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Cross Talk Between p22phox and ATF4 in the Endothelial Unfolded Protein Response

机译:在内皮展开蛋白反应中的P22phox和ATF4之间交叉谈话

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摘要

Background: Cardiovascular diseases have been associated with stress in the endoplasmic reticulum (ER) and accumulation of unfolded proteins leading to the unfolded protein response (UPR). Reactive oxygen species (ROS) such as superoxide and H_(2)O_(2) derived from NADPH oxidases have been implicated in the pathogenesis of cardiovascular diseases. ROS have also been associated with ER stress. The role NADPH oxidases in the UPR is, however, not completely resolved yet. Aim: In this study, we investigated the role of p22phox, an essential component of most NADPH oxidases, in the UPR of endothelial cells. Results: Induction of ER stress increased p22phox expression at the transcriptional level. p22phox was identified as novel target of the UPR transcription factor ATF4 (activator of transcription factor 4) under ER stress conditions by promoter analyses and ChIP. Depletion of ATF4 and p22phox diminished the levels of superoxide and H_(2)O_(2) under ER stress conditions. On the contrary, p22phox was instrumental in increasing eIF2α phosphorylation and subsequent ATF4 expression on induction of ER stress by chemicals, oxysterols, or severe hypoxia in vitro and in vivo , leading to increased expression of CHOP and activation of effector caspases. Innovation: p22phox is a novel target of ATF4 in response to ER stress, which can promote the PERK-ATF4 branch of the UPR in vitro and in vivo . Conclusion: p22phox-dependent NADPH oxidases are important mediators of ER stress driving the UPR.
机译:背景:心血管疾病与内质网(ER)中的应力相关,并积累展开蛋白质导致展开蛋白质反应(UPR)。衍生自NADPH氧化酶的反应性氧物质(ROS)如超氧化物和H_(2)O_(2)涉及心血管疾病的发病机制。 ROS也与ER压力有关。然而,UPR中的角色氧化酶尚未完全解决。目的:在这项研究中,我们研究了P22phox,内皮细胞UPR中最多NADPH氧化酶的基本组分的作用。结果:ER应激诱导增加了转录水平的P22phox表达。通过启动子分析和芯片将P22phox被鉴定为UPR转录因子ATF4(转录因子4激活剂4)的新靶标。 ATF4和P22phox的耗竭降低了ER应激条件下超氧化物和H_(2)O_(2)的水平。相反,P22phox在增加EIF2α磷酸化和随后在体外和体内诱导ER压力的ATF4表达时辅助,导致碎片和效应性胱天壳的活化的表达增加。创新:P22phox是ATF4的新靶标,响应于ER应激,这可以在体外和体内促进UPR的Perk-ATF4分支。结论:P22phox依赖性NADPH氧化酶是ER应力驱动UPR的重要介质。

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  • 来源
    《Antioxidants and redox signalling》 |2019年第1期|共16页
  • 作者单位

    Experimental and Molecular Pediatric Cardiology German Heart Center Munich at the Technical;

    Experimental and Molecular Pediatric Cardiology German Heart Center Munich at the Technical;

    Experimental and Molecular Pediatric Cardiology German Heart Center Munich at the Technical;

    Experimental and Molecular Pediatric Cardiology German Heart Center Munich at the Technical;

    Experimental and Molecular Pediatric Cardiology German Heart Center Munich at the Technical;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

    p22phox; ROS; UPR; ATF4; redox signaling;

    机译:p22phox;ros;upr;atf4;redox信号传导;

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