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  4. Characterization of DprE1-Mediated Benzothiazinone Resistance in Mycobacterium tuberculosis
 
research article

Characterization of DprE1-Mediated Benzothiazinone Resistance in Mycobacterium tuberculosis

Foo, Caroline Shi-Yan
•
Lechartier, Benoit  
•
Kolly, Gaelle S.
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2016
Antimicrobial Agents And Chemotherapy

Benzothiazinones (BTZs) are a class of compounds found to be extremely potent against both drug-susceptible and drug-resistant Mycobacterium tuberculosis strains. The potency of BTZs is explained by their specificity for their target decaprenylphosphoryl-D-ribose oxidase (DprE1), in particular by covalent binding of the activated form of the compound to the critical cysteine 387 residue of the enzyme. To probe the role of C387, we used promiscuous site-directed mutagenesis to introduce other codons at this position into dprE1 of M. tuberculosis. The resultant viable BTZ-resistant mutants were characterized in vitro, ex vivo, and biochemically to gain insight into the effects of these mutations on DprE1 function and on M. tuberculosis. Five different mutations (C387G, C387A, C387S, C387N, and C387T) conferred various levels of resistance to BTZ and exhibited different phenotypes. The C387G and C387N mutations resulted in a lower growth rate of the mycobacterium on solid medium, which could be attributed to the significant decrease in the catalytic efficiency of the DprE1 enzyme. All five mutations rendered the mycobacterium less cytotoxic to macrophages. Finally, differences in the potencies of covalent and noncovalent DprE1 inhibitors in the presence of C387 mutations were revealed by enzymatic assays. As expected from the mechanism of action, the covalent inhibitor PBTZ169 only partially inhibited the mutant DprE1 enzymes compared to the near-complete inhibition with a noncovalent DprE1 inhibitor, Ty38c. This study emphasizes the importance of the C387 residue for DprE1 activity and for the killing action of covalent inhibitors such as BTZs and other recently identified nitroaromatic inhibitors.

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Type
research article
DOI
10.1128/Aac.01523-16
Web of Science ID

WOS:000389063500002

Author(s)
Foo, Caroline Shi-Yan
Lechartier, Benoit  
Kolly, Gaelle S.
Boy-Rottger, Stefanie
Neres, Joao  
Rybniker, Jan
Lupien, Andreanne
Sala, Claudia  
Piton, Jeremie
Cole, Stewart T.  
Date Issued

2016

Publisher

American Society for Microbiology

Published in
Antimicrobial Agents And Chemotherapy
Volume

60

Issue

11

Start page

6451

End page

6459

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPCOL  
Available on Infoscience
January 24, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/133675
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