Chronic exposure to Cytolethal Distending Toxin (CDT) promotes a cGAS-dependent type I interferon response
Benoît J Pons1, Aurélie Pettes-Duler1, Claire Naylies1
1Toxalim (Research Centre in Food Toxicology), Université de Toulouse, INRAE, ENVT, INP-Purpan, UPS, Toulouse, France.
Abstract:
The Cytolethal Distending Toxin (CDT) is a bacterial genotoxin produced by pathogenic bacteria causing major foodborne diseases worldwide. CDT activates the DNA Damage Response and modulates the host immune response, but the precise relationship between these outcomes has not been addressed so far. Here, we show that chronic exposure to CDT in HeLa cells or mouse embryonic fibroblasts promotes a strong type I interferon (IFN) response that depends on the cytoplasmic DNA sensor cyclic guanosine monophosphate (GMP)-adenosine monophosphate (AMP) synthase (cGAS) through the recognition of micronuclei. Indeed, despite active cell cycle checkpoints and in contrast to other DNA damaging agents, cells exposed to CDT reach mitosis where they accumulate massive DNA damage, resulting in chromosome fragmentation and micronucleus formation in daughter cells. These mitotic phenotypes are observed with CDT from various origins and in cancer or normal cell lines. Finally, we show that CDT exposure in immortalized normal colonic epithelial cells is associated to cGAS protein loss and low type I IFN response, implying that CDT immunomodulatory function may vary depending on tissue and cell type. Thus, our results establish a direct link between CDT-induced DNA damage, genetic instability and the cellular immune response that may be relevant in the context of natural infection associated to chronic inflammation or carcinogenesis.
Insights
Cytolethal Distending Toxin (CDT) causes DNA damage, leading to micronuclei formation and a type I interferon immune response via cGAS. This link between DNA damage and immunity may impact chronic inflammation and cancer.
Area of Science:
- Microbiology
- Immunology
- Genetics
Background:
- Cytolethal Distending Toxin (CDT) is a bacterial genotoxin linked to foodborne illnesses.
- CDT triggers DNA Damage Response and immune modulation, but the connection is unclear.
Purpose of the Study:
- To investigate the relationship between CDT-induced DNA damage and host immune response.
- To elucidate the role of cGAS-mediated sensing in CDT's effects.
Main Methods:
- Chronic exposure of HeLa cells and mouse embryonic fibroblasts to CDT.
- Analysis of cell cycle progression, DNA damage, micronucleus formation, and type I interferon response.
- Investigation of cGAS pathway activation and protein levels.
Main Results:
- CDT exposure causes massive DNA damage and micronucleus formation during mitosis.
- A type I interferon response is activated, dependent on cGAS sensing of micronuclei.
- CDT-induced cGAS loss in colonic cells reduces the interferon response, indicating cell-type specificity.
Conclusions:
- CDT-induced genetic instability directly links to a cGAS-dependent immune response.
- This interplay is significant for understanding CDT's role in chronic inflammation and carcinogenesis.
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