Department of Plant and Microbial Biology, 111 Koshland Hall, University of California, Berkley 94720-3102, USA.
Mol Plant Microbe Interact. 2010 Jan;23(1):49-57. doi: 10.1094/MPMI-23-1-0049.
In plant immunity, recognition of pathogen effectors by plant resistance proteins leads to the activation of plant defenses and a localized cell death response. The AvrM effector from flax rust is a small secreted protein that is recognized by the M resistance protein in flax. Here, we investigate the mechanism of M-AvrM recognition and show that these two proteins directly interact in a yeast two-hybrid assay, and that this interaction correlates with the recognition specificity observed for each of the different AvrM variants. We further characterize this interaction by demonstrating that the C-terminal domain of AvrM is required for M-dependent cell death, and show that this domain also interacts with the M protein in yeast. We investigate the role of C-terminal differences among the different AvrM proteins for their involvement in this interaction and establish that M recognition is hindered by an additional 34 amino acids present at the C terminus of several AvrM variants. Structural characterization of recombinant AvrM-A protein revealed a globular C-terminal domain that dimerizes.
在植物免疫中,植物抗性蛋白识别病原体效应子会导致植物防御的激活和局部细胞死亡反应。亚麻锈菌的 AvrM 效应子是一种小的分泌蛋白,被亚麻中的 M 抗性蛋白识别。在这里,我们研究了 M-AvrM 识别的机制,并表明这两种蛋白在酵母双杂交测定中直接相互作用,并且这种相互作用与观察到的每种不同 AvrM 变体的识别特异性相关。我们通过证明 AvrM 的 C 末端结构域对于 M 依赖性细胞死亡是必需的,进一步表征了这种相互作用,并表明该结构域也在酵母中与 M 蛋白相互作用。我们研究了不同 AvrM 蛋白的 C 末端差异在其参与这种相互作用中的作用,并确定 M 识别受到几种 AvrM 变体 C 末端存在的另外 34 个氨基酸的阻碍。对重组 AvrM-A 蛋白的结构特征分析揭示了一个球形的 C 末端结构域,该结构域形成二聚体。