Science · 2020 · 192 citations · 24 references
Molecular RegulationInnate Immune SystemImmunologyMolecular BiologyCell DeathImmunologic MechanismMolecular GeneticsInnate ImmunityDna-cgas ComplexesTranscriptional RegulationAutophagyInnate Immune ActivationNuclear DnaCell SignalingGenome InstabilityCgas ActivityDna ReplicationGene ExpressionCell BiologyChromatinNatural SciencesGene RegulationSystems BiologyMedicineNuclear Membrane Integrity
The appearance of DNA in the cytosol is perceived as a danger signal that stimulates potent immune responses through cyclic guanosine monophosphate-adenosine monophosphate synthase (cGAS). How cells regulate the activity of cGAS toward self-DNA and guard against potentially damaging autoinflammatory responses is a fundamental biological question. Here, we identify barrier-to-autointegration factor 1 (BAF) as a natural opponent of cGAS activity on genomic self-DNA. We show that BAF dynamically outcompetes cGAS for DNA binding, hence prohibiting the formation of DNA-cGAS complexes that are essential for enzymatic activity. Upon acute loss of nuclear membrane integrity, BAF is necessary to restrict cGAS activity on exposed DNA. Our observations reveal a safeguard mechanism, distinct from physical separation, by which cells protect themselves against aberrant immune responses toward genomic DNA.
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Nuclear envelope rupture and repair during cancer cell migration
Céline Denais, Rachel M. Gilbert, Philipp Isermann et al. · Science · 2016 · 1.3K citations · Full text