Emergence of mmpT5 Variants during Bedaquiline Treatment of Mycobacterium intracellulare Lung Disease

Author:

Alexander David C.1,Vasireddy Ravikiran2,Vasireddy Sruthi2,Philley Julie V.3,Brown-Elliott Barbara A.2,Perry Benjamin J.1,Griffith David E.3,Benwill Jeana L.23,Cameron Andrew D. S.1,Wallace Richard J.23

Affiliation:

1. University of Regina, Department of Biology, Regina, Saskatchewan, Canada

2. The Mycobacteria/Nocardia Research Laboratory, Department of Microbiology, University of Texas Health Science Center at Tyler, Tyler, Texas, USA

3. The Mycobacteria/Nocardia Research Laboratory, Department of Medicine, University of Texas Health Science Center at Tyler, Tyler, Texas, USA

Abstract

ABSTRACT Bedaquiline (BDQ), a diarylquinoline antibiotic that targets ATP synthase, is effective for the treatment of Mycobacterium tuberculosis infections that no longer respond to conventional drugs. While investigating the off-label use of BDQ as salvage therapy, seven of 13 patients with Mycobacterium intracellulare lung disease had an initial microbiological response and then relapsed. Whole-genome comparison of pretreatment and relapse isolates of M. intracellulare uncovered mutations in a previously uncharacterized locus, mmpT5 . Preliminary analysis suggested similarities between mmpT5 and the mmpR5 locus, which is associated with low-level BDQ resistance in M. tuberculosis . Both genes encode transcriptional regulators and are adjacent to orthologs of the mmpS5-mmpL5 drug efflux operon. However, MmpT5 belongs to the TetR superfamily, whereas MmpR5 is a MarR family protein. Targeted sequencing uncovered nonsynonymous mmpT5 mutations in isolates from all seven relapse cases, including two pretreatment isolates. In contrast, only two relapse patient isolates had nonsynonymous changes in ATP synthase subunit c ( atpE ), the primary target of BDQ. Susceptibility testing indicated that mmpT5 mutations are associated with modest 2- to 8-fold increases in MICs for BDQ and clofazimine, whereas one atpE mutant exhibited a 50-fold increase in MIC for BDQ. Bedaquiline shows potential for the treatment of M. intracellulare lung disease, but optimization of treatment regimens is required to prevent the emergence of mmpT5 variants and microbiological relapse.

Funder

Saskatchewan Health Research Foundation

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada

Amon G. Carter Foundation

Publisher

American Society for Microbiology

Subject

Microbiology (medical)

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