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3.0埃分辨率下昆虫病毒的结构

Structure of an insect virus at 3.0 A resolution.

作者信息

Hosur M V, Schmidt T, Tucker R C, Johnson J E, Gallagher T M, Selling B H, Rueckert R R

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

Proteins. 1987;2(3):167-76. doi: 10.1002/prot.340020302.

Abstract

We report the first atomic resolution structure of an insect virus determined by single crystal X-ray diffraction. Black beetle virus has a bipartite RNA genome encapsulated in a single particle. The capsid contains 180 protomers arranged on a T = 3 surface lattice. The quaternary organization of the protomers is similar to that observed in the T = 3 plant virus structures. The protomers consist of a basic, crystallographically disordered amino terminus (64 residues), a beta-barrel as seen in other animal and plant virus subunits, an outer protrusion composed predominantly of beta-sheet and formed by three large insertions between strands of the barrel, and a carboxy terminal domain composed of two distorted helices lying inside the shell. The outer surfaces of quasi-threefold related protomers form trigonal pyramidyl protrusions. A cleavage site, located 44 residues from the carboxy terminus, lies within the central cavity of the protein shell. The structural motif observed in BBV (a shell composed of 180 eight-stranded antiparallel beta-barrels) is common to all nonsatellite spherical viruses whose structures have so far been solved. This highly conserved shell architecture suggests a common origin for the coat protein of spherical viruses, while the primitive genome structure of BBV suggests that this insect virus represents an early stage in the evolution of spherical viruses from cellular genes.

摘要

我们报道了通过单晶X射线衍射确定的昆虫病毒的首个原子分辨率结构。黑甲虫病毒具有二分RNA基因组,封装在单个颗粒中。衣壳包含180个原聚体,排列在T = 3表面晶格上。原聚体的四级结构与在T = 3植物病毒结构中观察到的相似。原聚体由一个碱性的、晶体学上无序的氨基末端(64个残基)、一个在其他动物和植物病毒亚基中可见的β-桶、一个主要由β-折叠组成并由桶链之间的三个大插入形成的外部突起以及一个由位于壳内的两个扭曲螺旋组成的羧基末端结构域组成。准三重相关原聚体的外表面形成三角锥形突起。一个切割位点,位于距羧基末端44个残基处,位于蛋白质壳的中央腔内。在BBV中观察到的结构基序(由180个八链反平行β-桶组成的壳)对于所有其结构迄今已被解析的非卫星球形病毒来说是常见的。这种高度保守的壳结构表明球形病毒的衣壳蛋白有共同的起源,而BBV的原始基因组结构表明这种昆虫病毒代表了球形病毒从细胞基因进化的早期阶段。

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