Sabol Peter, Kulich Ivan, Žárský Viktor
Charles University in Prague, Vinicná 5, Prague, Czech Republic.
Charles University in Prague, Viničná 5, Prague, Czech Republic.
J Exp Bot. 2017 Jun 1;68(12):3253-3265. doi: 10.1093/jxb/erx007.
The exocyst is a conserved vesicle-tethering complex with principal roles in cell polarity and morphogenesis. Several studies point to its involvement in polarized secretion during microbial pathogen defense. In this context, we have found an interaction between the Arabidopsis EXO70B1 exocyst subunit, a protein which was previously associated with both the defense response and autophagy, and RPM1 INTERACTING PROTEIN 4 (RIN4), the best studied member of the NOI protein family and a known regulator of plant defense pathways. Interestingly, fragments of RIN4 mimicking the cleavage caused by the Pseudomonas syringae effector protease, AvrRpt2, fail to interact strongly with EXO70B1. We observed that transiently expressed RIN4, but not the plasma membrane (PM) protein aquaporin PIP2, recruits EXO70B1 to the PM. Unlike EXO70B1, RIN4 does not recruit the core exocyst subunit SEC6 to the PM under these conditions. Furthermore, the AvrRpt2 effector protease delivered by P. syringae is able to release both RIN4 and EXO70B1 to the cytoplasm. We present a model for how RIN4 might regulate the localization and putative function of EXO70B1 and speculate on the role the AvrRpt2 protease might have in the regulation of this defense response.
外泌体复合体是一种保守的囊泡拴系复合体,在细胞极性和形态发生中起主要作用。多项研究表明其参与了微生物病原体防御过程中的极性分泌。在此背景下,我们发现拟南芥EXO70B1外泌体亚基(一种先前与防御反应和自噬均有关联的蛋白质)与RPM1相互作用蛋白4(RIN4)之间存在相互作用,RIN4是NOI蛋白家族中研究最为深入的成员,也是植物防御途径的已知调节因子。有趣的是,模拟丁香假单胞菌效应蛋白酶AvrRpt2引起的切割的RIN4片段,与EXO70B1的相互作用并不强烈。我们观察到,瞬时表达的RIN4而非质膜(PM)蛋白水通道蛋白PIP2,可将EXO70B1招募至质膜。与EXO70B1不同,在这些条件下RIN4不会将核心外泌体亚基SEC6招募至质膜。此外,丁香假单胞菌递送的AvrRpt2效应蛋白酶能够将RIN4和EXO70B1释放至细胞质中。我们提出了一个关于RIN4可能如何调节EXO70B1的定位和假定功能的模型,并推测了AvrRpt2蛋白酶在这种防御反应调节中可能发挥的作用。