| Literature DB >> 31138569 |
Shaheed V Omar1, Remco P H Peters2,3, Nabila Ismail4,1, Nazir A Ismail4,1,5.
Abstract
Bedaquiline resistance within Mycobacterium tuberculosis may arise through efflux-based (rv0678) or target-based (atpE) pathway mutations. M. tuberculosis mutant populations from each of five sequential steps in a passaging approach, using a pyrazinamide-resistant ATCC strain, were subjected to MIC determinations and whole-genome sequencing. Exposure to increasing bedaquiline concentrations resulted in increasing phenotypic resistance (up to >2 μg/ml) through MIC determination on solid medium (Middlebrook 7H10). rv0678 mutations were dynamic, while atpE mutations were fixed, once occurring. We present the following hypothesis for in vitro emergence of bedaquiline resistance: rv0678 mutations may be the first transient step in low-level resistance acquisition, followed by high-level resistance due to fixed atpE mutations.Entities:
Keywords: Mycobacterium tuberculosiszzm321990; atpEzzm321990; bedaquiline; in vitro model; rv0678; stepwise acquisition
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Year: 2019 PMID: 31138569 PMCID: PMC6658778 DOI: 10.1128/AAC.00292-19
Source DB: PubMed Journal: Antimicrob Agents Chemother ISSN: 0066-4804 Impact factor: 5.191