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雀麦花叶病毒2a蛋白的缺失分析:对RNA复制和系统传播的影响

Deletion analysis of brome mosaic virus 2a protein: effects on RNA replication and systemic spread.

作者信息

Traynor P, Young B M, Ahlquist P

机构信息

Institute for Molecular Virology, University of Wisconsin-Madison 53706.

出版信息

J Virol. 1991 Jun;65(6):2807-15. doi: 10.1128/JVI.65.6.2807-2815.1991.

Abstract

Brome mosaic virus (BMV) genomic RNA2 encodes the 94-kDa 2a protein, which is one of two BMV nonstructural proteins required for RNA replication and subgenomic mRNA transcription. 2a contains a central polymeraselike region, which has extensive sequence similarity with the Sindbis virus nsP4 and tobacco mosaic virus (TMV) 183-kDa replication proteins, and also contains N- and C-terminal flanking segments without counterparts in the Sindbis virus and TMV nonstructural proteins. To further investigate the roles of the central and flanking segments in 2a, we have constructed a series of deletion and frameshift mutants in a biologically active BMV RNA2 cDNA clone and tested their ability to support viral RNA replication in barley protoplasts and systemic infection in whole barley plants. The entire 125-amino-acid C-terminal segment following the polymeraselike region was dispensable for RNA replication and transcription. Within the 200-amino-acid N-terminal flanking segment, deletion of the first 50 residues dramatically reduced genomic and subgenomic RNA accumulation, and deletion of 100 or more residues abolished detectable RNA synthesis. All mutations removing residues from the central polymeraselike domain also blocked RNA replication in trans. Sequences required in cis for RNA2 replication or stability were found to occur within the first 300 nucleotides of the 2a coding region. In whole barley plants, systemic infection was inhibited even by 2a deletions that supported strong RNA replication in protoplasts. Some replication-competent 2a variants failed to spread to uninoculated leaves, while other showed 10- to 500-fold-reduced virus yield in both inoculated and uninoculated leaves. These reductions were not due to any defects in RNA2 encapsidation.

摘要

雀麦花叶病毒(BMV)基因组RNA2编码94 kDa的2a蛋白,它是RNA复制和亚基因组mRNA转录所需的两种BMV非结构蛋白之一。2a包含一个中央聚合酶样区域,该区域与辛德毕斯病毒nsP4和烟草花叶病毒(TMV)183 kDa复制蛋白具有广泛的序列相似性,并且还包含N端和C端侧翼片段,而这些片段在辛德毕斯病毒和TMV非结构蛋白中没有对应物。为了进一步研究2a中中央和侧翼片段的作用,我们在具有生物活性的BMV RNA2 cDNA克隆中构建了一系列缺失和移码突变体,并测试了它们在大麦原生质体中支持病毒RNA复制以及在整株大麦植物中进行系统感染的能力。聚合酶样区域之后的整个125个氨基酸的C端片段对于RNA复制和转录是可有可无的。在200个氨基酸的N端侧翼片段中,删除前50个残基会显著降低基因组和亚基因组RNA的积累,而删除100个或更多残基则会消除可检测到的RNA合成。所有从中央聚合酶样结构域去除残基的突变也会阻断反式RNA复制。发现RNA2复制或稳定性所需的顺式序列位于2a编码区的前300个核苷酸内。在整株大麦植物中,即使是那些在原生质体中支持强大RNA复制的2a缺失突变体也会抑制系统感染。一些具有复制能力的2a变体无法传播到未接种的叶片,而其他变体在接种和未接种的叶片中病毒产量均降低了10至500倍。这些降低并非由于RNA2包装存在任何缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33f0/240898/bdd416df9789/jvirol00049-0060-a.jpg

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