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Identifying Pseudomonas syringae Type III Secreted Effector Function via a Yeast Genomic Screen

机译:通过酵母基因组筛选鉴定丁香假单胞菌III型分泌的效应子功能

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摘要

Gram-negative bacterial pathogens inject type III secreted effectors (T3SEs) directly into host cells to promote pathogen fitness by manipulating host cellular processes. Despite their crucial role in promoting virulence, relatively few T3SEs have well-characterized enzymatic activities or host targets. This is in part due to functional redundancy within pathogen T3SE repertoires as well as the promiscuity of individual T3SEs that can have multiple host targets. To overcome these challenges, we generated and characterized a collection of yeast strains stably expressing 75 T3SE constructs from the plant pathogen Pseudomonas syringae. This collection is devised to facilitate heterologous genetic screens in yeast, a non-host organism, to identify T3SEs that target conserved eukaryotic processes. Among 75 T3SEs tested, we identified 16 that inhibited yeast growth on rich media and eight that inhibited growth on stress-inducing media. We utilized Pathogenic Genetic Array (PGA) screens to identify potential host targets of P. syringae T3SEs. We focused on the acetyltransferase, HopZ1a, which interacts with plant tubulin and alters microtubule networks. To uncover putative HopZ1a host targets, we identified yeast genes with genetic interaction profiles most similar (i.e., congruent) to the PGA profile of HopZ1a and performed a functional enrichment analysis of these HopZ1a-congruent genes. We compared the congruence analyses above to previously described HopZ physical interaction datasets and identified kinesins as potential HopZ1a targets. Finally, we demonstrated that HopZ1a can target kinesins by acetylating the plant kinesins HINKEL and MKRP1, illustrating the utility of our T3SE-expressing yeast library to characterize T3SE functions.
机译:革兰氏阴性细菌病原体直接将III型分泌效应物(T3SE)注入宿主细胞,以通过操纵宿主细胞过程促进病原体适应性。尽管它们在促进毒力中起着至关重要的作用,但相对来说,很少有具有良好特征的酶促活性或宿主靶标的T3SE。这部分是由于病原体T3SE库中的功能冗余,以及可能具有多个宿主目标的单个T3SE的混杂。为了克服这些挑战,我们从植物病原体丁香假单胞菌中稳定表达了75种T3SE构建体,并对其进行了表征。该集合旨在促进酵母(一种非宿主生物)中的异源基因筛选,以鉴定靶向保守的真核生物过程的T3SE。在测试的75种T3SE中,我们鉴定出16种在丰富培养基上抑制酵母生长,而八种在压力诱导培养基上抑制酵母生长。我们利用致病基因阵列(PGA)筛查来确定丁香假单胞菌T3SEs的潜在宿主靶标。我们专注于乙酰转移酶HopZ1a,它与植物微管蛋白相互作用并改变微管网络。为了发现推定的HopZ1a宿主靶标,我们鉴定了具有与HopZ1a的PGA谱最相似(即一致)的遗传相互作用谱的酵母基因,并对这些HopZ1a一致的基因进行了功能富集分析。我们将上述一致性分析与先前描述的HopZ物理相互作用数据集进行了比较,并将驱动蛋白确定为潜在的HopZ1a目标。最后,我们证明了HopZ1a可以通过乙酰化植物驱动蛋白HINKEL和MKRP1来靶向驱动蛋白,从而说明表达T3SE的酵母文库表征T3SE功能的实用性。

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