首页> 美国卫生研究院文献>Journal of Bacteriology >Essential Role for the Response Regulator PmrA in Coxiella burnetii Type 4B Secretion and Colonization of Mammalian Host Cells
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Essential Role for the Response Regulator PmrA in Coxiella burnetii Type 4B Secretion and Colonization of Mammalian Host Cells

机译:反应调节器PmrA在伯氏Coxiella 4B型分泌和哺乳动物宿主细胞定殖中的重要作用。

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摘要

Successful host cell colonization by the Q fever pathogen, Coxiella burnetii, requires translocation of effector proteins into the host cytosol by a Dot/Icm type 4B secretion system (T4BSS). In Legionella pneumophila, the two-component system (TCS) PmrAB regulates the Dot/Icm T4BSS and several additional physiological processes associated with pathogenesis. Because PmrA consensus regulatory elements are associated with some dot/icm and substrate genes, a similar role for PmrA in regulation of the C. burnetii T4BSS has been proposed. Here, we constructed a C. burnetii pmrA deletion mutant to directly probe PmrA-mediated gene regulation. Compared to wild-type bacteria, C. burnetii ΔpmrA exhibited severe intracellular growth defects that coincided with failed secretion of effector proteins. Luciferase gene reporter assays demonstrated PmrA-dependent expression of 5 of 7 dot/icm operons and 9 of 11 effector-encoding genes with a predicted upstream PmrA regulatory element. Mutational analysis verified consensus sequence nucleotides required for PmrA-directed transcription. RNA sequencing and whole bacterial cell mass spectrometry of wild-type C. burnetii and the ΔpmrA mutant uncovered new components of the PmrA regulon, including several genes lacking PmrA motifs that encoded Dot/Icm substrates. Collectively, our results indicate that the PmrAB TCS is a critical virulence factor that regulates C. burnetii Dot/Icm secretion. The presence of PmrA-responsive genes lacking PmrA regulatory elements also suggests that the PmrAB TCS controls expression of regulatory systems associated with the production of additional C. burnetii proteins involved in host cell parasitism.
机译:Q发热病原体Coxiella burnetii成功地定植宿主细胞,需要通过Dot / Icm 4B型分泌系统(T4BSS)将效应子蛋白转移到宿主细胞质中。在嗜肺军团菌中,两组分系统(TCS)PmrAB调节Dot / Icm T4BSS以及与发病机理相关的一些其他生理过程。由于PmrA共有的调控元件与一些点/ icm和底物基因相关,因此提出了PmrA在伯氏梭菌T4BSS调控中的类似作用。在这里,我们构建了一个伯氏梭菌pmrA缺失突变体,以直接探测PmrA介导的基因调控。与野生型细菌相比,伯氏梭菌ΔpmrA表现出严重的细胞内生长缺陷,与效应蛋白的分泌失败相吻合。萤光素酶基因报告基因检测法证实了PmrA依赖性表达的7个点/ icm操纵子中的5个和11个效应子编码基因中的9个具有预测的上游PmrA调控元件。突变分析验证了PmrA定向转录所需的共有序列核苷酸。野生型伯氏梭菌和ΔpmrA突变体的RNA测序和全细菌细胞质谱分析揭示了PmrA调节子的新成分,包括缺少编码Dot / Icm底物的PmrA模体的几个基因。总体而言,我们的结果表明PmrAB TCS是调节伯氏梭菌Dot / Icm分泌的关键毒力因子。缺乏PmrA调控元件的PmrA响应基因的存在还表明,PmrAB TCS控制与宿主细胞寄生性寄生虫其他产梭状芽胞杆菌蛋白的产生相关的调控系统的表达。

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