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DNA 损伤通过细胞质 DNA 传感器 STING 激活 I 型干扰素系统,以促进抗微生物先天免疫。

DNA damage primes the type I interferon system via the cytosolic DNA sensor STING to promote anti-microbial innate immunity.

机构信息

Laboratory for Molecular Infection Medicine Sweden, Umeå University, 90 187 Umeå, Sweden; Department of Molecular Biology, Umeå University, 90 187 Umeå, Sweden; Umeå Centre for Microbial Research, Umeå University, 90 187 Umeå, Sweden.

Helmholtz Centre for Infection Research, 38124 Braunschweig, Germany.

出版信息

Immunity. 2015 Feb 17;42(2):332-343. doi: 10.1016/j.immuni.2015.01.012.

Abstract

Dysfunction in Ataxia-telangiectasia mutated (ATM), a central component of the DNA repair machinery, results in Ataxia Telangiectasia (AT), a cancer-prone disease with a variety of inflammatory manifestations. By analyzing AT patient samples and Atm(-/-) mice, we found that unrepaired DNA lesions induce type I interferons (IFNs), resulting in enhanced anti-viral and anti-bacterial responses in Atm(-/-) mice. Priming of the type I interferon system by DNA damage involved release of DNA into the cytoplasm where it activated the cytosolic DNA sensing STING-mediated pathway, which in turn enhanced responses to innate stimuli by activating the expression of Toll-like receptors, RIG-I-like receptors, cytoplasmic DNA sensors, and their downstream signaling partners. This study provides a potential explanation for the inflammatory phenotype of AT patients and establishes damaged DNA as a cell intrinsic danger signal that primes the innate immune system for a rapid and amplified response to microbial and environmental threats.

摘要

共济失调毛细血管扩张突变蛋白(ATM)功能障碍是 DNA 修复机制的核心组成部分,会导致易患癌症的毛细血管扩张共济失调症(AT),这种疾病有多种炎症表现。通过分析 AT 患者样本和 Atm(-/-) 小鼠,我们发现未修复的 DNA 损伤会诱导 I 型干扰素(IFN),从而增强 Atm(-/-) 小鼠的抗病毒和抗细菌反应。DNA 损伤引发的 I 型干扰素系统的启动涉及将 DNA 释放到细胞质中,在细胞质中,它激活了细胞质 DNA 感应 STING 介导的途径,进而通过激活 Toll 样受体、RIG-I 样受体、细胞质 DNA 传感器及其下游信号伙伴的表达,增强对先天刺激的反应。这项研究为 AT 患者的炎症表型提供了一个潜在的解释,并将受损 DNA 确立为一种细胞内危险信号,为先天免疫系统对微生物和环境威胁做出快速和放大的反应做好准备。

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