Department of Structural Biology, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA.
Department of Biological Sciences, Dietrich School of Arts and Sciences, University of Pittsburgh, Pittsburgh, PA, USA.
Sci Adv. 2023 Jun 16;9(24):eadg8868. doi: 10.1126/sciadv.adg8868.
Tailed bacteriophages and herpesviruses use a transient scaffold to assemble icosahedral capsids with hexameric capsomers on the faces and pentameric capsomers at all but one vertex where a 12-fold portal is thought to nucleate the assembly. How does the scaffold orchestrate this step? We have determined the portal vertex structure of the bacteriophage HK97 procapsid, where the scaffold is a domain of the major capsid protein. The scaffold forms rigid helix-turn-strand structures on the interior surfaces of all capsomers and is further stabilized around the portal, forming trimeric coiled-coil towers, two per surrounding capsomer. These 10 towers bind identically to 10 of 12 portal subunits, adopting a pseudo-12-fold organization that explains how the symmetry mismatch is managed at this early step.
长尾噬菌体和疱疹病毒使用瞬态支架来组装二十面体衣壳,在六聚体衣壳上有面结构,在除一个顶点外的所有顶点上有五聚体衣壳,人们认为十二面体门在该顶点处起始组装。支架如何协调这一步骤?我们已经确定了噬菌体 HK97 原衣壳的门顶点结构,其中支架是主要衣壳蛋白的一个结构域。支架在所有衣壳的内部表面形成刚性的螺旋-转角-链结构,并在门周围进一步稳定,形成三聚体卷曲螺旋塔,每个周围衣壳有两个。这 10 个塔以相同的方式与 12 个门亚基中的 10 个结合,采用一种伪十二面体组织,解释了在这个早期步骤中如何处理对称不匹配。