Published in

American Society for Microbiology, mBio, 4(10), 2019

DOI: 10.1128/mbio.00663-19

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Common Variants in the Glycerol Kinase Gene Reduce Tuberculosis Drug Efficacy

This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

TB control is limited in part by the length of antibiotic treatment needed to prevent recurrent disease. To probe mechanisms underlying survival under antibiotic pressure, we performed a genetic screen for M. tuberculosis mutants with altered susceptibility to treatment using the mouse model of TB. We identified multiple genes involved in a range of functions which alter sensitivity to antibiotics. In particular, we found glycerol catabolism mutants were less susceptible to treatment and that common variation in a homopolymeric region in the glpK gene was associated with drug resistance in clinical isolates. These studies indicate that reversible high-frequency variation in carbon metabolic pathways can produce phenotypically drug-tolerant clones and have a role in the development of resistance.