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逆转录病毒RNA包装:综述

Retroviral RNA packaging: a review.

作者信息

Rein A

机构信息

Laboratory of Molecular Virology and Carcinogenesis, NCI-Frederick Cancer Research and Development Center, Maryland.

出版信息

Arch Virol Suppl. 1994;9:513-22. doi: 10.1007/978-3-7091-9326-6_49.

Abstract

In retroviruses, the "Gag" or core polyprotein is capable of assembling into virus particles and packaging the genomic RNA of the virus. How this protein recognizes viral RNA is not understood. Gag polyproteins contain a zinc-finger domain; mutants with changes in this domain assemble into virions, but a large fraction of these particles lack viral RNA. Thus, one crucial element in the RNA packaging mechanism is the zinc-finger domain. RNA sequences required for packaging ("packing signals") have been studied both by deletion analysis and by measuring encapsidation of nonviral mRNAs containing limited insertions of viral sequence. These experiments show that all or part of the packaging signal in viral RNA is located near the 5 end of the genome. These signals appear to be quite large, i.e., hundreds of nucleotides. Each virus particle actually contains a dimer of two identical, + strand genomic RNA molecules. The nature of the dimeric linkage is not understood. In some experimental situations (including zinc-finger mutants), only a small fraction of the particles in a virus preparation contain genomic RNA. It is striking that the genomic RNA packaged in these situations is dimeric. Because of this important observation, it is speculated that only dimers are packaged, and that the dimeric structure is an element of the packaging signal. It is also suggested that the dimers undergo a conformational change ("RNA maturation") after the virus is released from the cell, and that this change may depend upon the cleavage of the Gag polyprotein, a post-assembly event catalyzed by the virus-coded protease.

摘要

在逆转录病毒中,“Gag”或核心多聚蛋白能够组装成病毒颗粒并包装病毒的基因组RNA。这种蛋白质如何识别病毒RNA尚不清楚。Gag多聚蛋白包含一个锌指结构域;该结构域发生变化的突变体能够组装成病毒粒子,但这些粒子中有很大一部分缺乏病毒RNA。因此,RNA包装机制中的一个关键要素是锌指结构域。通过缺失分析以及测量含有有限病毒序列插入的非病毒mRNA的衣壳化,对包装所需的RNA序列(“包装信号”)进行了研究。这些实验表明,病毒RNA中的全部或部分包装信号位于基因组的5'端附近。这些信号似乎相当大,即数百个核苷酸。每个病毒粒子实际上包含两个相同的正链基因组RNA分子的二聚体。二聚体连接的性质尚不清楚。在某些实验情况下(包括锌指突变体),病毒制剂中的粒子只有一小部分含有基因组RNA。引人注目的是,在这些情况下包装的基因组RNA是二聚体。由于这一重要观察结果,推测只有二聚体被包装,并且二聚体结构是包装信号的一个要素。还表明,二聚体在病毒从细胞释放后会发生构象变化(“RNA成熟”),并且这种变化可能取决于Gag多聚蛋白的切割,这是一种由病毒编码的蛋白酶催化的组装后事件。

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