The Asthma Risk Gene, GSDMB, Promotes Mitochondrial DNA-induced ISGs Expression.

Tao Liu, Julian Hecker, Siqi Liu, Xianliang Rui, Nathan Boyer, Jennifer Wang, Yuzhen Yu, Yihan Zhang, Hongmei Mou, Luis Guillermo Gomez-Escobar, Augustine M K Choi, Benjamin A Raby, Scott T Weiss, Xiaobo Zhou
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Abstract

Released mitochondrial DNA (mtDNA) in cells activates cGAS-STING pathway, which induces expression of interferon-stimulated genes (ISGs) and thereby promotes inflammation, as frequently seen in asthmatic airways. However, whether the genetic determinant, Gasdermin B (GSDMB), the most replicated asthma risk gene, regulates this pathway remains unknown. We set out to determine whether and how GSDMB regulates mtDNA-activated cGAS-STING pathway and subsequent ISGs induction in human airway epithelial cells. Using qPCR, ELISA, native polyacrylamide gel electrophoresis, co-immunoprecipitation and immunofluorescence assays, we evaluated the regulation of GSDMB on cGAS-STING pathway in both BEAS-2B cells and primary normal human bronchial epithelial cells (nHBEs). mtDNA was extracted in plasma samples from human asthmatics and the correlation between mtDNA levels and eosinophil counts was analyzed. GSDMB is significantly associated with RANTES expression in asthmatic nasal epithelial brushing samples from the Genes-environments and Admixture in Latino Americans (GALA) II study. Over-expression of GSDMB promotes DNA-induced IFN and ISGs expression in bronchial epithelial BEAS-2B cells and nHBEs. Conversely, knockout of GSDMB led to weakened induction of interferon (IFNs) and ISGs in BEAS-2B cells. Mechanistically, GSDMB interacts with the C-terminus of STING, promoting the translocation of STING to Golgi, leading to the phosphorylation of IRF3 and induction of IFNs and ISGs. mtDNA copy number in serum from asthmatics was significantly correlated with blood eosinophil counts especially in male subjects. GSDMB promotes the activation of mtDNA and poly (dA:dT)-induced activation of cGAS-STING pathway in airway epithelial cells, leading to enhanced induction of ISGs.

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哮喘风险基因 GSDMB 促进线粒体 DNA 诱导的 ISGs 表达。
细胞中释放的线粒体 DNA(mtDNA)会激活 cGAS-STING 通路,诱导干扰素刺激基因(ISGs)的表达,从而促进炎症,这在哮喘气道中经常出现。然而,哮喘风险基因--Gasdermin B(GSDMB)--这一遗传决定因素是否调控这一通路仍是未知数。我们试图确定 GSDMB 是否以及如何调控 mtDNA 激活的 cGAS-STING 通路以及随后在人气道上皮细胞中诱导 ISGs。我们采用 qPCR、ELISA、原生聚丙烯酰胺凝胶电泳、共沉淀免疫和免疫荧光检测等方法,评估了 GSDMB 对 BEAS-2B 细胞和原代正常人支气管上皮细胞(nHBEs)中 cGAS-STING 通路的调控。在拉美裔美国人基因环境与融合(GALA)II 研究中,GSDMB 与哮喘患者鼻腔上皮刷洗样本中 RANTES 的表达明显相关。在支气管上皮 BEAS-2B 细胞和 nHBEs 中,GSDMB 的过度表达会促进 DNA 诱导的 IFN 和 ISGs 的表达。相反,敲除 GSDMB 会导致 BEAS-2B 细胞中干扰素(IFNs)和 ISGs 的诱导减弱。从机理上讲,GSDMB 与 STING 的 C 端相互作用,促进 STING 转位至高尔基体,导致 IRF3 磷酸化并诱导 IFNs 和 ISGs。GSDMB 可促进气道上皮细胞中 mtDNA 的活化和 poly (dA:dT) 诱导的 cGAS-STING 通路的活化,从而增强 ISGs 的诱导。
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