首页> 美国卫生研究院文献>The Journal of Experimental Medicine >RNase H2 catalytic core Aicardi-Goutières syndrome–relatedmutant invokes cGAS–STING innate immune-sensing pathway inmice
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RNase H2 catalytic core Aicardi-Goutières syndrome–relatedmutant invokes cGAS–STING innate immune-sensing pathway inmice

机译:RNase H2催化核心艾卡迪-古特雷斯综合征相关突变体激活cGAS–STING内在的先天免疫感应途径老鼠

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摘要

The neuroinflammatory autoimmune disease Aicardi-Goutières syndrome (AGS) develops from mutations in genes encoding several nucleotide-processing proteins, including RNase H2. Defective RNase H2 may induce accumulation of self-nucleic acid species that trigger chronic type I interferon and inflammatory responses, leading to AGS pathology. We created a knock-in mouse model with an RNase H2 AGS mutation in a highly conserved residue of the catalytic subunit, Rnaseh2aG37S/G37S (G37S), to understand disease pathology. G37S homozygotes are perinatal lethal, in contrast to the early embryonic lethality previously reported for Rnaseh2b- or Rnaseh2c-null mice. Importantly, we found that the G37S mutation led to increased expression of interferon-stimulated genes dependent on the cGAS–STING signaling pathway. Ablation of STING in the G37S mice results in partial rescue of the perinatal lethality, with viable mice exhibiting white spotting on their ventral surface. We believe that the G37S knock-in mouse provides an excellent animal model for studying RNASEH2-associated autoimmune diseases.
机译:神经炎性自身免疫性疾病艾卡迪-古特雷斯综合症(AGS)由编码几种核苷酸加工蛋白(包括RNase H2)的基因突变发展而来。有缺陷的RNase H2可能诱导自身核酸种类的积累,从而触发慢性I型干扰素和炎症反应,从而导致AGS病理。我们创建了一种在催化亚基Rnaseh2a G37S / G37S (G37S)高度保守的残基中具有RNase H2 AGS突变的敲入小鼠模型,以了解疾病的病理学。与先前报道的Rnaseh2b-或Rnaseh2c-null小鼠的早期胚胎致死率相比,G37S纯合子具有围生期致死性。重要的是,我们发现G37S突变导致依赖cGAS–STING信号传导途径的干扰素刺激基因表达增加。 G37S小鼠中STING的消融可部分挽救围产期的致死性,其中存活小鼠的腹侧表面出现白色斑点。我们相信,G37S敲入小鼠为研究RNASEH2相关的自身免疫性疾病提供了出色的动物模型。

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