Mitochondrial H2O2 in Lung Antigen-Presenting Cells Blocks NF-κB Activation to Prevent Unwarranted Immune Activation

肺抗原呈递细胞中的线粒体 H2O2 阻断 NF-κB 激活,从而防止不必要的免疫激活

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作者:Anupriya Khare, Mahesh Raundhal, Krishnendu Chakraborty, Sudipta Das, Catherine Corey, Christelle K Kamga, Kelly Quesnelle, Claudette St Croix, Simon C Watkins, Christina Morse, Timothy B Oriss, Rachael Huff, Rachel Hannum, Prabir Ray, Sruti Shiva, Anuradha Ray

Abstract

Inhalation of environmental antigens such as allergens does not always induce inflammation in the respiratory tract. While antigen-presenting cells (APCs), including dendritic cells and macrophages, take up inhaled antigens, the cell-intrinsic molecular mechanisms that prevent an inflammatory response during this process, such as activation of the transcription factor NF-κB, are not well understood. Here, we show that the nuclear receptor PPARγ plays a critical role in blocking NF-κB activation in response to inhaled antigens to preserve immune tolerance. Tolerance induction promoted mitochondrial respiration, generation of H2O2, and suppression of NF-κB activation in WT, but not PPARγ-deficient, APCs. Forced restoration of H2O2 in PPARγ-deficient cells suppressed IκBα degradation and NF-κB activation. Conversely, scavenging reactive oxygen species from mitochondria promoted IκBα degradation with loss of regulatory and promotion of inflammatory T cell responses in vivo. Thus, communication between PPARγ and the mitochondria maintains immune quiescence in the airways.

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