A Quinoxaline 1,4-Dioxide Activates DNA Repair Systems in Mycobacterium smegmatis: A Transcriptomic Study

In 2022, the World Health Organization reported that tuberculosis (TB) was the second leading cause of death globally from a single infectious agent following COVID-19. The development of new antitubercular agents with novel mechanisms of action for use in complex TB therapy is considered a key approach to combating TB. In this study, we examined the gene expression profile of M. smegmatis when exposed to a promising antituberculosis agent, quinoxaline 1,4-dioxide (QdNO) 7-chloro-2-(ethoxycarbonyl)-3-methyl-6-(piperazin-1-yl)quinoxaline-1,4-dioxide-1 (LCTA-3368). We investigated how the bacterial response changed with different minimum inhibitory concentrations (MIC) (1/4 × MIC, 1/2 × MIC, and 1 × MIC) and durations (30 min and 90 min) of treatment with the drug. Our analysis revealed significant upregulation in genes involved in DNA repair and replication processes, as well as changes in the expression of 95 genes encoding proteins with oxidoreductase activity. We additionally showed that the concentration of reactive oxygen species increases in a dose-dependent manner upon exposure of M. smegmatis to LCTA-3368. These findings support the proposed mechanism of antibacterial action of QdNOs, which is associated with the formation of free radicals leading to DNA damage.

Авторы
Bekker O.B. 1 , Galanova O.O. 1, 2 , Vatlin A.A. 1, 3 , Frolova S.G. 1 , Shitikov E.A. 4 , Bespiatykh D.A. 4 , Klimina K.M. 4 , Veselovsky V.A. 4 , Ilyasov R.A. 1, 5 , Smirnova S.V. 1 , Reznikova D.A. 1, 2 , Kochetkov N.I. 1, 6 , Maslov D.A. 7 , Danilenko V.N. 1
Издательство
Molecular Diversity Preservation International
Номер выпуска
8
Язык
English
Статус
Published
Том
26
Год
2025
Организации
  • 1 Vavilov Institute of General Genetics, Russian Academy of Sciences
  • 2 Moscow Center for Advanced Studies, 123592 Moscow, Russia
  • 3 Peoples' Friendship University of Russia (RUDN University)
  • 4 Lopukhin Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency
  • 5 Koltsov Institute of Developmental Biology of Russian Academy of Sciences
  • 6 Moscow State University of Technologies and Management
  • 7 Stanford University School of Medicine
Ключевые слова
M. smegmatis; QdNOs; Antituberculosis Agent; transcriptome
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