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

机译:核糖核酸酶H2突变诱导注册会计师/ STING-dependent先天免疫反应

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摘要

Aicardi-Goutieres 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 either RNA:DNA hybrid or genome-embedded ribonucleotide substrates is thought to lead to activation of a yet undefined nucleic acid-sensing pathway. Here, we establish Rnaseh2b(A174T/A174T) knock-in mice as a subclinical model of disease, identifying significant interferon-stimulated gene (ISG) transcript upregulation that recapitulates the ISG signature seen in AGS patients. The inflammatory response is dependent on the nucleic acid sensor cyclic GMP-AMP synthase (cGAS) and its adaptor STING and is associated with reduced cellular ribonucleotide excision repair activity and increased DNA damage. This suggests that cGAS/STING is a key nucleic acid-sensing pathway relevant to AGS, providing additional insight into disease pathogenesis relevant to the development of therapeutics for this childhood-onset interferonopathy and adult systemic autoimmune disorders.
机译:Aicardi-Goutieres综合症(AGS)提供了单基因的核酸acid-mediated模式炎症相关的发病机制系统性自身免疫。核糖核酸酶(核糖核酸酶)H2酶功能这autoinflammatory的最常见原因童年和障碍也相关系统性红斑狼疮。混合动力或处理的RNA: DNAgenome-embedded核苷酸基板是认为导致激活未定义核酸酸感性途径。Rnaseh2b (A174T / A174T)敲入小鼠作为亚临床疾病模型,确定重要的干扰素刺激基因(研究小组)成绩单upregulation那概括研究小组签名在AGS的病人。炎症反应是依赖于核酸酸传感器循环GMP-AMP合成酶(注册会计师)和适配器刺和与减少有关细胞核苷酸切除修复活动并增加DNA损伤。注册会计师/刺酸感性通路是一个关键的核酸有关AGS,提供额外的洞察力相关疾病发病机理疗法的发展儿童interferonopathy和成人系统性自身免疫性疾病。

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