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Deletion of Two-Component Regulatory Systems Increases the Virulence of Mycobacterium tuberculosis

机译:删除两部分调节系统会增加结核分枝杆菌的毒力

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Two-component regulatory signal transduction systems are widely distributed among bacteria and enable the organisms to make coordinated changes in gene expression in response to a variety of environmental stimuli. The genome sequence of Mycobacterium tuberculosis contains 11 complete two-component systems, four isolated homologous regulators, and three isolated homologous sensors. We have constructed defined mutations in six of these genes and measured virulence in a SCID mouse model. Mice infected with four of the mutants (deletions of devR, tcrXY, trcS, and kdpDE) died more rapidly than those infected with wild-type bacteria. The other two mutants (narL and Rv3220c) showed no change compared to the wild-type H37Rv strain. The most hypervirulent mutant (devRΔ) also grew more rapidly in the acute stage of infection in immunocompetent mice and in gamma interferon-activated macrophages. These results define a novel class of genes in this pathogen whose presence slows down its multiplication in vivo or increases its susceptibility to host killing mechanisms. Thus, M. tuberculosis actively maintains a balance between its own survival and that of the host.
机译:两组分调节信号转导系统广泛分布于细菌之间,使生物能够响应各种环境刺激而在基因表达中进行协调一致的改变。结核分枝杆菌的基因组序列包含11个完整的两组分系统,四个分离的同源调节子和三个分离的同源传感器。我们已经在其中的六个基因中构建了定义的突变,并在SCID小鼠模型中测量了毒力。被四个突变体( devR tcrXY trcS kdpDE 缺失)感染的小鼠死亡更快比那些感染了野生型细菌的人要多。与野生型H37Rv菌株相比,其他两个突变体( narL Rv3220c )没有变化。最强毒的突变体( devR Δ)在具有免疫能力的小鼠和伽马干扰素激活的巨噬细胞中,在感染的急性阶段也生长更快。这些结果定义了该病原体中的一类新型基因,其存在减慢了其在体内的增殖或增加了其对宿主杀伤机制的敏感性。因此, M。结核病积极地在自身生存和宿主生存之间保持平衡。

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