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烟草花叶病毒运动蛋白介导的毛状体细胞间的蛋白质运输。

Tobacco mosaic virus movement protein-mediated protein transport between trichome cells.

作者信息

Waigmann E, Zambryski P

机构信息

Department of Plant Biology, University of California-Berkeley 94720, USA.

出版信息

Plant Cell. 1995 Dec;7(12):2069-79. doi: 10.1105/tpc.7.12.2069.

Abstract

Tobacco mosaic virus movement protein (TMV MP) is required to mediate viral spread between plant cells via plasmodesmata. Plasmodesmata are cytoplasmic bridges that connect individual plant cells and ordinarily limit molecular diffusion to small molecules and metabolites with a molecular mass up to 1 kD. Here, we characterize functional properties of Nicotiana clevelandii trichome plasmodesmata and analyze their interaction with TMV MP. Trichomes constitute a linear cellular system and provide a predictable pathway of movement. Their plasmodesmata are functionally distinct from plasmodesmata in other plant cel types; they allow cell-to-cell diffusion of dextrans with a molecular mass up to 7 kD, and TMV MP does not increase this size exclusion limit for dextrans. In contrast, the 30-kD TMV MP itself moves between trichome cells and specifically mediates the translocation of a 90-kD beta-glucuronidase (GUS) reporter protein as a GUS::TMV MP fusion. Neither GUS by itself nor GUS in the presence of TMV MP moves between cells. These data imply that a plasmodesmal transport signal resides within TMV MP and is essential for movement. This signal confers selectivity to the translocated protein and cannot function in trans to support movement of other molecules.

摘要

烟草花叶病毒运动蛋白(TMV MP)是介导病毒通过胞间连丝在植物细胞间传播所必需的。胞间连丝是连接单个植物细胞的细胞质桥,通常将分子扩散限制在分子量高达1千道尔顿的小分子和代谢物。在此,我们描述了克利夫兰烟草毛状体胞间连丝的功能特性,并分析了它们与TMV MP的相互作用。毛状体构成一个线性细胞系统,并提供了可预测的运动途径。它们的胞间连丝在功能上与其他植物细胞类型中的胞间连丝不同;它们允许分子量高达7千道尔顿的葡聚糖在细胞间扩散,并且TMV MP不会增加葡聚糖的这种尺寸排阻极限。相比之下,30千道尔顿的TMV MP自身在毛状体细胞间移动,并作为GUS::TMV MP融合体特异性介导90千道尔顿的β-葡萄糖醛酸酶(GUS)报告蛋白的转运。单独的GUS或在TMV MP存在下的GUS都不会在细胞间移动。这些数据表明,胞间连丝运输信号存在于TMV MP中,并且对于运动至关重要。该信号赋予转运蛋白选择性,并且不能反式发挥作用来支持其他分子的运动。

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