Publication | Open Access
DNA-induced liquid phase condensation of cGAS activates innate immune signaling
975
Citations
21
References
2018
Year
Innate Immune SystemImmunologyMolecular BiologyImmunologic MechanismCgas Enzyme ActivityInnate ImmunityCgas N TerminusHost ResponseCgas-dna Phase SeparationBiochemistryDna ReplicationAutoimmunityGene ExpressionCell BiologyChromatinNatural SciencesMetalloproteinPathogenesisImmune SignalingMedicine
The binding of DNA to cyclic GMP-AMP synthase (cGAS) leads to the production of the secondary messenger cyclic GMP-AMP (cGAMP), which activates innate immune responses. We have shown that DNA binding to cGAS robustly induced the formation of liquidlike droplets in which cGAS was activated. The disordered and positively charged cGAS N terminus enhanced cGAS-DNA phase separation by increasing the valencies of DNA binding. Long DNA was more efficient in promoting cGAS liquid phase separation and cGAS enzyme activity than short DNA. Moreover, free zinc ions enhanced cGAS enzyme activity both in vitro and in cells by promoting cGAS-DNA phase separation. These results demonstrated that the DNA-induced phase transition of cGAS promotes cGAMP production and innate immune signaling.
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