Kvitko Brian H, Ramos Adela R, Morello Joanne E, Oh Hye-Sook, Collmer Alan
Department of Plant Pathology, Cornell University, Ithaca, NY 14853, USA.
J Bacteriol. 2007 Nov;189(22):8059-72. doi: 10.1128/JB.01146-07. Epub 2007 Sep 14.
Harpins are a subset of type III secretion system (T3SS) substrates found in all phytopathogenic bacteria that utilize a T3SS. Pseudomonas syringae pv. tomato DC3000 was previously reported to produce two harpins, HrpZ1 and HrpW1. DC3000 was shown here to deploy two additional proteins, HopAK1 and HopP1, which have the harpin-like properties of lacking cysteine, eliciting the hypersensitive response (HR) when partially purified and infiltrated into tobacco leaves, and possessing a two-domain structure similar to that of the HrpW1 class of harpins. Unlike the single-domain harpin HrpZ1, the two-domain harpins have C-terminal enzyme-like domains: pectate lyase for HopAK1 and lytic transglycosylase for HopP1. Genetic techniques to recycle antibiotic markers were applied to DC3000 to generate a quadruple harpin gene polymutant. The polymutant was moderately reduced in the elicitation of the HR and translocation of the T3SS effector AvrPto1 fused to a Cya translocation reporter, but the mutant was unaffected in the secretion of AvrPto1-Cya. The DC3000 hrpK1 gene encodes a putative translocator in the HrpF/NopX family and was deleted in combination with the four harpin genes. The hrpK1 quadruple harpin gene polymutant was strongly reduced in HR elicitation, virulence, and translocation of AvrPto1-Cya into plant cells but not in the secretion of representative T3SS substrates in culture. HrpK1, HrpZ1, HrpW1, and HopAK1, but not HopP1, were independently capable of restoring some HR elicitation to the hrpK1 quadruple harpin gene polymutant, which suggests that a consortium of semiredundant translocators from three protein classes cooperate to form the P. syringae T3SS translocon.
过敏反应激发蛋白是III型分泌系统(T3SS)底物的一个子集,存在于所有利用T3SS的植物致病细菌中。先前报道称,丁香假单胞菌番茄致病变种DC3000能产生两种过敏反应激发蛋白,即HrpZ1和HrpW1。本文研究表明,DC3000还能分泌另外两种蛋白,HopAK1和HopP1,它们具有类似过敏反应激发蛋白的特性,即不含半胱氨酸,部分纯化后浸润到烟草叶片中可引发超敏反应(HR),并且具有与HrpW1类过敏反应激发蛋白相似的双结构域结构。与单结构域过敏反应激发蛋白HrpZ1不同,双结构域过敏反应激发蛋白具有C端类似酶的结构域:HopAK1的果胶酸裂解酶结构域和HopP1的溶菌转糖基酶结构域。运用回收抗生素标记的基因技术构建了DC三千的四重过敏反应激发蛋白基因多突变体。该多突变体在引发HR以及与Cya易位报告基因融合的T3SS效应蛋白AvrPto1的易位方面略有降低,但AvrPto1-Cya的分泌不受影响。DC3000的hrpK1基因编码一种假定的HrpF/NopX家族转运蛋白,并与四个过敏反应激发蛋白基因一起被删除。hrpK1四重过敏反应激发蛋白基因多突变体在HR激发、毒力以及AvrPto1-Cya易位到植物细胞中的能力方面大幅降低,但在培养物中代表性T3SS底物的分泌方面没有变化。HrpK1、HrpZ1、HrpW1和HopAK1,但不包括HopP1,能够独立地使hrpK1四重过敏反应激发蛋白基因多突变体恢复一些HR激发能力,这表明来自三类蛋白质的一组半冗余转运蛋白协同作用形成了丁香假单胞菌的T3SS转运体。