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Directed mutagenesis of Mycobacterium smegmatis 16S rRNA to reconstruct the in-vivo evolution of aminoglycoside resistance in Mycobacterium tuberculosis

机译:定向诱变耻垢分枝杆菌16S rRNA以重建结核分枝杆菌中氨基糖苷抗性的体内进化

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摘要

Summary Drug resistance in Mycobacteriumtuberculosis is a global problem, with major consequences for treatment and public health systems. As the emergence and spread of drug-resistant tuberculosis epidemics is largely influenced by the impact of the resistance mechanism on bacterial fitness, we wished to investigate whether compensatory evolution occurs in drug resistant clinical isolates of M. tuberculosis. By combining information from molecular epidemiology studies of drug resistant clinical M. tuberculosis isolates with genetic reconstructions and measurements of aminoglycoside susceptibility and fitness in M. smegmatis, we have reconstructed a plausible pathway for how aminoglycoside resistance develops in clinical isolates of M. tuberculosis. Thus, we show by reconstruction experiments that base changes in the highly conserved A-site of 16S rRNA that (i) cause aminoglycoside resistance, (ii) confer a high fitness cost and (iii) destabilize a stem-loop structure, are associated with a particular compensatory point mutation that restores rRNA secondary structure and bacterial fitness, while maintaining to a large extent the drug resistant phenotype. The same types of resistance and associated mutations can be found in M. tuberculosis in clinical isolates, suggesting that compensatory evolution contributes to the spread of drug-resistant tuberculosis disease.
机译:小结结核分枝杆菌的耐药性是一个全球性问题,对治疗和公共卫生系统产生重大影响。由于耐药性结核病流行的出现和传播在很大程度上受到耐药性机制对细菌适应性的影响,因此我们希望调查在结核分枝杆菌的耐药性临床分离株中是否发生代偿性进化。通过将耐药性临床结核分枝杆菌的分子流行病学研究信息与遗传重建以及耻垢分枝杆菌中氨基糖苷敏感性和适应性的测量相结合,我们为结核分枝杆菌临床分离物中氨基糖苷耐药性的发展建立了一条合理的途径。因此,我们通过重建实验表明,高度保守的16S rRNA A位的碱基变化与(i)引起氨基糖苷抗性,(ii)赋予较高的适应性成本和(iii)破坏茎环结构的稳定性有关。一种特定的补偿点突变,可恢复rRNA的二级结构和细菌适应性,同时在很大程度上保持耐药性表型。可以在临床分离株的结核分枝杆菌中发现相同类型的耐药性和相关突变,这表明代偿性进化有助于耐药结核病的传播。

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