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Updated: Aug 23, 2026

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Published on: January 24, 2025
A versatile cGAMP reporter reveals principles of cGAS activation by DNA damage and chromosome instability
Vivianne Lebrec1, Alexandra Kanellou2, Lauren R Davies2
1Genome Stability and Innate Immunity Group, Division of Cell and Molecular Biology, The Institute of Cancer Research, London, UK. vivianne.lebrec@icr.ac.uk.
Abstract:
cGAS is the primary innate immune DNA sensor. On binding DNA, cGAS generates cGAMP, ultimately driving inflammation. Although normally silenced on self-DNA, genotoxic stress can activate cGAS, proposed to be mediated by micronuclei, chromosome bridges and DNA:RNA hybrids. However, mechanistically, this is poorly understood due to a lack of sensitive and selective single-cell cGAS activation assays. Here we solve this with an improved cGAMP reporter for microscopy, flow cytometry and biochemical assays. Strikingly, we find that genotoxic stress-mediated cGAS activation is a rare event that is not driven by enrichment on micronuclei and occurs by mechanisms that vary in dependence on the genotoxic stress. Following chromosome mis-segregation, cGAS activation correlates with bridge association but, notably, ionizing radiation activates cGAS independently of bridges. Whereas simple DNA:RNA hybrids are inert, more complex structures such as R-loops activate cGAS. Our work revises the cGAS signalling framework and introduces a flexible tool to examine it.
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