Genes Required for Intrinsic Multidrug Resistance in Mycobacterium avium
Open Access
- 1 September 2004
- journal article
- research article
- Published by American Society for Microbiology in Antimicrobial Agents and Chemotherapy
- Vol. 48 (9) , 3412-3418
- https://doi.org/10.1128/aac.48.9.3412-3418.2004
Abstract
Genes required for intrinsic multidrug resistance by Mycobacterium avium were identified by screening a library of transposon insertion mutants for the inability to grow in the presence of ciprofloxacin, clarithromycin, and penicillin at subinhibitory concentrations. Two genes, pks12 and Maa2520, were disrupted in multiple drug-susceptible mutants. The pks12 gene (Maa1979), which may be cotranscribed with a downstream gene (Maa1980), is widely conserved in the actinomycetes. Its ortholog in Mycobacterium tuberculosis is a polyketide synthase required for the synthesis of dimycocerosyl phthiocerol, a major cell wall lipid. Mutants of M. avium with insertions into pks12 exhibited altered colony morphology and were drug susceptible, but they grew as well as the wild type did in vitro and intracellularly within THP-1 cells. A pks12 mutant of M. tuberculosis was moderately more susceptible to clarithromycin than was its parent strain; however, susceptibility to ciprofloxacin and penicillin was not altered. M. avium complex (MAC) and M. tuberculosis appear to have different genetic mechanisms for resisting the effects of these antibiotics, with pks12 playing a relatively more significant role in MAC. The second genetic locus identified in this study, Maa2520, is a conserved hypothetical gene with orthologs in M. tuberculosis and Mycobacterium leprae . It is immediately upstream of Maa2521, which may code for an exported protein. Mutants with insertions at this locus were susceptible to multiple antibiotics and slow growing in vitro and were unable to survive intracellularly within THP-1 cells. Like pks12 mutants, they exhibited increased Congo red binding, an indirect indication of cell wall modifications. Maa2520 and pks12 are the first genes to be linked by mutation to intrinsic drug resistance in MAC.Keywords
This publication has 33 references indexed in Scilit:
- Molecular Basis of Intrinsic Macrolide Resistance in the Mycobacterium tuberculosis ComplexAntimicrobial Agents and Chemotherapy, 2004
- Mutational Analysis of Cell Wall Biosynthesis inMycobacterium aviumJournal of Bacteriology, 2003
- The White Morphotype ofMycobacterium avium‐intracellulareIs Common in Infected Humans and Virulent in Infection ModelsThe Journal of Infectious Diseases, 2001
- Infection of Macrophage-Like THP-1 Cells withMycobacterium aviumResults in a Decrease in Their Ability to Phosphorylate NucleolinInfection and Immunity, 2000
- Colony morphotypes on Congo red agar segregate along species and drug susceptibility lines in the Mycobacterium avium-intracellulare complexMicrobiology, 1999
- Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequenceNature, 1998
- Stazyme, a mycobacteriolytic preparation from a Staphylococcus strain, is able to break the permeability barrier in multiple drug resistant Mycobacterium aviumFEMS Immunology & Medical Microbiology, 1997
- Stazyme, a mycobacteriolytic preparation from aStaphylococcusstrain, is able to break the permeability barrier in multiple drug resistantMycobacterium aviumFEMS Immunology & Medical Microbiology, 1997
- Etest for susceptibility testing of Mycobacterium tuberculosis and Mycobacterium avium-intracellulareDiagnostic Microbiology and Infectious Disease, 1994
- Mycobacterium avium and Mycobacterium intracellulare Infections in Patients with and without AIDSThe Journal of Infectious Diseases, 1989