4.7 Article

cGAS is activated by DNA in a length-dependent manner

期刊

EMBO REPORTS
卷 18, 期 10, 页码 1707-1715

出版社

WILEY
DOI: 10.15252/embr.201744017

关键词

cGAS; DNA sensing; interferon; length dependence; STING

资金

  1. Boehringer Ingelheim Fonds
  2. Novo Nordisk Foundation [NNF13OC0006211, NNF15OC0017902]
  3. Lundbeck Foundation [R198-2015-171, R151-2013-14443]
  4. Danish Council for Independent Research, Medical Research [12-124330, 4183-00032B, 4004-00237]
  5. Danish Council for Independent Research, Natural Science [4181-00012B]
  6. Augustinus Fond
  7. Lundbeck Foundation [R198-2015-171, R151-2013-14443, R238-2016-2708] Funding Source: researchfish
  8. Novo Nordisk Fonden [NNF15OC0017902, NNF13OC0006211] Funding Source: researchfish

向作者/读者索取更多资源

Cytosolic DNA stimulates innate immune responses, including type I interferons (IFN), which have antiviral and immunomodulatory activities. Cyclic GMP-AMP synthase (cGAS) recognizes cytoplasmic DNA and signals via STING to induce IFN production. Despite the importance of DNA in innate immunity, the nature of the DNA that stimulates IFN production is not well described. Using low DNA concentrations, we show that dsDNA induces IFN in a length-dependent manner. This is observed over a wide length-span of DNA, ranging from the minimal stimulatory length to several kilobases, and is fully dependent on cGAS irrespective of DNA length. Importantly, in vitro studies reveal that long DNA activates recombinant human cGAS more efficiently than short DNA, showing that length-dependent DNA recognition is an intrinsic property of cGAS independent of accessory proteins. Collectively, this work identifies long DNA as the molecular entity stimulating the cGAS pathway upon cytosolic DNA challenge such as viral infections.

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