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从头构建病毒:在严格定义的生化检测系统中使用纯化成分组装感染性病毒。

Building a virus from scratch: assembly of an infectious virus using purified components in a rigorously defined biochemical assay system.

作者信息

Gaussier Hélène, Yang Qin, Catalano Carlos Enrique

机构信息

Department of Pharmaceutical Sciences, University of Colorado Health Sciences Center, 4200 East Ninth Avenue C238, Denver, CO 80262, USA.

出版信息

J Mol Biol. 2006 Apr 7;357(4):1154-66. doi: 10.1016/j.jmb.2006.01.013. Epub 2006 Jan 25.

Abstract

The assembly of double-stranded DNA (dsDNA) viruses such as poxvirus, the herpesviruses and many bacteriophages is a complex process that requires the coordinated activities of numerous proteins of both viral and host origin. Here, we report the assembly of an infectious wild-type lambda virus using purified proteins and commercially available DNA, and optimization of the assembly reaction in a rigorously defined biochemical system. Seven proteins, purified procapsids and tails, and mature lambda DNA are necessary and sufficient for efficient virus assembly in vitro. Analysis of the reaction suggests that (i) virus assembly in vitro is optimal under conditions that faithfully mimic the intracellular environment within an Escherichia coli cell, (ii) concatemeric DNA is required for the successful completion of virus assembly, (iii) several of the protein components oligomerize concomitant with their step-wise addition to the nascent virus particle and (iv) tail addition is the rate-limiting step in virus assembly. Importantly, the assembled virus may enter either of the developmental pathways (lytic or lysogenic) expected of a lambda virion. Thus, we demonstrate for the first time that a wild-type, complex DNA virus may be assembled from purified components under defined biochemical conditions. This system provides a powerful tool to characterize, at the molecular level, the step-by-step processes required to assemble an infectious virus particle. Given the remarkable similarities between dsDNA bacteriophage and eukaryotic dsDNA viruses, characterization of the lambda system has broad biological implications in our understanding of virus development at a global level.

摘要

双链DNA(dsDNA)病毒的组装,如痘病毒、疱疹病毒和许多噬菌体,是一个复杂的过程,需要病毒和宿主来源的众多蛋白质协同作用。在此,我们报道了使用纯化的蛋白质和市售DNA组装感染性野生型λ病毒,并在严格定义的生化系统中优化组装反应。七种蛋白质、纯化的原衣壳和尾部以及成熟的λDNA对于体外高效病毒组装是必要且充分的。对该反应的分析表明:(i)体外病毒组装在忠实地模拟大肠杆菌细胞内细胞内环境的条件下是最佳的;(ii)串联DNA是成功完成病毒组装所必需的;(iii)几种蛋白质成分在逐步添加到新生病毒颗粒的同时发生寡聚化;(iv)尾部添加是病毒组装中的限速步骤。重要的是,组装好的病毒可能进入λ病毒粒子预期的任何一种发育途径(裂解或溶原)。因此,我们首次证明了野生型复杂DNA病毒可以在确定的生化条件下由纯化的成分组装而成。该系统提供了一个强大的工具,可在分子水平上表征组装感染性病毒颗粒所需的逐步过程。鉴于dsDNA噬菌体与真核dsDNA病毒之间存在显著相似性,λ系统的表征在我们对全球病毒发育的理解方面具有广泛的生物学意义。

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