Absence of tmRNA Has a Protective Effect against Fluoroquinolones in Streptococcus pneumoniae

Liliana Brito1, Joana Wilton1, María J Ferrándiz2

  • 1Unidad de Patología Molecular del Neumococo, Centro Nacional de Microbiología, Instituto de Salud Carlos III Madrid, Spain.

Frontiers in Microbiology
|January 26, 2017
PubMed

Insights

Transfer messenger RNA (tmRNA) is crucial for bacterial stress adaptation. In Streptococcus pneumoniae, tmRNA deletion increases fluoroquinolone resistance by preventing DNA damage and reducing reactive oxygen species.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Genetics

Background:

  • Transfer messenger RNA (tmRNA), encoded by the ssrA gene, is vital for trans-translation and ribosome recycling in bacteria.
  • tmRNA deficiency typically impairs stress response and recovery in most bacterial species.

Purpose of the Study:

  • To investigate the role of tmRNA in stress adaptation in the human pathogen Streptococcus pneumoniae.
  • To analyze the impact of tmRNA deletion on pneumococcal susceptibility to various lethal stresses and antibiotics.

Main Methods:

  • Construction and analysis of a tmRNA deletion mutant (ΔssrA) in Streptococcus pneumoniae.
  • Assessment of growth rates, susceptibility to UV irradiation, hydrogen peroxide, and antibiotics.
  • Evaluation of fluoroquinolone minimum inhibitory concentrations (MICs) and survival rates.
  • Measurement of intracellular reactive oxygen species and drug accumulation.
  • Analysis of chromosome integrity following antibiotic treatment.

Main Results:

  • The ΔssrA strain exhibited slower growth and increased susceptibility to UV, hydrogen peroxide, and protein synthesis/transcription inhibitors.
  • Conversely, the ΔssrA strain displayed enhanced resistance to fluoroquinolones, with higher MICs and survival rates.
  • tmRNA deficiency reduced intracellular reactive oxygen species accumulation and prevented fluoroquinolone-induced chromosome fragmentation.
  • Increased intracellular accumulation of ethidium bromide and levofloxacin was observed in the ΔssrA strain.

Conclusions:

  • tmRNA plays a significant role in Streptococcus pneumoniae's stress adaptation, influencing growth and susceptibility to various stresses.
  • tmRNA deficiency confers resistance to fluoroquinolones, primarily through mechanisms involving reduced reactive oxygen species and prevention of DNA damage.
  • Understanding tmRNA's role provides insights into fluoroquinolone action and the mechanisms of drug resistance in pneumococci.