RRC ID 3167
Author Sekiguchi J, Miyoshi-Akiyama T, Augustynowicz-Kopeć E, Zwolska Z, Kirikae F, Toyota E, Kobayashi I, Morita K, Kudo K, Kato S, Kuratsuji T, Mori T, Kirikae T.
Title Detection of multidrug resistance in Mycobacterium tuberculosis.
Journal J Clin Microbiol
Abstract We developed a DNA sequencing-based method to detect mutations in the genome of drug-resistant Mycobacterium tuberculosis. Drug resistance in M. tuberculosis is caused by mutations in restricted regions of the genome. Eight genome regions associated with drug resistance, including rpoB for rifampin (RIF), katG and the mabA (fabG1)-inhA promoter for isoniazid (INH), embB for ethambutol (EMB), pncA for pyrazinamide (PZA), rpsL and rrs for streptomycin (STR), and gyrA for levofloxacin, were amplified simultaneously by PCR, and the DNA sequences were determined. It took 6.5 h to complete all procedures. Among the 138 clinical isolates tested, 55 were resistant to at least one drug. Thirty-four of 38 INH-resistant isolates (89.5%), 28 of 28 RIF-resistant isolates (100%), 15 of 18 EMB-resistant isolates (83.3%), 18 of 30 STR-resistant isolates (60%), and 17 of 17 PZA-resistant isolates (100%) had mutations related to specific drug resistance. Eighteen of these mutations had not been reported previously. These novel mutations include one in rpoB, eight in katG, one in the mabA-inhA regulatory region, two in embB, five in pncA, and one in rrs. Escherichia coli isolates expressing individually five of the eight katG mutations showed loss of catalase and INH oxidation activities, and isolates carrying any of the five pncA mutations showed no pyrazinamidase activity, indicating that these mutations are associated with INH and PZA resistance, respectively. Our sequencing-based method was also useful for testing sputa from tuberculosis patients and for screening of mutations in Mycobacterium bovis. In conclusion, our new method is useful for rapid detection of multiple-drug-resistant M. tuberculosis and for identifying novel mutations in drug-resistant M. tuberculosis.
Volume 45(1)
Pages 179-92
Published 2007-1-1
DOI 10.1128/JCM.00750-06
PII JCM.00750-06
PMID 17108078
PMC PMC1828975
MeSH Antitubercular Agents / pharmacology Bacterial Proteins / genetics DNA, Bacterial / analysis Drug Resistance, Multiple, Bacterial / genetics* Escherichia coli Proteins Humans Microbial Sensitivity Tests Mutation Mycobacterium tuberculosis / drug effects* Mycobacterium tuberculosis / genetics Polymerase Chain Reaction / methods* Ribosomal Protein S9 Sensitivity and Specificity Sequence Analysis, DNA Temperature Tuberculosis, Multidrug-Resistant / microbiology* Tuberculosis, Pulmonary / microbiology*
IF 5.897
Times Cited 129
WOS Category MICROBIOLOGY
Resource
Pathogenic microorganisms M. bovis BCG M. chelonae(JCM 6390) M. fortuitum(RIMD 1317004) M. gastri(GTC 00610) M. intracellulare(JCM 6384) M. kansasii(JCM 6379) M. marinum(GTC 00616) M. nonchromogenicum(JCM 6364) M. phlei(RIMD 1326001) M. scrofulaceum(JCM 6381) M. simiae(GTC 00620) M. smegmatis(ATCC 19420)? M. szulgai(JCM 6383) M. terrae(GTC 00623) H. influenzae(IID 984) K. pneumoniae(IID 5209) L. pneumophila(GTC 00745) M. pneumoniae(IID 817) S. aureus(N 315)? S. pneumoniae(GTC 00261)
General Microbes JCM6390 JCM6384 JCM6379 JCM6364 JCM6381 JCM6383