Ribonuclease H2 mutations induce a cGAS/STING-dependent innate immune response

核糖核酸酶 H2 突变诱导 cGAS/STING 依赖性先天免疫反应

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作者:Karen J Mackenzie, Paula Carroll, Laura Lettice, Žygimantė Tarnauskaitė, Kaalak Reddy, Flora Dix, Ailsa Revuelta, Erika Abbondati, Rachel E Rigby, Björn Rabe, Fiona Kilanowski, Graeme Grimes, Adeline Fluteau, Paul S Devenney, Robert E Hill, Martin Am Reijns, Andrew P Jackson

Abstract

Aicardi-Goutières syndrome (AGS) provides a monogenic model of nucleic acid-mediated inflammation relevant to the pathogenesis of systemic autoimmunity. Mutations that impair ribonuclease (RNase) H2 enzyme function are the most frequent cause of this autoinflammatory disorder of childhood and are also associated with systemic lupus erythematosus. Reduced processing of eitherRNA:DNAhybrid or genome-embedded ribonucleotide substrates is thought to lead to activation of a yet undefined nucleic acid-sensing pathway. Here, we establishRnaseh2b(A174T/A174T)knock-in mice as a subclinical model of disease, identifying significant interferon-stimulated gene (ISG) transcript upregulation that recapitulates theISGsignature seen inAGSpatients. The inflammatory response is dependent on the nucleic acid sensor cyclicGMP-AMPsynthase (cGAS) and its adaptorSTINGand is associated with reduced cellular ribonucleotide excision repair activity and increasedDNAdamage. This suggests thatcGAS/STINGis a key nucleic acid-sensing pathway relevant toAGS, providing additional insight into disease pathogenesis relevant to the development of therapeutics for this childhood-onset interferonopathy and adult systemic autoimmune disorders.

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