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Distinct Roles for CdtA and CdtC during Intoxication by Cytolethal Distending Toxins
Shandee D Dixon1, Melanie M Huynh1, Batcha Tamilselvam2
1Department of Microbiology, Immunology, and Molecular Genetics, University of California Los Angeles, Los Angeles, California, United States of America.
Abstract:
Cytolethal distending toxins (CDTs) are heterotrimeric protein exotoxins produced by a diverse array of Gram-negative pathogens. The enzymatic subunit, CdtB, possesses DNase and phosphatidylinositol 3-4-5 trisphosphate phosphatase activities that induce host cell cycle arrest, cellular distension and apoptosis. To exert cyclomodulatory and cytotoxic effects CDTs must be taken up from the host cell surface and transported intracellularly in a manner that ultimately results in localization of CdtB to the nucleus. However, the molecular details and mechanism by which CDTs bind to host cells and exploit existing uptake and transport pathways to gain access to the nucleus are poorly understood. Here, we report that CdtA and CdtC subunits of CDTs derived from Haemophilus ducreyi (Hd-CDT) and enteropathogenic E. coli (Ec-CDT) are independently sufficient to support intoxication by their respective CdtB subunits. CdtA supported CdtB-mediated killing of T-cells and epithelial cells that was nearly as efficient as that observed with holotoxin. In contrast, the efficiency by which CdtC supported intoxication was dependent on the source of the toxin as well as the target cell type. Further, CdtC was found to alter the subcellular trafficking of Ec-CDT as determined by sensitivity to EGA, an inhibitor of endosomal trafficking, colocalization with markers of early and late endosomes, and the kinetics of DNA damage response. Finally, host cellular cholesterol was found to influence sensitivity to intoxication mediated by Ec-CdtA, revealing a role for cholesterol or cholesterol-rich membrane domains in intoxication mediated by this subunit. In summary, data presented here support a model in which CdtA and CdtC each bind distinct receptors on host cell surfaces that direct alternate intracellular uptake and/or trafficking pathways.
Insights
Cytolethal distending toxins (CDTs) utilize CdtA and CdtC subunits to bind host cells, directing distinct intracellular pathways for CdtB delivery. This reveals new mechanisms for CDT intoxication and host cell targeting.
Area of Science:
- Microbiology
- Cell Biology
- Toxicology
Background:
- Cytolethal distending toxins (CDTs) are crucial virulence factors produced by Gram-negative pathogens.
- The enzymatic CdtB subunit induces cell cycle arrest, distension, and apoptosis via DNase and phosphatase activities.
- Understanding CDT cell entry and nuclear transport mechanisms is vital but poorly understood.
Purpose of the Study:
- To elucidate the roles of CdtA and CdtC subunits in CDT intoxication.
- To investigate the mechanisms of CDT cell surface binding and intracellular trafficking.
- To identify host factors influencing CDT-mediated cellular effects.
Main Methods:
- Assessing the sufficiency of CdtA and CdtC subunits in supporting CdtB-mediated intoxication.
- Analyzing the impact of CdtC on the subcellular trafficking of enteropathogenic E. coli CDT (Ec-CDT).
- Evaluating the influence of host cellular cholesterol on intoxication sensitivity.
Main Results:
- CdtA subunits were independently sufficient for potent CdtB-mediated intoxication of T-cells and epithelial cells.
- CdtC's intoxication efficiency varied with toxin source and target cell type.
- CdtC altered Ec-CDT subcellular trafficking, and host cholesterol influenced Ec-CdtA-mediated intoxication.
Conclusions:
- CdtA and CdtC subunits bind distinct host cell receptors, mediating alternative intracellular uptake and trafficking pathways.
- These findings provide a model for CDT cell entry and highlight potential roles for host cell cholesterol.
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