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Differential secretome analysis of Pseudomonas syringae pv tomato using gel-free MS proteomics

机译:无凝胶MS蛋白质组学分析丁香假单胞菌PV番茄的差异分泌组

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摘要

The plant pathogen Pseudomonas syringae pv.tomato (DC3000) causes virulence by delivering effector proteins into host plant cells through its type three secretion system (T3SS). In response to the plant environment DC3000 expresses hypersensitive response and pathogenicity genes (hrp). Pathogenesis depends on the ability of the pathogen to manipulate the plant metabolism and to inhibit plant immunity, which depends to a large degree on the plant's capacity to recognize both pathogen and microbial determinants (PAMP/MAMP-triggered immunity). We have developed and employed MS-based shotgun and targeted proteomics to (i) elucidate the extracellular and secretome composition of DC3000 and (ii) evaluate temporal features of the assembly of the T3SS and the secretion process together with its dependence of pH. The proteomic screen, under hrp inducing in vitro conditions, of extracellular and cytoplasmatic fractions indicated the segregated presence of not only T3SS implicated proteins such as HopP1, HrpK1, HrpA1 and AvrPto1, but also of proteins not usually associated with the T3SS or with pathogenicity. Using multiple reaction monitoring MS (MRM-MS) to quantify HrpA1 and AvrPto1, we found that HrpA1 is rapidly expressed, at a strict pH-dependent rate and is post-translationally processed extracellularly. These features appear to not interfere with rapid AvrPto1 expression and secretion but may suggest some temporal post-translational regulatory mechanism of the T3SS assembly. The high specificity and sensitivity of the MRM-MS approach should provide a powerful tool to measure secretion and translocation in infected tissues.
机译:植物病原体丁香假单胞菌番茄(DC3000)通过其三型分泌系统(T3SS)将效应子蛋白传递到宿主植物细胞中而引起毒力。响应植物环境,DC3000表达超敏反应和致病性基因(hrp)。发病机理取决于病原体操纵植物代谢和抑制植物免疫力的能力,这在很大程度上取决于植物识别病原体和微生物决定因素的能力(PAMP / MAMP触发的免疫力)。我们已经开发并使用了基于MS的shot弹枪和靶向蛋白质组学,以(i)阐明DC3000的细胞外和分泌组组成,(ii)评估T3SS组装的时间特征和分泌过程以及其对pH的依赖性。在体外hrp诱导条件下的蛋白质组学筛查表明,不仅存在与T3SS有关的蛋白(如HopP1,HrpK1,HrpA1和AvrPto1),而且还与通常与T3SS不相关或没有致病性的蛋白分开存在。使用多个反应监测质谱仪(MRM-MS)量化HrpA1和AvrPto1,我们发现HrpA1以严格的pH依赖性速率快速表达,并在细胞外进行翻译后加工。这些功能似乎不会干扰AvrPto1的快速表达和分泌,但可能暗示了T3SS组件的某些翻译后调控机制。 MRM-MS方法的高度特异性和敏感性应提供一个强大的工具来测量感染组织中的分泌和转运。

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