Wang Jing, Qu Baoyuan, Dou Shijuan, Li Liyun, Yin Dedong, Pang Zhiqian, Zhou Zhuangzhi, Tian Miaomiao, Liu Guozhen, Xie Qi, Tang Dingzhong, Chen Xuewei, Zhu Lihuang
BMC Plant Biol. 2015 Feb 13;15:49. doi: 10.1186/s12870-015-0442-4.
Rice blast disease is one of the most destructive diseases of rice worldwide. We previously cloned the rice blast resistance gene Pid2, which encodes a transmembrane receptor-like kinase containing an extracellular B-lectin domain and an intracellular serine/threonine kinase domain. However, little is known about Pid2-mediated signaling.
Here we report the functional characterization of the U-box/ARM repeat protein OsPUB15 as one of the PID2-binding proteins. We found that OsPUB15 physically interacted with the kinase domain of PID2 (PID2K) in vitro and in vivo and the ARM repeat domain of OsPUB15 was essential for the interaction. In vitro biochemical assays indicated that PID2K possessed kinase activity and was able to phosphorylate OsPUB15. We also found that the phosphorylated form of OsPUB15 possessed E3 ligase activity. Expression pattern analyses revealed that OsPUB15 was constitutively expressed and its encoded protein OsPUB15 was localized in cytosol. Transgenic rice plants over-expressing OsPUB15 at early stage displayed cell death lesions spontaneously in association with a constitutive activation of plant basal defense responses, including excessive accumulation of hydrogen peroxide, up-regulated expression of pathogenesis-related genes and enhanced resistance to blast strains. We also observed that, along with plant growth, the cell death lesions kept spreading over the whole seedlings quickly resulting in a seedling lethal phenotype.
These results reveal that the E3 ligase OsPUB15 interacts directly with the receptor-like kinase PID2 and regulates plant cell death and blast disease resistance.
稻瘟病是全球最具破坏性的水稻病害之一。我们之前克隆了水稻抗稻瘟病基因Pid2,它编码一种跨膜受体样激酶,包含一个细胞外B-凝集素结构域和一个细胞内丝氨酸/苏氨酸激酶结构域。然而,关于Pid2介导的信号传导知之甚少。
在此我们报道了U-box/ARM重复蛋白OsPUB15作为PID2结合蛋白之一的功能特性。我们发现OsPUB15在体外和体内都与PID2的激酶结构域(PID2K)发生物理相互作用,且OsPUB15的ARM重复结构域对于这种相互作用至关重要。体外生化分析表明PID2K具有激酶活性,并且能够磷酸化OsPUB15。我们还发现磷酸化形式的OsPUB15具有E3连接酶活性。表达模式分析显示OsPUB15组成型表达,其编码的蛋白OsPUB15定位于细胞质中。早期过表达OsPUB15的转基因水稻植株自发地表现出细胞死亡损伤,同时伴随着植物基础防御反应的组成型激活,包括过氧化氢的过度积累、病程相关基因的上调表达以及对稻瘟病菌株抗性的增强。我们还观察到,随着植物生长,细胞死亡损伤迅速在整个幼苗上扩散,导致幼苗致死表型。
这些结果表明E3连接酶OsPUB15直接与受体样激酶PID2相互作用,并调节植物细胞死亡和稻瘟病抗性。