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Updated: Apr 4, 2026

Author Spotlight: Advancements in Understanding and Combatting Shigella Infections
Published on: February 9, 2024
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.
Abstract:
The polyamine profile of Shigella, the etiological agent of bacillary dysentery in humans, differs markedly from that of E. coli, its innocuous commensal ancestor. Pathoadaptive mutations such as the loss of cadaverine and the increase of spermidine favour the full expression of the virulent phenotype of Shigella. Spermidine levels affect the expression of the MdtJI complex, a recently identified efflux pump belonging to the small multi-drug resistance family of transporters. In the present study, we have addressed the regulation of the mdtJI operon in Shigella by asking which factors influence its expression as compared to E. coli. In particular, after identifying the mdtJI promoter by primer extension analysis, in vivo transcription assays and gel-retardation experiments were carried out to get insight on the silencing of mdtJI in E. coli. The results indicate that H-NS, a major nucleoid protein, plays a key role in repressing the mdtJI operon by direct binding to the regulatory region. In the Shigella background mdtJI expression is increased by the high levels of spermidine typically found in this microorganism and by VirF, the plasmid-encoded regulator of the Shigella virulence regulatory cascade. We also show that the expression of mdtJI is stimulated by bile components. Functional analyses reveal that MdtJI is able to promote the excretion of putrescine, the spermidine precursor. This leads us to consider the MdtJI complex as a possible safety valve allowing Shigella to maintain spermidine to a level optimally suited to survival within infected macrophages and, at the same time, prevent toxicity due to spermidine over-accumulation.
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.
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