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共表达的长线形病毒蛋白对马铃薯Y病毒感染的抑制作用

Suppression of potyvirus infection by coexpressed closterovirus protein.

作者信息

Dolja V V, Hong J, Keller K E, Martin R R, Peremyslov V V

机构信息

Department of Botany and Plant Pathology, Center for Gene Research and Biotechnology, Oregon State University, Corvallis 97330, USA.

出版信息

Virology. 1997 Aug 4;234(2):243-52. doi: 10.1006/viro.1997.8660.

Abstract

A tobacco etch virus (TEV)-based expression vector has been used for insertion of several ORFs derived from the unrelated beet yellows virus (BYV). Hybrid TEV variants expressing the BYV capsid protein, 20-kDa protein, or HSP70 homolog systemically infected Nicotiana tabacum and stably retained BYV sequences. In contrast, insertion of the ORF encoding BYV leader proteinase (L-Pro) resulted in severely impaired systemic transport and accumulation of recombinant TEV. Progeny of this virus underwent various deletions affecting the L-Pro sequence and mitigating the defects in virus spread. Model experiments involving several spontaneous and engineered mutants indicated that the central domain of BYV L-Pro was responsible for the defect in hybrid virus accumulation, whereas full-size L-Pro was required for maximal debilitation of systemic transport. Strikingly, BYV L-Pro expression did not debilitate systemic infection of hybrid TEV in Nicotiana benthamiana plants. No major defects in replication or encapsidation of recombinant RNA were revealed in N. tabacum protoplasts. These results indicated that BYV L-Pro specifically interfered with TEV systemic transport and accumulation in a host-dependent manner and suggested a potential utility of closterovirus L-Pro as an inhibitor of potyvirus infection. In addition, it was demonstrated that the 107-amino-acid-residues-long N-terminal part of the TEV helper component proteinase is not essential for systemic infection.

摘要

一种基于烟草蚀纹病毒(TEV)的表达载体已被用于插入来自不相关的甜菜黄化病毒(BYV)的几个开放阅读框(ORF)。表达BYV衣壳蛋白、20 kDa蛋白或HSP70同源物的杂交TEV变体可系统感染烟草并稳定保留BYV序列。相比之下,插入编码BYV前导蛋白酶(L-Pro)的ORF会导致重组TEV的系统运输和积累严重受损。这种病毒的子代发生了各种缺失,影响了L-Pro序列并减轻了病毒传播的缺陷。涉及多个自发和工程突变体的模型实验表明,BYV L-Pro的中央结构域是杂交病毒积累缺陷的原因,而全长L-Pro是系统运输最大程度减弱所必需的。令人惊讶的是,BYV L-Pro的表达并未削弱杂交TEV在本氏烟草植株中的系统感染。在烟草原生质体中未发现重组RNA复制或衣壳化的重大缺陷。这些结果表明,BYV L-Pro以宿主依赖的方式特异性干扰TEV的系统运输和积累,并提示了黄症病毒属L-Pro作为马铃薯Y病毒感染抑制剂的潜在用途。此外,还证明了TEV辅助成分蛋白酶107个氨基酸残基长的N末端部分对于系统感染并非必需。

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