School of Environmental Sciences, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
Plant Sci. 2011 Aug;181(2):177-87. doi: 10.1016/j.plantsci.2011.05.004. Epub 2011 May 17.
Motif analysis among 30 EH1 and EH2 epoxide hydrolases from Solanaceaeous plants showed differences primarily in the lid region around the catalytic site. Based on in silico models of 3D structures, EH1 proteins lack a catalytic triad because of the orientation of one of the conserved lid tyrosines, while the orientation of that tyrosine in EH2 proteins fomed a catalytic triad inside a hydrophobic tunnel. Two similar EH2 protein genes from Nicotiana benthamiana, NbEH2.1 and NbEH2.2, have a predicted peroxisomal targeting sequence, catalytic triad, and structural similarities to a potato cutin monomer-synthesizing epoxide hydrolase. NbEH2.1 expression increased with infections by the hemibiotrophs, Colletotrichum destructivum, Colletotrichum orbiculare or Pseudomonas syringae pv. tabaci only during their biotrophic phases, while there was only a slight increase during the hypersensitive response to P. syringae pv. tabaci (avrPto). In contrast, among the four pathogens, NbEH2.2 expression increased only in response to P. syringae pv. tabaci. Virus-induced gene silencing of NbEH2.1 significantly affected only the interaction with C. destructivum, resulting in a delay in the appearance of necrosis that may be related to its biotrophic phase being restricted to single epidermal cells, which is unique among these pathogens. These results differed from that of a previously reported EH1 gene of N. benthamiana for these interactions, demonstrating specialization among EH genes in basal resistance.
对茄科植物中 30 种 EH1 和 EH2 环氧化物水解酶的模体分析表明,主要差异存在于催化部位周围的盖子区域。基于 3D 结构的计算机模型,EH1 蛋白由于保守盖子酪氨酸之一的取向而缺乏催化三联体,而 EH2 蛋白中该酪氨酸的取向在疏水隧道内形成了催化三联体。来自 Nicotiana benthamiana 的两个相似的 EH2 蛋白基因,NbEH2.1 和 NbEH2.2,具有预测的过氧化物酶体靶向序列、催化三联体和与马铃薯角质单体合成环氧化物水解酶的结构相似性。NbEH2.1 的表达随着半活体病原体炭疽菌、Colletotrichum orbiculare 或丁香假单胞菌 pv. tabaci 的侵染而增加,仅在其生物阶段,而在对丁香假单胞菌 pv. tabaci (avrPto) 的过敏反应中仅略有增加。相比之下,在这四种病原体中,NbEH2.2 的表达仅响应于丁香假单胞菌 pv. tabaci。NbEH2.1 的病毒诱导基因沉默显著仅影响与 C. destructivum 的相互作用,导致坏死的出现延迟,这可能与其生物阶段仅限于单个表皮细胞有关,这在这些病原体中是独特的。这些结果与先前报道的 N. benthamiana 的 EH1 基因在这些相互作用中的结果不同,表明 EH 基因在基础抗性中具有专业化。