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Updated: Aug 17, 2026

Detection of Toxin Translocation into the Host Cytosol by Surface Plasmon Resonance
Published on: January 3, 2012
Cellular internalization of cytolethal distending toxin: a new end to a known pathway
Lina Guerra1, Ken Teter, Brendan N Lilley
1Microbiology and Tumorbiology Center, Karolinska Institutet, Stockholm, Sweden.
Abstract:
The cytolethal distending toxins (CDTs) are unique in their ability to induce DNA damage, activate checkpoint responses and cause cell cycle arrest or apoptosis in intoxicated cells. However, little is known about their cellular internalization pathway. We demonstrate that binding of the Haemophilus ducreyi CDT (HdCDT) on the plasma membrane of sensitive cells was abolished by cholesterol extraction with methyl-beta-cyclodextrin. The toxin was internalized via the Golgi complex, and retrogradely transported to the endoplasmic reticulum (ER), as assessed by N-linked glycosylation. Further translocation from the ER did not require the ER-associated degradation (ERAD) pathway, and was Derlin-1 independent. The genotoxic activity of HdCDT was dependent on its internalization and its DNase activity, as induction of DNA double-stranded breaks was prevented in Brefeldin A-treated cells and in cells exposed to a catalytically inactive toxin. Our data contribute to a better understanding of the CDT mode of action and highlight two important aspects of the biology of this bacterial toxin family: (i) HdCDT translocation from the ER to the nucleus does not involve the classical pathways followed by other retrogradely transported toxins and (ii) toxin internalization is crucial for execution of its genotoxic activity.
Insights
The cytolethal distending toxin (CDT) from Haemophilus ducreyi enters cells and travels to the ER. Its internalization is essential for causing DNA damage and cell cycle arrest.
Area of Science:
- Microbiology
- Cell Biology
- Toxicology
Background:
- Cytolethal distending toxins (CDTs) induce DNA damage, cell cycle arrest, and apoptosis.
- The cellular internalization pathways of CDTs remain largely unknown.
Purpose of the Study:
- To elucidate the cellular internalization pathway of the Haemophilus ducreyi CDT (HdCDT).
- To determine the role of toxin internalization in its genotoxic activity.
Main Methods:
- Cholesterol extraction using methyl-beta-cyclodextrin to assess plasma membrane binding.
- Analysis of toxin transport via the Golgi complex and endoplasmic reticulum (ER) using N-linked glycosylation.
- Investigating ER-associated degradation (ERAD) pathway and Derlin-1 independence.
- Assessing genotoxicity in cells treated with Brefeldin A or catalytically inactive toxin.
Main Results:
- HdCDT binding to the plasma membrane is cholesterol-dependent.
- The toxin is internalized via the Golgi complex and retrogradely transported to the ER.
- Translocation from the ER to the nucleus is independent of ERAD and Derlin-1.
- Genotoxic activity requires toxin internalization and DNase activity.
Conclusions:
- HdCDT utilizes a unique pathway for ER-to-nucleus translocation, distinct from other retrogradely transported toxins.
- Toxin internalization is a critical step for the execution of HdCDT's genotoxic effects.
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