| Literature DB >> 27620476 |
Subhashri Kundu1, Goran Biukovic1, Gerhard Grüber2, Thomas Dick3.
Abstract
The tuberculosis drug bedaquiline inhibits mycobacterial F-ATP synthase by binding to its c subunit. Using the purified ε subunit of the synthase and spectroscopy, we previously demonstrated that the drug interacts with this protein near its unique tryptophan residue. Here, we show that replacement of ε's tryptophan with alanine resulted in bedaquiline hypersusceptibility of the bacteria. Overexpression of the wild-type ε subunit caused resistance. These results suggest that the drug also targets the ε subunit.Entities:
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Year: 2016 PMID: 27620476 PMCID: PMC5075122 DOI: 10.1128/AAC.01291-16
Source DB: PubMed Journal: Antimicrob Agents Chemother ISSN: 0066-4804 Impact factor: 5.191
FIG 1Growth and bedaquiline susceptibility of wild-type M. smegmatis and various genetic derivatives. (A) Growth on solid medium. Colonies are shown after 4 days of incubation. (B) Growth in liquid medium. (C) Bedaquiline growth inhibition dose-response curves. wt, wild-type M. smegmatis; W16A, M. smegmatis atpCW16A; W16A comp atpC, M. smegmatis atpCW16A complemented with a wild-type copy of the gene encoding the ε subunit via the introduction of plasmid pMV262-atpC; wt overexpr atpC, wild-type M. smegmatis overexpressing wild-type ε protein via introduction of pMV262-atpC; OD600, optical density at 600 nm. The experiments were carried out three times independently. Mean values with standard deviations are shown.