Multifactor Regulation of the MdtJI Polyamine Transporter in Shigella

Adriano Leuzzi1, Maria Letizia Di Martino1, Rosaria Campilongo1

  • 1Istituto Pasteur-Fondazione Cenci Bolognetti, Dipartimento di Biologia e Biotecnologie "C. Darwin", Sapienza Università di Roma, Via dei Sardi 70, 00185, Roma, Italy.

Plos One
|August 28, 2015
PubMed

Insights

Shigella virulence is linked to spermidine levels, affecting the MdtJI efflux pump. This study reveals H-NS represses mdtJI in E. coli, while Shigella upregulates it via spermidine and VirF, potentially managing toxicity.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Bacterial Pathogenesis

Background:

  • Shigella, causing bacillary dysentery, exhibits distinct polyamine profiles compared to E. coli.
  • Pathoadaptive mutations in Shigella, including increased spermidine, enhance virulence.
  • Spermidine levels influence the MdtJI efflux pump, part of the small multidrug resistance transporter family.

Purpose of the Study:

  • To investigate the regulation of the mdtJI operon in Shigella compared to E. coli.
  • To identify factors controlling mdtJI expression and its role in Shigella pathogenesis.

Main Methods:

  • Primer extension analysis to identify the mdtJI promoter.
  • In vivo transcription assays and gel-retardation experiments to study mdtJI regulation.
  • Analysis of MdtJI function in putrescine excretion.

Main Results:

  • H-NS (host factor) represses mdtJI operon expression in E. coli via direct binding.
  • Shigella upregulates mdtJI expression due to high spermidine levels and the regulator VirF.
  • Bile components also stimulate mdtJI expression in Shigella.
  • The MdtJI complex facilitates putrescine excretion, a spermidine precursor.

Conclusions:

  • MdtJI acts as a safety valve in Shigella, maintaining optimal spermidine levels for macrophage survival.
  • This efflux pump prevents spermidine over-accumulation and toxicity during infection.
  • Differential regulation of mdtJI contributes to Shigella's virulent phenotype.

Related Concept Videos

Stringent Response in E. coli01:23

Stringent Response in E. coli

Bacterial growth is closely tied to nutrient availability, with cells proliferating exponentially under favorable conditions and entering a stationary phase when resources become scarce. This transition is mediated by a regulatory mechanism known as the stringent response, which allows bacteria to adapt to nutrient deprivation by modulating gene expression and metabolic activity.During nutrient scarcity, intracellular amino acid levels decline. It results in the accumulation of uncharged tRNAs...
470
Regulation of Bacterial Virulence01:28

Regulation of Bacterial Virulence

Pathogenic bacteria employ a range of regulatory mechanisms to modulate the expression of virulence genes in response to environmental and host-derived signals. These mechanisms ensure that virulence factors are expressed only under favorable conditions, thereby optimizing infection and survival strategies.Mechanisms of Virulence RegulationKey regulatory strategies include:Two-Component Systems: These consist of a membrane-bound sensor kinase and a cytoplasmic response regulator. Environmental...
41
Translational Regulation01:29

Translational Regulation

Translational regulation in prokaryotes ensures efficient protein synthesis by controlling ribosome access to mRNA. This regulation is mediated by secondary RNA structures, including translational riboswitches, RNA thermometers, and small RNAs (sRNAs), which respond to intracellular and environmental signals to modulate gene expression.Translational RiboswitchesRiboswitches in the leader region of mRNAs can regulate translation by altering the accessibility of the Shine-Dalgarno (SD) sequence,...
828