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Variable Virulence of Biotype 3 Vibrio vulnificus due to MARTX Toxin Effector Domain Composition
Byoung Sik Kim1, Hannah E Gavin1, Karla J F Satchell1
1Department of Microbiology-Immunology, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.
Abstract:
Vibrio vulnificus is an environmental organism that causes septic human infections characterized by high morbidity and mortality. The annual incidence and global distribution of this pathogen are increasing as ocean waters warm. Clinical strains exhibit variations in the primary virulence toxin, suggesting a potential for the emergence of new strains with altered virulence properties. A clonal outbreak of tilapia-associated wound infections in Israel serves as a natural experiment for the sudden emergence of a new V. vulnificus strain. The effector domain content of the multifunctional autoprocessing RTX (MARTX) toxin of the outbreak-associated biotype 3 (BT3) strains was previously shown to harbor a modification generated by recombination. The modification introduced an actin-induced adenylate cyclase effector domain (ExoY) and an effector domain that disrupts the Golgi organelle (DmX). Here, we report that the exchange of these effector domains for a putative progenitor biotype 1 toxin arrangement produces a toxin that slows the lysis kinetics of targeted epithelial cells but increases cellular rounding phenotypes in response to bacteria. In addition, replacing the biotype 3 toxin variant with the putative progenitor biotype 1 variant renders the resulting strain significantly more virulent in mice. This suggests that the exchange of MARTX effector domains during the emergence of BT3 generated a toxin with reduced toxin potency, resulting in decreased virulence of this outbreak-associated strain. We posit that selection for reduced virulence may serve as a route for this lethal infectious agent to enter the human food chain by allowing it to persist in natural hosts. IMPORTANCEVibrio vulnificus is a serious infection linked to climate change. The virulence capacity of these bacteria can vary by gene exchange, resulting in new variants of the primary virulence toxin. In this study, we tested whether the emergence of an epidemic strain of V. vulnificus with a novel toxin variant correlated with a change in virulence. We found that restoring the biotype 3 toxin variant to the putative progenitor-type toxin resulted in dramatically increased virulence, revealing that the emergence of the biotype 3 strain could be linked to virulence reduction. This reduced virulence, previously found also in the biotype 1 strain, suggests that reduced virulence may stimulate outbreaks, as strains have greater capacity to enter the human food chain through reduced impact to environmental hosts.
Insights
Vibrio vulnificus infections are increasing with climate change. A new strain emerged with a modified toxin, showing reduced virulence. This suggests reduced virulence may help Vibrio vulnificus enter the human food chain.
Area of Science:
- Microbiology
- Pathogen Evolution
- Climate Change Impacts
Background:
- Vibrio vulnificus causes severe human infections with increasing incidence due to warming oceans.
- Pathogen virulence can be altered by toxin gene exchange, leading to new strains.
- A tilapia-associated outbreak in Israel highlighted a novel Vibrio vulnificus strain (biotype 3).
Purpose of the Study:
- To investigate the impact of toxin variation on Vibrio vulnificus virulence.
- To understand the evolutionary mechanisms behind the emergence of a novel epidemic strain.
- To assess the role of toxin domain exchange in pathogen adaptation.
Main Methods:
- Comparative analysis of multifunctional autoprocessing RTX (MARTX) toxin variants.
- Experimental manipulation of effector domains (ExoY, DmX) in Vibrio vulnificus strains.
- In vivo virulence assays in a murine model.
Main Results:
- Replacing biotype 3 MARTX effector domains with biotype 1 variants altered cell lysis and rounding.
- The biotype 1 toxin arrangement significantly increased bacterial virulence in mice compared to the biotype 3 variant.
- The emergence of the biotype 3 strain correlated with reduced toxin potency and decreased virulence.
Conclusions:
- Toxin domain exchange in MARTX can reduce Vibrio vulnificus virulence.
- Reduced virulence may facilitate pathogen persistence in natural hosts and entry into the food chain.
- Understanding toxin evolution is crucial for predicting and managing Vibrio vulnificus infections.
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