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泛素稳态的破坏促进了巨噬细胞的氧化防御。

Perturbation of ubiquitin homeostasis promotes macrophage oxidative defenses.

机构信息

Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan, 48109, United States of America.

Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, Ann Arbor, Michigan, 48109, United States of America.

出版信息

Sci Rep. 2019 Jul 15;9(1):10245. doi: 10.1038/s41598-019-46526-9.

Abstract

The innate immune system senses microbial ligands through pattern recognition and triggers downstream signaling cascades to promote inflammation and immune defense mechanisms. Emerging evidence suggests that cells also recognize alterations in host processes induced by infection as triggers. Protein ubiquitination and deubiquitination are post-translational modification processes essential for signaling and maintenance of cellular homeostasis, and infections can cause global alterations in the host ubiquitin proteome. Here we used a chemical biology approach to perturb the cellular ubiquitin proteome as a simplified model to study the impact of ubiquitin homeostasis alteration on macrophage function. Perturbation of ubiquitin homeostasis led to a rapid and transient burst of reactive oxygen species (ROS) that promoted macrophage inflammatory and anti-infective capacity. Moreover, we found that ROS production was dependent on the NOX2 phagocyte NADPH oxidase. Global alteration of the ubiquitin proteome also enhanced proinflammatory cytokine production in mice stimulated with a sub-lethal dose of LPS. Collectively, our findings suggest that major changes in the host ubiquitin landscape may be a potent signal to rapidly deploy innate immune defenses.

摘要

先天免疫系统通过模式识别感知微生物配体,并触发下游信号级联反应,以促进炎症和免疫防御机制。新出现的证据表明,细胞还可以将感染引起的宿主过程的改变识别为触发因素。蛋白质泛素化和去泛素化是信号转导和维持细胞内稳态所必需的翻译后修饰过程,感染会导致宿主泛素蛋白组发生全局改变。在这里,我们使用化学生物学方法来干扰细胞内的泛素蛋白组,作为研究泛素动态平衡改变对巨噬细胞功能影响的简化模型。泛素动态平衡的干扰导致活性氧(ROS)的快速和短暂爆发,从而促进巨噬细胞的炎症和抗感染能力。此外,我们发现 ROS 的产生依赖于吞噬细胞 NADPH 氧化酶的 NOX2。泛素蛋白组的全局改变也增强了用亚致死剂量 LPS 刺激的小鼠中促炎细胞因子的产生。总的来说,我们的研究结果表明,宿主泛素景观的重大变化可能是快速部署先天免疫防御的有效信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa49/6629656/36d4e4d35bc8/41598_2019_46526_Fig1_HTML.jpg

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