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Lvr a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira

机译:Lvr一种信号系统可控制致病性钩端螺旋体中的全球基因调控和毒力

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摘要

Leptospirosis is an emerging zoonotic disease with more than 1 million cases annually. Currently there is lack of evidence for signaling pathways involved during the infection process of Leptospira. In our comprehensive genomic analysis of 20 Leptospira spp. we identified seven pathogen-specific Two-Component System (TCS) proteins. Disruption of two these TCS genes in pathogenic Leptospira strain resulted in loss-of-virulence in a hamster model of leptospirosis. Corresponding genes lvrA and lvrB (leptospira virulence regulator) are juxtaposed in an operon and are predicted to encode a hybrid histidine kinase and a hybrid response regulator, respectively. Transcriptome analysis of lvr mutant strains with disruption of one (lvrB) or both genes (lvrA/B) revealed global transcriptional regulation of 850 differentially expressed genes. Phosphotransfer assays demonstrated that LvrA phosphorylates LvrB and predicted further signaling downstream to one or more DNA-binding response regulators, suggesting that it is a branched pathway. Phylogenetic analyses indicated that lvrA and lvrB evolved independently within different ecological lineages in Leptospira via gene duplication. This study uncovers a novel-signaling pathway that regulates virulence in pathogenic Leptospira (Lvr), providing a framework to understand the molecular bases of regulation in this life-threatening bacterium.
机译:钩端螺旋体病是一种新兴的人畜共患病,每年有超过一百万例。当前,在钩端螺旋体感染过程中缺乏有关信号通路的证据。在我们对20株钩端螺旋体的全面基因组分析中。我们鉴定了七个病原体特异性两组分系统(TCS)蛋白。致病性钩端螺旋体菌株中的这两个TCS基因的破坏导致钩端螺旋体病的仓鼠模型丧失毒力。相应的基因lvrA和lvrB(钩端螺旋体毒力调节剂)在操纵子中并置,并预计分别编码杂合组氨酸激酶和杂合响应调节剂。具有一个(lvrB)或两个基因(lvrA / B)破坏的lvr突变株的转录组分析显示了850个差异表达基因的全局转录调控。磷酸转移分析表明,LvrA使LvrB磷酸化,并预测下游向一个或多个DNA结合反应调节剂的进一步信号传导,表明这是一条分支途径。系统发育分析表明,lvrA和lvrB通过基因复制在钩端螺旋体的不同生态谱系中独立进化。这项研究揭示了一种调节致病性钩端螺旋体(Lvr)中毒力的新型信号通路,为了解这种威胁生命的细菌的调节分子基础提供了框架。

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