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番茄斑萎病毒的管状结构形成蛋白NSm可互补烟草花叶病毒杂种的细胞间和长距离运动。

The tubule-forming NSm protein from Tomato spotted wilt virus complements cell-to-cell and long-distance movement of Tobacco mosaic virus hybrids.

作者信息

Lewandowski Dennis J, Adkins Scott

机构信息

Department of Plant Pathology, University of Florida, Citrus Research and Education Center, 700 Experiment Station Road, Lake Alfred, FL 33850, USA.

出版信息

Virology. 2005 Nov 10;342(1):26-37. doi: 10.1016/j.virol.2005.06.050. Epub 2005 Aug 19.

Abstract

A Florida isolate of Tomato spotted wilt virus (TSWV) was able to complement cell-to-cell movement of a movement-defective Tobacco mosaic virus (TMV) vector expressing the jellyfish green fluorescent protein (GFP). To test for complementation of movement in the absence of other TSWV proteins, the open reading frame for the NSm protein was expressed from TMV constructs encoding only the TMV replicase proteins. NSm was expressed from either the coat protein or movement protein subgenomic promoter, creating virus hybrids that moved cell to cell in inoculated leaves of tobacco, providing the first functional demonstration that NSm is the TSWV movement protein. Furthermore, these CP-deficient hybrids moved into upper leaves of Nicotiana benthamiana, demonstrating that NSm can support long-distance movement of viral RNAs. Tubules, characteristic of the NSm protein, were also formed in tobacco protoplasts infected with the TMV-TSWV hybrids. The C-terminus of the NSm protein was shown to be required for movement. TMV-TSWV hybrids expressing NSm and GFP moved within inoculated leaves. Our combination of single-cell and intact plant experiments to examine multiple functions of a heterologous viral protein provides a generalized strategy with wider application to other viruses also lacking a reverse genetic system.

摘要

番茄斑萎病毒(TSWV)的一种佛罗里达分离株能够互补一种表达水母绿色荧光蛋白(GFP)的运动缺陷型烟草花叶病毒(TMV)载体的细胞间运动。为了在不存在其他TSWV蛋白的情况下测试运动互补情况,从仅编码TMV复制酶蛋白的TMV构建体中表达NSm蛋白的开放阅读框。NSm从外壳蛋白或运动蛋白亚基因组启动子表达,产生在烟草接种叶片中进行细胞间运动的病毒杂种,首次功能性证明NSm是TSWV运动蛋白。此外,这些缺乏外壳蛋白的杂种转移到本氏烟草的上部叶片,表明NSm可以支持病毒RNA的长距离运动。在感染TMV-TSWV杂种的烟草原生质体中也形成了NSm蛋白特有的小管。结果表明,NSm蛋白的C末端是运动所必需的。表达NSm和GFP的TMV-TSWV杂种在接种叶片内移动。我们结合单细胞和完整植物实验来研究异源病毒蛋白的多种功能,提供了一种可广泛应用于其他也缺乏反向遗传系统的病毒的通用策略。

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