Bayne Elizabeth H, Rakitina Daria V, Morozov Sergey Y, Baulcombe David C
The Sainsbury Laboratory, John Innes Centre, Colney Lane, Norwich NR4 7UH, UK.
Plant J. 2005 Nov;44(3):471-82. doi: 10.1111/j.1365-313X.2005.02539.x.
RNA silencing in transgenic and virus-infected plants involves a mobile silencing signal that can move cell-to-cell and systemically through the plant. It is thought that this signal can influence long-distance movement of viruses because protein suppressors of silencing encoded in viral genomes are required for long-distance virus movement. However, until now, it was not known whether the mobile signal could also influence short-range virus movement between cells. Here, through random mutation analysis of the Potato Potexvirus X (PVX) silencing suppressor P25, we provide evidence that it does. All mutants that were defective for silencing suppression were also non-functional in viral cell-to-cell movement. However, we identified mutant P25 proteins that were functional as silencing suppressors but not as movement proteins and we conclude that suppression of silencing is not sufficient to allow virus movement between cells: there must be a second P25 function that is independent of silencing but also required for cell-to-cell movement. Consistent with this hypothesis, we identified two classes of suppressor-inactive P25 mutants. One class of these mutants is proposed to be functional for the accessory function because their failure to support PVX movement could be complemented by heterologous suppressors of silencing. The second class of P25 mutants is considered defective for both the suppressor and second functions because the heterologous silencing suppressors did not restore virus movement. It is possible, based on analyses of short interfering RNA accumulation, that P25 suppresses silencing by interfering with either assembly or function of the effector complexes of RNA silencing.
转基因植物和病毒感染植物中的RNA沉默涉及一种可移动的沉默信号,该信号能够在植物细胞间和系统地移动。据认为,这种信号可影响病毒的长距离移动,因为病毒基因组中编码的沉默蛋白抑制子是病毒长距离移动所必需的。然而,直到现在,尚不清楚这种可移动信号是否也能影响细胞间的短距离病毒移动。在这里,通过对马铃薯X病毒(PVX)沉默抑制子P25进行随机突变分析,我们提供了证据表明它确实能影响。所有沉默抑制功能有缺陷的突变体在病毒细胞间移动方面也无功能。然而,我们鉴定出了一些P25突变蛋白,它们作为沉默抑制子有功能,但作为移动蛋白无功能,并且我们得出结论,沉默抑制不足以使病毒在细胞间移动:必须存在第二种独立于沉默但细胞间移动也必需的P25功能。与这一假设一致,我们鉴定出了两类抑制子无活性的P25突变体。其中一类突变体被认为在辅助功能方面有功能,因为它们无法支持PVX移动可被异源沉默抑制子互补。第二类P25突变体被认为在抑制子功能和第二种功能方面均有缺陷,因为异源沉默抑制子无法恢复病毒移动。基于对小干扰RNA积累的分析,有可能P25通过干扰RNA沉默效应复合物的组装或功能来抑制沉默。