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In vitro assembly of the herpes simplex virus procapsid: Formation ofsmall procapsids at reduced scaffolding protein concentration

机译:单纯疱疹病毒衣壳的体外组装:在降低的支架蛋白浓度下形成小的前壳

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The herpes simplex virus 1 capsid is formed in the infected cell nucleus by way of a spherical, less robust intermediate called the procapsid, Procapsid assembly requires the capsid shell proteins (VP5, VP1SC, and VP23) plus the scaffolding protein, pre-VP22a, a major component of the procapsid that is not present in the mature virion. Pre-VP22a is lost as DNA is packaged and the procapsid is transformed into the mature, icosahedral capsid. We have employed a cell-free assembly system to examine the role of the scaffolding protein in procapsid formation, While other reaction components (VP5, VP1SC, and VP23) were held constant, the pre-VP22a concentration was varied, and the resulting procapsids were analyzed by electron microscopy and SDS-polyacrylamide gel electrophoresis. The results demonstrated that while standard-sized (T = 16) procapsids with a measured diameter of similar to 100 nm were formed above a threshold pre-VP22a concentration, at lower concentrations procapsids were smaller. The measured diameter was similar to 78 nm and the predicted triangulation number was 9. No procapsids larger than the standard size or smaller than 78-nm procapsids were observed in appreciable numbers at any pre-VP22a concentration tested. SDS-polyacrylamide gel analyses indicated that small procapsids contained a reduced amount of scaffolding protein compared to the standard 100-nm form, The observations indicate that the scaffolding protein concentration affects the structure of nascent procapsids with a minimum amount required for assembly of procapsids with the standard radius of curvature and scaffolding protein content.
机译:单纯疱疹病毒1衣壳是通过球形的,不那么坚固的中间体(称为前衣壳)在受感染的细胞核中形成的。前衣壳装配需要衣壳蛋白(VP5,VP1SC和VP23)以及脚手架蛋白(VP22a之前),成熟病毒体中不存在的前壳体的主要成分。 VP22a的前体会随着DNA的包装而丢失,而前壳体则变成成熟的二十面体壳体。我们采用了无细胞装配系统来检查支架蛋白在衣壳形成中的作用,而其他反应成分(VP5,VP1SC和VP23)保持恒定,而VP22a之前的浓度却发生了变化,因此产生的衣壳为通过电子显微镜和SDS-聚丙烯酰胺凝胶电泳进行分析。结果表明,虽然在阈值前VP22a浓度以上形成了测量直径接近100 nm的标准大小(T = 16)的衣壳,但在较低的浓度下,衣壳却较小。测量的直径类似于78 nm,预计的三角剖分数量为9。在任何测试的VP22a之前浓度下,均未观察到比标准尺寸大或小于78 nm的前壳体。 SDS-聚丙烯酰胺凝胶分析表明,与标准的100-nm形式相比,小型衣壳中所含的支架蛋白含量减少。观察结果表明,支架蛋白浓度影响新生的前壳蛋白的结构,而与前体装配在一起所需的最小量。标准曲率半径和支架蛋白含量。

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