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噬菌体P22衣壳的结构与组装

Structure and assembly of the capsid of bacteriophage P22.

作者信息

King J, Botstein D, Casjens S, Earnshaw W, Harrison S, Lenk E

出版信息

Philos Trans R Soc Lond B Biol Sci. 1976 Nov 30;276(943):37-49. doi: 10.1098/rstb.1976.0096.

Abstract

Identification of the genes and proteins involved in phage P22 formation has permitted a detailed analysis of particle assembly, revealing some unexpected aspects. The polymerization of the major coat protein (gene 5 product) into an organized capsid is directed by a scaffolding protein (gene 8 product) which is absent from mature phage. The resulting capsid structure (prohead) is the precursor for DNA encapsidation. All of the scaffolding protein exits from the prohead in association with DNA packaging. These molecules then recycle, directing further rounds of prohead assembly. The structure of the prohead has been studied by electron microscopy of thin sections of phage infected cells, and by low angle X-ray scattering of concentrated particles. The results show that the prohead is a double shell structure, or a ball within a shell. The inner ball or shell is composed of the scaffolding protein while the outer shell is composed of coat protein. The conversion from prohead to mature capsid is associated with an expansion of the coat protein shell. It is possible that the scaffolding protein molecules exit through the capsid lattice. When DNA encapsidation within infected cells is blocked by mutation, scaffolding protein is trapped in proheads and cannot recycle. Under these conditions, the rate of synthesis of gp8 increases, so that normal proheads continue to form. These results suggest that free scaffolding protein negatively regulates its own further synthesis, providing a coupling between protein synthesis and protein assembly.

摘要

对参与噬菌体P22形成的基因和蛋白质的鉴定,使得对颗粒组装进行详细分析成为可能,揭示了一些意想不到的方面。主要衣壳蛋白(基因5产物)聚合成有组织的衣壳是由一种支架蛋白(基因8产物)指导的,这种支架蛋白在成熟噬菌体中不存在。产生的衣壳结构(原头部)是DNA包装的前体。所有的支架蛋白在DNA包装时与原头部脱离。这些分子随后循环利用,指导进一步的原头部组装轮次。通过对噬菌体感染细胞的薄切片进行电子显微镜观察,以及对浓缩颗粒进行低角度X射线散射,对原头部的结构进行了研究。结果表明,原头部是一种双层壳结构,即一个壳内的球。内部的球或壳由支架蛋白组成,而外部的壳由衣壳蛋白组成。从原头部到成熟衣壳的转变与衣壳蛋白壳的扩张有关。支架蛋白分子有可能通过衣壳晶格排出。当感染细胞内的DNA包装因突变而受阻时,支架蛋白被困在原头部中无法循环利用。在这些条件下,gp8的合成速率增加,从而继续形成正常的原头部。这些结果表明,游离的支架蛋白对其自身的进一步合成产生负调控,从而在蛋白质合成和蛋白质组装之间建立了一种耦合关系。

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