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病毒 RNA 的衣壳化:豇豆花叶病毒的研究表明其依赖于病毒的复制。

Encapsidation of Viral RNA in : Studies on Cowpea Mosaic Virus Demonstrate Dependence on Viral Replication.

机构信息

Department of Biological Chemistry, John Innes Centre, Norwich, United Kingdom.

Department of Biological Chemistry, John Innes Centre, Norwich, United Kingdom

出版信息

J Virol. 2019 Jan 4;93(2). doi: 10.1128/JVI.01520-18. Print 2019 Jan 15.

Abstract

To elucidate the linkage between replication and encapsidation in , we have taken advantage of the bipartite nature of a plant-infecting member of this order, cowpea mosaic virus (CPMV), to decouple the two processes. RNA-free virus-like particles (empty virus-like particles [eVLPs]) can be generated by transiently coexpressing the RNA-2-encoded coat protein precursor (VP60) with the RNA-1-encoded 24,000-molecular-weight (24K) protease, in the absence of the replication machinery (K. Saunders, F. Sainsbury, and G. P. Lomonossoff, Virology 393:329-337, 2009, https://doi.org/10.1016/j.virol.2009.08.023). We have made use of the ability to produce assembled capsids of CPMV in the absence of replication to examine the putative linkage between RNA replication and packaging in the We have created a series of mutant RNA-1 and RNA-2 molecules and have assessed the effects of the mutations on both the replication and packaging of the viral RNAs. We demonstrate that mutations that affect replication have a concomitant impact on encapsidation and that RNA-1-mediated replication is required for encapsidation of both RNA-1 and RNA-2. This close coupling between replication and encapsidation provides a means for the specific packaging of viral RNAs. Moreover, we demonstrate that this feature of CPMV can be used to specifically encapsidate custom RNA by placing a sequence of choice between the RNA-2 sequences required for replication. The mechanism whereby members of the order specifically package their genomic RNAs is poorly understood. Research with monopartite members of the order, such as poliovirus, indicated that packaging is linked to replication, although the presence of "packaging signals" along the length of the viral RNA has also been suggested. Thanks to the bipartite nature of the CPMV genome, which allows the manipulation of RNA-1 without modifying RNA-2, we show here that this specificity is due to a functional link between the two processes of viral replication and encapsidation. This has important implications for our understanding of the fundamental molecular biology of and opens the door to novel research and therapeutic applications in the field of custom RNA packaging and delivery technologies.

摘要

为了阐明 复制和包装之间的联系,我们利用该目植物感染成员的二分体性质,即豇豆花叶病毒(CPMV),来分离这两个过程。通过瞬时共表达 RNA-2 编码的外壳蛋白前体(VP60)和 RNA-1 编码的 24,000 分子量(24K)蛋白酶,在没有复制机制的情况下,可以生成无 RNA 的病毒样颗粒(空病毒样颗粒[eVLPs])(K. Saunders、F. Sainsbury 和 G. P. Lomonossoff,Virology 393:329-337,2009,https://doi.org/10.1016/j.virol.2009.08.023)。我们利用 CPMV 组装衣壳的能力在没有复制的情况下检查 中 RNA 复制和包装之间的假定联系。我们创建了一系列突变的 RNA-1 和 RNA-2 分子,并评估了突变对病毒 RNA 复制和包装的影响。我们证明,影响复制的突变对包装有共同的影响,并且 RNA-1 介导的复制是包装 RNA-1 和 RNA-2 的必要条件。这种复制和包装之间的紧密耦合为特定包装病毒 RNA 提供了一种手段。此外,我们证明,CPMV 的这一特征可用于通过在复制所需的 RNA-2 序列之间放置所需的序列来特异性封装定制 RNA。该目中成员特异性包装其基因组 RNA 的机制知之甚少。对该目的单分体成员(如脊髓灰质炎病毒)的研究表明,包装与复制有关,尽管病毒 RNA 长度上存在“包装信号”的存在也被提出。由于 CPMV 基因组的二分体性质允许在不修饰 RNA-2 的情况下操纵 RNA-1,我们在此表明,这种特异性是由于病毒复制和包装这两个过程之间的功能联系。这对我们理解 的基础分子生物学具有重要意义,并为定制 RNA 包装和递送到领域的新型研究和治疗应用开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3750/6321914/282aeacdc8ec/JVI.01520-18-f0001.jpg

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