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PMID: 27428429 Published · ppublish English

Upregulated LINE-1 Activity in the Fanconi Anemia Cancer Susceptibility Syndrome Leads to Spontaneous Pro-inflammatory Cytokine Production.

EBioMedicine ·Vol. 8 ·0000-00-00

Brégnard Christelle, Guerra Jessica, Déjardin Stéphanie, Passalacqua Frank, Benkirane Monsef, Laguette Nadine

Abstract

Fanconi Anemia (FA) is a genetic disorder characterized by elevated cancer susceptibility and pro-inflammatory cytokine production. Using SLX4(FANCP) deficiency as a working model, we questioned the trigger for chronic inflammation in FA. We found that absence of SLX4 caused cytoplasmic DNA accumulation, including sequences deriving from active Long INterspersed Element-1 (LINE-1), triggering the cGAS-STING pathway to elicit interferon (IFN) expression. In agreement, absence of SLX4 leads to upregulated LINE-1 retrotransposition. Importantly, similar results were obtained with the FANCD2 upstream activator of SLX4. Furthermore, treatment of FA cells with the Tenofovir reverse transcriptase inhibitor (RTi), that prevents endogenous retrotransposition, decreased both accumulation of cytoplasmic DNA and pro-inflammatory signaling. Collectively, our data suggest a contribution of endogenous RT activities to the generation of immunogenic cytoplasmic nucleic acids responsible for inflammation in FA. The additional observation that RTi decreased pro-inflammatory cytokine production induced by DNA replication stress-inducing drugs further demonstrates the contribution of endogenous RTs to sustaining chronic inflammation. Altogether, our data open perspectives in the prevention of adverse effects of chronic inflammation in tumorigenesis.

Keywords
Cytoplasmic DNA DNA damage Fanconi Anemia Inflammation Innate immune sensing Interferon SLX4 complex cGAS-STING endogenous retroelement
Article Info
Journal
EBioMedicine
Abbr.
EBioMedicine
Published
0000-00-00
Indexed
2016-07-19
Updated
2016-07-20
Language
English
Country/Region
Netherlands
NLM ID
101647039
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