Comparison of gene expression profiles between pansensitive and multidrug-resistant strains of mycobacterium tuberculosis
- K. Peñuelas-Urquides,
- L. González-Escalante,
- L. Villarreal-Treviño,
- B. Silva-Ramírez,
- D. J. Gutiérrez-Fuentes,
- R. Mojica-Espinosa
- Instituto Mexicano del Seguro Social,
- Universidad Autonoma de Nuevo Leon,
- Instituto Nacional de Medicina Genomica Mexico,
- Universidad Nacional Autónoma de México,
- Instituto Tecnologico de Estudios Superiores de Monterrey,
- Hospital Universitario Dr. Jose Eleuterio Gonzalez
Sustainable Development Goals
- SDG 3 Good Health and Well
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Abstract
Mycobacterium tuberculosis has developed resistance to anti-tuberculosis first-line drugs. Multidrug-resistant strains complicate the control of tuberculosis and have converted it into a worldwide public health problem. Mutational studies of target genes have tried to envisage the resistance in clinical isolates; however, detection of these mutations in some cases is not sufficient to identify drug resistance, suggesting that other mechanisms are involved. Therefore, the identification of new markers of susceptibility or resistance to first-line drugs could contribute (1) to specifically diagnose the type of M. tuberculosis strain and prescribe an appropriate therapy, and (2) to elucidate the mechanisms of resistance in multidrug-resistant strains. In order to identify specific genes related to resistance in M. tuberculosis, we compared the gene expression profiles between the pansensitive H37Rv strain and a clinical CIBIN:UMF:15:99 multidrug-resistant isolate using microarray analysis. Quantitative real-time PCR confirmed that in the clinical multidrug-resistant isolate, the esxG, esxH, rpsA, esxI, and rpmI genes were upregulated, while the lipF, groES, and narG genes were downregulated. The modified genes could be involved in the mechanisms of resistance to first-line drugs in M. tuberculosis and could contribute to increased efficiency in molecular diagnosis approaches of infections with drug-resistant strains.
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 362-371 (10 pages)Journal (Volume, Issue Number)
Current Microbiology (Volume 67, Issue 3)Publication milestones
- Published - 01/09/2013
Publication status
ISSN
0343-8651Publication IDs
- Scopus: 84881100126
- WOS: 000322273300015
