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ERO 在氧化还原依赖的内皮信号转导中起重要作用。

An essential role for EROS in redox-dependent endothelial signal transduction.

机构信息

Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School, 75 Francis Street, Boston, MA, 02115, USA; Molecular Biology and Biochemistry, Gottfried Schatz Research Center, Medical University of Graz, Neue Stiftingtalstraße 6/6, 8010, Graz, Austria.

Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School, 75 Francis Street, Boston, MA, 02115, USA.

出版信息

Redox Biol. 2024 Jul;73:103214. doi: 10.1016/j.redox.2024.103214. Epub 2024 May 24.

Abstract

The chaperone protein EROS ("Essential for Reactive Oxygen Species") was recently discovered in phagocytes. EROS was shown to regulate the abundance of the ROS-producing enzyme NADPH oxidase isoform 2 (NOX2) and to control ROS-mediated cell killing. Reactive oxygen species are important not only in immune surveillance, but also modulate physiological signaling responses in multiple tissues. The roles of EROS have not been previously explored in the context of oxidant-modulated cell signaling. Here we show that EROS plays a key role in ROS-dependent signal transduction in vascular endothelial cells. We used siRNA-mediated knockdown and developed CRISPR/Cas9 knockout of EROS in human umbilical vein endothelial cells (HUVEC), both of which cause a significant decrease in the abundance of NOX2 protein, associated with a marked decrease in RAC1, a small G protein that activates NOX2. Loss of EROS also attenuates receptor-mediated hydrogen peroxide (HO) and Ca signaling, disrupts cytoskeleton organization, decreases cell migration, and promotes cellular senescence. EROS knockdown blocks agonist-modulated eNOS phosphorylation and nitric oxide (NO) generation. These effects of EROS knockdown are strikingly similar to the alterations in endothelial cell responses that we previously observed following RAC1 knockdown. Proteomic analyses following EROS or RAC1 knockdown in endothelial cells showed that reduced abundance of these two distinct proteins led to largely overlapping effects on endothelial biological processes, including oxidoreductase, protein phosphorylation, and endothelial nitric oxide synthase (eNOS) pathways. These studies demonstrate that EROS plays a central role in oxidant-modulated endothelial cell signaling by modulating NOX2 and RAC1.

摘要

伴侣蛋白 EROS(“对于活性氧物种是必需的”)最近在吞噬细胞中被发现。ERO 被证明可以调节产生活性氧的酶 NADPH 氧化酶同工型 2(NOX2)的丰度,并控制 ROS 介导的细胞杀伤。活性氧不仅在免疫监视中很重要,而且还调节多种组织中的生理信号反应。ERO 在氧化剂调节的细胞信号转导中的作用以前尚未被探索。在这里,我们显示 EROS 在血管内皮细胞中 ROS 依赖性信号转导中起关键作用。我们使用 siRNA 介导的敲低和开发 CRISPR/Cas9 敲除 EROS 在人脐静脉内皮细胞(HUVEC)中,这两者都导致 NOX2 蛋白的丰度显着降低,与 RAC1 的显着减少相关,RAC1 是一种激活 NOX2 的小 G 蛋白。ERO 的缺失也减弱了受体介导的过氧化氢(HO)和 Ca 信号转导,破坏了细胞骨架组织,降低了细胞迁移,并促进了细胞衰老。ERO 敲低阻断激动剂调节的 eNOS 磷酸化和一氧化氮(NO)生成。ERO 敲低的这些影响与我们以前观察到的 RAC1 敲低后内皮细胞反应的改变非常相似。ERO 或 RAC1 敲低后内皮细胞的蛋白质组学分析表明,这两种不同蛋白质的丰度降低导致内皮细胞生物学过程的影响基本重叠,包括氧化还原酶、蛋白质磷酸化和内皮型一氧化氮合酶(eNOS)途径。这些研究表明 EROS 通过调节 NOX2 和 RAC1 在氧化剂调节的内皮细胞信号转导中起核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ecb/11153901/b4ad90e03124/ga1.jpg

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