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首页> 外文期刊>Frontiers in Microbiology >Altered Mycobacterium tuberculosis Cell Wall Metabolism and Physiology Associated With RpoB Mutation H526D
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Altered Mycobacterium tuberculosis Cell Wall Metabolism and Physiology Associated With RpoB Mutation H526D

机译:与RpoB突变H526D相关的结核分枝杆菌细胞壁代谢和生理变化

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Background: Mycobacterium tuberculosis (Mtb) rpoB mutations are associated with global metabolic remodeling. However, the net effects of rpoB mutations on Mtb physiology, metabolism and function are not completely understood. Based on previous work, we hypothesized that changes in the expression of cell wall molecules in Mtb mutant RpoB 526D lead to changes in cell wall permeability and to altered resistance to environmental stresses and drugs. Methods: The phenotypes of a fully drug-susceptible clinical strain of Mtb and its paired rifampin-monoresistant, RpoB H526D mutant progeny strain were compared. Results: The rpoB mutant showed altered colony morphology, bacillary length and cell wall thickness, which were associated with increased cell wall permeability and susceptibility to the cell wall detergent sodium dodecyl sulfate (SDS) after exposure to nutrient starvation. Relative to the isogenic rifampin-susceptible strain, the RpoB H526D mutant showed altered bacterial cellular metabolic activity and an eightfold increase in susceptibility to the cell-wall acting drug vancomycin. Conclusion: Our data suggest that RpoB mutation H526D is associated with altered cell wall physiology and resistance to cell wall-related stress. These findings are expected to contribute to an improved understanding of the pathogenesis of drug-resistant M. tuberculosis infections.
机译:背景:结核分枝杆菌(Mtb)rpoB突变与整体代谢重塑有关。但是,rpoB突变对Mtb生理,代谢和功能的净影响尚不完全清楚。根据以前的工作,我们假设Mtb突变体RpoB 526D中细胞壁分子表达的变化会导致细胞壁通透性的变化以及对环境压力和药物的抗性改变。方法:比较完全耐药的Mtb临床菌株及其配对的利福平单抗RpoB H526D突变后代菌株的表型。结果:rpoB突变体表现出改变的菌落形态,细菌长度和细胞壁厚度,这与增加的细胞壁通透性和暴露于营养饥饿后对细胞壁去污剂十二烷基硫酸钠(SDS)的敏感性有关。相对于同基因的利福平敏感性菌株,RpoB H526D突变体显示细菌细胞代谢活性发生改变,并且对细胞壁作用药物万古霉素的敏感性增加了八倍。结论:我们的数据表明RpoB突变H526D与细胞壁生理改变和对细胞壁相关应激的抗性有关。这些发现有望有助于对耐药性结核分枝杆菌感染的发病机理有更深入的了解。

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