成,是DNA进入衣壳时通过的通道。进行此处描述的研究是为了阐明组装衣壳时门户是如何合并的。我们测试了一个完整的门户可以通过与主要支架蛋白UL26.5形成复合体的方式捐赠给不断增长的衣壳的想法。当在体外将纯化的门户与UL26.5混合时,发现可溶的UL26.5-门户复合物组装。该复合物称为支架孔颗粒,在通过琼脂糖凝胶电泳或蔗糖密度梯度超离心纯化的过程中是稳定的。通过电子显微镜检查支架端口颗粒显示,它们类似于由纯化的UL26.5形成的直径为50至60 nm的“支架颗粒”。但是,它们的区别在于在表面上观察到了完整的入口。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳对蛋白质组成进行的分析表明,门户和UL26.5以各种比例结合,观察到的最高UL6含量对应于每个支架颗粒两个或三个门户。 HSV-1复制的小分子抑制剂WAY-150138拮抗了门户与UL26.5之间的关联。发现可溶性支架-门户颗粒在体外衣壳装配系统中起作用,该系统还包含主要衣壳蛋白(VP5)和三链蛋白(VP19C和VP23)。在该系统中形成的衣壳具有成熟的HSV-1衣壳(包括UL6)所期望的结构和蛋白质组成,其水平相当于每个衣壳约1个门户复合物。结果支持这样的观点,即UL6通过与UL26.5的复合物掺入新生的HSV-1衣壳中,并进一步表明UL6可以作为完整的门户引入生长的衣壳中。

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