DNA damage could lead to the accumulation of cytosolic DNA, and the cytosolic DNA-sensing pathway has been implicated in multiple inflammatory diseases. However, the role of cytosolic DNA-sensing pathway in asthma pathogenesis is still unclear. This article explored the role of airway epithelial cyclic GMP-AMP synthase (cGAS), the major sensor of cytosolic dsDNA, in asthma pathogenesis. Cytosolic dsDNA accumulation in airway epithelial cells (ECs) was detected in the setting of allergic inflammation both in vitro and in vivo. Mice with cGAS deletion in airway ECs were used for OVA- or house dust mite (HDM)-induced allergic airway inflammation. Additionally, the effects of cGAS knockdown on IL-33-induced GM-CSF production and the mechanisms by which IL-33 induced cytosolic dsDNA accumulation in human bronchial epithelial (HBE) cells were explored. Increased accumulation of cytosolic dsDNA was observed in airway epithelium of OVA- or HDM-challenged mice and in HBE cells treated with IL-33. Deletion of cGAS in the airway ECs of mice significantly attenuated the allergic airway inflammation induced by OVA or HDM. Mechanistically, cGAS participates in promoting TH2 immunity likely via regulating the production of airway epithelial GM-CSF. Furthermore, Mito-TEMPO could reduce IL-33-induced cytoplasmic dsDNA accumulation in HBE cells possibly through suppressing the release of mitochondrial DNA into the cytosol. In conclusion, airway epithelial cGAS plays an important role via sensing the cytosolic dsDNA in asthma pathogenesis and could serve as a promising therapeutic target against allergic airway inflammation.

译文

DNA损伤可能导致胞质DNA的积累,并且胞质DNA的传感途径与多种炎症性疾病有关。但是,尚不清楚胞质DNA传感途径在哮喘发病中的作用。本文探讨了气道上皮环状GMP-AMP合酶(cGAS)(胞质dsDNA的主要传感器)在哮喘发病中的作用。在体外和体内过敏性炎症的情况下,都检测到气道上皮细胞(ECs)中的胞质dsDNA积累。气道EC中具有cGAS缺失的小鼠用于OVA或屋尘螨(HDM)诱发的过敏性气道炎症。另外,探索了cGAS敲低对IL-33诱导的GM-CSF产生的影响,以及IL-33诱导人支气管上皮(HBE)细胞中胞质dsDNA积累的机制。在OVA或HDM攻击的小鼠的气道上皮以及用IL-33处理的HBE细胞中,观察到胞质dsDNA的积累增加。小鼠气道EC中cGAS的删除显着减轻了由OVA或HDM引起的过敏性气道炎症。从机制上讲,cGAS可能通过调节气道上皮GM-CSF的产生参与促进TH2免疫。此外,Mito-TEMPO可能通过抑制线粒体DNA释放到细胞质中来减少HBE细胞中IL-33诱导的胞质dsDNA积累。综上所述,气道上皮cGAS通过检测胞质中的dsDNA在哮喘发病中起着重要的作用,并且可以作为对抗变应性气道炎症的有希望的治疗靶标。

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