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识别和应对耐药分枝杆菌中的新出现的脆弱性。

Identifying and Tackling Emergent Vulnerability in Drug-Resistant Mycobacteria.

作者信息

Padiadpu Jyothi, Baloni Priyanka, Anand Kushi, Munshi MohamedHusen, Thakur Chandrani, Mohan Abhilash, Singh Amit, Chandra Nagasuma

机构信息

Department of Biochemistry, ‡Supercomputer Education and Research Centre, #Molecular Biophysics Unit, ΔMicrobiology and Cellular Biology, and ⊥Centre for Infectious Disease Research, Indian Institute of Science , Bangalore 560012, India.

出版信息

ACS Infect Dis. 2016 Sep 9;2(9):592-607. doi: 10.1021/acsinfecdis.6b00004. Epub 2016 Aug 8.

Abstract

The global mechanisms and associated molecular alterations that occur in drug-resistant mycobacteria are poorly understood. To address this, we obtain genomics data and then construct a genome-scale response network in isoniazid-resistant Mycobacterium smegmatis and apply a network-mining algorithm. Through this, we decipher global alterations in an unbiased manner and identify emergent vulnerabilities in resistant bacilli, of which redox response was prominent. Using phenotypic profiling, we find that resistant bacilli exhibit collateral sensitivity to several compounds that block antioxidant responses. We find that nanogram/milliliter concentrations of ebselen, vancomycin, and phenylarsine oxide, in combination with isoniazid, are highly effective against Mycobacterium tuberculosis H37Rv and three clinical drug-resistant strains. Dynamic measurements of cytoplasmic redox potential revealed a surprisingly diminished capacity of clinical drug-resistant strains to counteract oxidative stress, providing a mechanistic basis for efficient and synergistic mycobactericidal activity of the drug combinations. Ebselen and vancomycin appear to be promising repurposable drugs.

摘要

耐药分枝杆菌中发生的全球机制及相关分子改变仍知之甚少。为解决这一问题,我们获取基因组学数据,然后在耐异烟肼的耻垢分枝杆菌中构建全基因组规模的反应网络,并应用网络挖掘算法。通过这种方式,我们以无偏倚的方式解读全局改变,并识别耐药杆菌中出现的脆弱性,其中氧化还原反应尤为突出。通过表型分析,我们发现耐药杆菌对几种阻断抗氧化反应的化合物表现出协同敏感性。我们发现,纳克/毫升浓度的依布硒仑、万古霉素和氧化苯胂与异烟肼联合使用时,对结核分枝杆菌H37Rv和三种临床耐药菌株具有高效杀菌作用。对细胞质氧化还原电位的动态测量显示,临床耐药菌株对抗氧化应激的能力出人意料地减弱,这为药物组合高效协同杀菌活性提供了机制基础。依布硒仑和万古霉素似乎是有前景的可重新利用药物。

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