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Transcriptional Approach for Decoding the Mechanism of rpoC Compensatory Mutations for the Fitness Cost in Rifampicin-Resistant Mycobacterium tuberculosis

机译:转录途径解码抗利福平结核分枝杆菌适应性费用的rpoC补偿突变的机制

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摘要

Multidrug-resistant tuberculosis (TB), defined as TB resistant to the two first-line drugs, isoniazid and rifampin, is a serious challenge to global TB eradication efforts. Although mutations in rpoA or rpoC have been proposed to compensate for this fitness cost due to rpoB mutation in rifampicin-resistant Mycobacterium tuberculosis mutants, whether the compensatory effect exists and the underlying mechanisms of compensation remain unclear. Here, we used RNA sequencing to investigate the global transcriptional profiles of 6 rifampin-resistant clinical isolates with either single mutation in rpoB or dual mutations in rpoB/rpoC, as well as 3 rifampin-susceptible clinical isolates, trying to prove the potential compensatory effect of rpoC by transcriptomic alteration. In rifampin-free conditions, rpoC mutation was associated with M. tuberculosis upregulation of ribosomal protein-coding genes, dysregulation of growth-related essential genes and balancing the expression of arginine and glutamate synthesis-associated genes. Upon rifampin exposure of M. tuberculosis isolates, rpoC mutations were associated with the upregulation of the oxidative phosphorylation machinery, which was inhibited in the rpoB single mutants, as well as stabilization of the expression of rifampin-regulated essential genes and balancing the expression of genes involved in metabolism of sulfur-containing amino acids. Taken together, our data suggest that rpoC mutation may compensate for the fitness defect of rifampicin-resistant M. tuberculosis by altering gene expression in response to rifampin exposure.
机译:耐多药结核病(TB)被定义为对两种一线药物异烟肼和利福平具有耐药性的结核病,对全球根除结核病的努力构成了严峻挑战。尽管由于耐利福平结核分枝杆菌突变体中的rpoB突变而提出rpoA或rpoC突变来补偿这种适应性费用,但是是否存在补偿作用和潜在的补偿机制尚不清楚。在这里,我们使用RNA测序来研究6种具有rpoB单突变或rpoB / rpoC双突变的耐利福平临床分离株的全局转录谱,以及3种对利福平敏感的临床分离株,试图证明其潜在的补偿作用转录组改变对rpoC的影响。在不含利福平的条件下,rpoC突变与结核分枝杆菌的核糖体蛋白编码基因上调,生长相关必需基因的失调以及精氨酸和谷氨酸合成相关基因的表达平衡有关。结核分枝杆菌分离株的利福平暴露后,rpoC突变与氧化磷酸化机制的上调相关,而该氧化磷酸化机制在rpoB单个突变体中受到抑制,并且稳定了利福平调节的必需基因的表达并平衡了基因的表达参与含硫氨基酸的代谢。两者合计,我们的数据表明rpoC突变可能通过响应于利福平暴露而改变基因表达来弥补耐利福平结核分枝杆菌的适应性缺陷。

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