Mutations of Mycobacterium tuberculosis induced by anti-tuberculosis treatment result in metabolism changes and elevation of ethambutol resistance

乙胺丁醇 结核分枝杆菌 抗药性 生物 肺结核 代谢组学 微生物学 吡嗪酰胺 代谢组 多重耐药 遗传学 抗生素 链霉素 利福平 医学 生物信息学 病理
作者
Lin Sun,Liqun Zhang,Ting Wang,Weiwei Jiao,Qinjing Li,Qing-qin Yin,Jieqiong Li,Hui Qi,Fang Xu,Chen‐Yang Shen,Jing Xiao,Shuping Liu,Igor Mokrousov,Hairong Huang,Adong Shen
出处
期刊:Infection, Genetics and Evolution [Elsevier]
卷期号:72: 151-158 被引量:11
标识
DOI:10.1016/j.meegid.2018.09.027
摘要

Selective pressure from antibiotic use is one of the most important risk factors associated with the development of drug resistance in Mycobacterium tuberculosis (MTB). However, the mechanisms underlying drug resistance at the molecular level remain partly unclear. Therefore, the purpose of this study was to investigate the potential functional effect of novel mutations arising from anti-tuberculosis treatment. We analyzed two multidrug-resistant TB (MDR-TB) isolates from the same patient; one collected before and one almost a year after commencing MDR-TB treatment. The post-treatment isolate exhibited elevated ethambutol resistance. We sequenced the whole genomes of the two clinical isolates and detected six novel polymorphisms affecting the genes Rv1026, nc0021, Rv2155c, Rv2437, and Rv3696c, and the intergenic region between Rv2764c and Rv2765. Metabolomics approach was used to reveal the effect of the found variation on the metabolic pathways of MTB. Partial least squares-discriminant analysis showed a clear differentiation between the two isolates, involving a total of 175 metabolites. Pathway analysis showed that these metabolites are mainly involved in amino sugar and nucleotide sugar metabolism, β-alanine metabolism, sulfur metabolism, and galactose metabolism. The increased ethambutol resistance exhibited by the post-treatment MDR-TB strain could speculatively be linked to the identified genetic variations, which affected the synthesis of a number of metabolites associated with sources of carbon and energy. This may have been the main factor underlying the increased ethambutol resistance of this isolate.
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