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Updated: May 21, 2026

Visualization of Bacterial Toxin Induced Responses Using Live Cell Fluorescence Microscopy
Published on: October 1, 2012
Localization of Aggregatibacter actinomycetemcomitans cytolethal distending toxin subunits during intoxication of
Monika Damek-Poprawa1, Jae Yeon Jang, Alla Volgina
1Department of Microbiology, School of Dental Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
Abstract:
The cytolethal distending toxin (Cdt), produced by some clinically important Gram-negative bacterial species, is related to the family of AB-type toxins. Three heterologous proteins (CdtA, CdtB, and CdtC) and a genotoxin mode of action distinguish the Cdt from others in this toxin class. Crystal structures of several species-specific Cdts have provided a basis for predicting subunit interactions and functions. In addition, empirical studies have yielded significant insights into the in vivo interactions of the Cdt subunits. However, there are still critical gaps in information about the intoxication process. In this study, a novel protein tagging technology was used to localize the subunits in Chinese hamster ovary cells (CHO-K1). A tetracysteine motif was engineered in each subunit, and in subunits with mutations in predicted functional domains, to permit detection with the fluorescein arsenical hairpin binding (FlAsH) dye Lumio green. Live-cell imaging, in conjunction with confocal microscopy, was used to capture the locations of the individual subunits in cells intoxicated, under various conditions, with hybrid heterotrimers. Using this approach, we observed the following. (i) The CdtA subunit remains on the cell surface of CHO cells in association with cholesterol-containing and cholesterol-depleted membrane. (ii) The CdtB subunit is exclusively in the cytosol and, after longer exposure times, localizes to the nucleus. (iii) The CdtC subunit is present on the cell surface and, to a greater extent, in the cytosol. These observations suggest that CdtC, but not CdtA, functions as a chaperone for CdtB entry into cells.
Insights
Cytolethal distending toxin (Cdt) subunit localization was studied using novel protein tagging. CdtC, not CdtA, appears to chaperone CdtB entry into cells, clarifying toxin intoxication mechanisms.
Area of Science:
- Microbiology
- Cell Biology
- Toxicology
Background:
- Cytolethal distending toxin (Cdt) is an AB-type toxin produced by Gram-negative bacteria.
- Cdt comprises three subunits (CdtA, CdtB, CdtC) and acts as a genotoxin.
- Understanding Cdt subunit interactions and intoxication mechanisms is crucial but incomplete.
Purpose of the Study:
- To investigate the intracellular localization of Cdt subunits in Chinese hamster ovary (CHO-K1) cells.
- To determine the roles of CdtA and CdtC in the cellular uptake of CdtB.
Main Methods:
- Engineered tetracysteine motifs in Cdt subunits for detection with fluorescein arsenical hairpin binding (FlAsH) dye.
- Utilized live-cell imaging and confocal microscopy to track subunit localization.
- Examined subunit distribution in cells treated with hybrid heterotrimers under various conditions.
Main Results:
- CdtA remained associated with the cell surface membrane.
- CdtB was found in the cytosol and later in the nucleus.
- CdtC localized to both the cell surface and cytosol.
Conclusions:
- CdtC facilitates the entry of CdtB into cells, acting as a chaperone.
- CdtA does not appear to play a role in CdtB cellular translocation.
- This study provides new insights into the Cdt intoxication pathway.

