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A Functional Genomic Yeast Screen to Identify Pathogenic Bacterial Proteins

机译:功能基因组酵母筛选以鉴定致病性细菌蛋白。

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摘要

Many bacterial pathogens promote infection and cause disease by directly injecting into host cells proteins that manipulate eukaryotic cellular processes. Identification of these translocated proteins is essential to understanding pathogenesis. Yet, their identification remains limited. This, in part, is due to their general sequence uniqueness, which confounds homology-based identification by comparative genomic methods. In addition, their absence often does not result in phenotypes in virulence assays limiting functional genetic screens. Translocated proteins have been observed to confer toxic phenotypes when expressed in the yeast Saccharomyces cerevisiae. This observation suggests that yeast growth inhibition can be used as an indicator of protein translocation in functional genomic screens. However, limited information is available regarding the behavior of non-translocated proteins in yeast. We developed a semi-automated quantitative assay to monitor the growth of hundreds of yeast strains in parallel. We observed that expression of half of the 19 Shigella translocated proteins tested but almost none of the 20 non-translocated Shigella proteins nor ∼1,000 Francisella tularensis proteins significantly inhibited yeast growth. Not only does this study establish that yeast growth inhibition is a sensitive and specific indicator of translocated proteins, but we also identified a new substrate of the Shigella type III secretion system (TTSS), IpaJ, previously missed by other experimental approaches. In those cases where the mechanisms of action of the translocated proteins are known, significant yeast growth inhibition correlated with the targeting of conserved cellular processes. By providing positive rather than negative indication of activity our assay complements existing approaches for identification of translocated proteins. In addition, because this assay only requires genomic DNA it is particularly valuable for studying pathogens that are difficult to genetically manipulate or dangerous to culture.
机译:许多细菌性病原体通过直接将操纵真核细胞过程的蛋白质注射到宿主细胞中来促进感染并引起疾病。这些易位蛋白的鉴定对于理解发病机理至关重要。然而,他们的身份仍然有限。这部分是由于它们的一般序列唯一性,这混淆了通过比较基因组方法进行基于同源性的鉴定。此外,它们的缺失通常不会在毒性试验中产生表型,从而限制了功能基因筛选。当在酿酒酵母中表达时,已观察到易位蛋白具有毒性表型。该观察结果表明,酵母生长抑制可以用作功能基因组筛选中蛋白质易位的指标。但是,关于酵母中非易位蛋白的行为的信息有限。我们开发了一种半自动化的定量测定法,以并行监测数百种酵母菌株的生长。我们观察到测试的19种志贺氏菌易位蛋白中有一半的表达,但20种未移位的志贺氏菌蛋白和约1000弗朗西斯菌中的几乎没有表达能显着抑制酵母的生长。这项研究不仅确定酵母生长抑制是易位蛋白的敏感和特异性指标,而且我们还鉴定了志贺氏菌III型分泌系统(TTSS)IpaJ的新底物,以前其他实验方法都没有。在已知易位蛋白作用机制的情况下,明显的酵母生长抑制作用与靶向保守细胞过程有关。通过提供阳性而不是阴性的活性指示,我们的测定法补充了现有的鉴定易位蛋白的方法。另外,由于该测定仅需要基因组DNA,因此对于研究难以遗传操纵或培养危险的病原体特别有价值。

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