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Strains of the East Asian (W/Beijing) Lineage of Mycobacterium tuberculosis Are DosS/DosT-DosR Two-Component Regulatory System Natural Mutants▿ †

机译:结核分枝杆菌的东亚(W /北京)谱系菌株是DosS / DosT-DosR两组分调节系统天然突变体▿†

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摘要

As part of our ongoing efforts to uncover the phenotypic consequences of genetic variability among clinical Mycobacterium tuberculosis isolates, we previously reported that isolates of the “East Asian” or “W/Beijing” lineage constitutively overexpress the coordinately regulated transcriptional program known as the DosR regulon under standard in vitro conditions. This phenotype distinguishes the W/Beijing lineage from all other M. tuberculosis lineages, which normally induce expression of this regulon only once exposed to low oxygen or nitric oxide, both of which result in inhibition of bacterial respiration and replication. Transcription of the DosR regulon is controlled through a two-component regulatory system comprising the transcription factor DosR and two possible cognate histidine sensor kinases, DosS and DosT. Through sequence analysis of a carefully selected set of isolates representing each of the major M. tuberculosis lineages, we describe herein a naturally occurring frameshift mutation in the gene encoding the DosT sensor kinase for isolates of the most recently evolved W/Beijing sublineages. Intriguingly, the occurrence of the frameshift mutation correlates precisely with the appearance of the constitutive DosR regulon phenotype displayed by the same “modern” W/Beijing strains. However, complementation studies have revealed that the mutation in dosT alone is not directly responsible for the constitutive DosR regulon phenotype. Our data serve to highlight the evolutionary pressure that exists among distinct M. tuberculosis lineages to maintain tight control over DosR regulon expression.
机译:作为我们为揭示临床结核分枝杆菌分离株遗传变异的表型后果而进行的持续努力的一部分,我们先前曾报道“东亚”或“ W / Beijing”谱系的分离株组成性地过表达被称为DosR regulon的协调调控的转录程序在标准体外条件下。此表型将W / Beijing谱系与所有其他结核分枝杆菌谱系区分开来,后者通常仅在暴露于低氧或一氧化氮后才诱导该regulon的表达,这两者均会抑制细菌呼吸和复制。 DosR调节子的转录通过包含转录因子DosR和两种可能的同源组氨酸传感器激酶DosS和DosT的两组分调节系统进行控制。通过对代表每个主要结核分枝杆菌谱系的一组精心挑选的分离株进行序列分析,我们在本文中描述了编码DosT传感器激酶的基因中自然发生的移码突变,用于最近进化的W / Beijing亚谱系的分离株。有趣的是,移码突变的发生与由相同的“现代” W / Beijing菌株显示的本构DosR regulon表型的出现密切相关。但是,补充研究表明,仅dosT中的突变并不直接构成组成性DosR regulon表型。我们的数据有助于突出不同结核分枝杆菌谱系之间存在的进化压力,以维持对DosR调节子表达的严格控制。

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