首页> 外文期刊>Circulation research: a journal of the American Heart Association >Cezanne regulates inflammatory responses to hypoxia in endothelial cells by targeting TRAF6 for Deubiquitination
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Cezanne regulates inflammatory responses to hypoxia in endothelial cells by targeting TRAF6 for Deubiquitination

机译:塞尚通过靶向TRAF6去泛素化调节内皮细胞对缺氧的炎症反应

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RATIONALE:: Hypoxia followed by reoxygenation promotes inflammation by activating nuclear factor κB transcription factors in endothelial cells (ECs). This process involves modification of the signaling intermediary tumor necrosis factor receptor-associated factor 6 with polyubiquitin chains. Thus, cellular mechanisms that suppress tumor necrosis factor receptor-associated factor 6 ubiquitination are potential therapeutic targets to reduce inflammation in hypoxic tissues. OBJECTIVE:: In this study, we tested the hypothesis that endothelial activation in response to hypoxia-reoxygenation can be influenced by Cezanne, a deubiquitinating enzyme that cleaves ubiquitin from specific modified proteins. METHODS AND RESULTS:: Studies of cultured ECs demonstrated that hypoxia (1% oxygen) induced Cezanne via p38 mitogen-activated protein kinase-dependent transcriptional and post-transcriptional mechanisms. Hypoxia-reoxygenation had minimal effects on proinflammatory signaling in unmanipulated ECs but significantly enhanced Lys63 polyubiquitination of tumor necrosis factor receptor-associated factor 6, activation of nuclear factor κB, and expression of inflammatory genes after silencing of Cezanne. Thus, although hypoxia primed cells for inflammatory activation, it simultaneously induced Cezanne, which impeded signaling to nuclear factor κB by suppressing tumor necrosis factor receptor-associated factor 6 ubiquitination. Similarly, ischemia induced Cezanne in the murine kidney in vascular ECs, glomerular ECs, podocytes, and epithelial cells, and genetic deletion of Cezanne enhanced renal inflammation and injury in murine kidneys exposed to ischemia followed by reperfusion. CONCLUSIONS:: We conclude that inflammatory responses to ischemia are controlled by a balance between ubiquitination and deubiquitination, and that Cezanne is a key regulator of this process. Our observations have important implications for therapeutic targeting of inflammation and injury during ischemia-reperfusion.
机译:理由:低氧再补氧通过激活内皮细胞(EC)中的核因子κB转录因子来促进炎症。该过程涉及用多聚泛素链修饰信号传导中间肿瘤坏死因子受体相关因子6。因此,抑制肿瘤坏死因子受体相关因子6泛素化的细胞机制是减少缺氧组织中炎症的潜在治疗靶标。目的::在这项研究中,我们测试了以下假设:响应缺氧-复氧反应的内皮细胞活化可能受塞尚(一种能从特定修饰蛋白上切割泛素的酶)切割的去泛素化酶的影响。方法和结果:对培养的EC的研究表明,低氧(1%氧气)通过p38丝裂原活化的蛋白激酶依赖性转录和转录后机制诱导了塞尚。缺氧-复氧对未操纵的EC中促炎信号的影响极小,但显着增强了肿瘤坏死因子受体相关因子6的Lys63多聚泛素化,核因子κB的激活以及塞尚的沉默后炎症基因的表达。因此,尽管低氧激活了炎症激活的细胞,但它同时诱导塞尚,通过抑制肿瘤坏死因子受体相关因子6泛素化,阻止了向核因子κB的信号传导。类似地,局部缺血在血管内皮细胞,肾小球内皮细胞,足细胞和上皮细胞中在鼠肾中诱导塞尚,并且塞尚的基因缺失增强了暴露于局部缺血再灌注的鼠肾的肾脏炎症和损伤。结论:我们得出结论,对缺血的炎症反应受泛素化和去泛素化之间的平衡控制,塞尚是该过程的关键调节剂。我们的观察结果对缺血再灌注过程中炎症和损伤的靶向治疗具有重要意义。

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