Brd4 抑制通过阻断 FoxO4 介导的氧化应激缓解肾缺血/再灌注损伤诱导的细胞凋亡和内质网应激。
Inhibition of Brd4 alleviates renal ischemia/reperfusion injury-induced apoptosis and endoplasmic reticulum stress by blocking FoxO4-mediated oxidative stress.
机构信息
Department of Urology, Renmin Hospital of Wuhan University, Wuhan, 430060, Hubei, PR China.
Department of Urology, Renmin Hospital of Wuhan University, Wuhan, 430060, Hubei, PR China.
出版信息
Redox Biol. 2019 Jun;24:101195. doi: 10.1016/j.redox.2019.101195. Epub 2019 Apr 11.
Ischemia/reperfusion injury (I/R) is one of the leading causes of acute kidney injury (AKI) that typically occurs in renal surgeries. However, renal I/R still currently lacks effective therapeutic targets. In this study, we proved that inhibition of Brd4 with its selective inhibitor, JQ1, could exert a protective role in renal I/R injury in mice. Inhibiting Brd4 with either JQ1 or genetic knockdown resulted in reduction of endoplasmic reticulum stress (ERS)-associated protein and proapoptotic protein expression both in I/R-induced injury and hypoxia/reoxygenation (H/R) stimulation in HK-2 cells. H/R-induced apoptosis and ERS depended on oxidative stress in vitro. Moreover, FoxO4, which is involved in the generation of hydrogen peroxide, was up-regulated during H/R stimulation-mediated apoptosis and ERS, and this upregulation could be abolished by Brd4 inhibition. Consistently, FoxO4-mediated ROS generation was attenuated upon inhibition of Brd4 with JQ1 or siRNA against Brd4. Further, the transcriptional activity of FoxO4 was suppressed by PI3K and AKT phosphorylation, which are upstream signals of FoxO4 expression, and were enhanced by Brd4 both in vivo and in vitro. In conclusion, our results proved that Brd4 inhibition blocked renal apoptotic and ERS protein expression by preventing FoxO4-dependent ROS generation through the PI3K/AKT pathway, indicating that Brd4 could be a potential therapeutic target for renal I/R injury.
缺血/再灌注损伤(I/R)是急性肾损伤(AKI)的主要原因之一,通常发生在肾脏手术中。然而,肾脏 I/R 目前仍然缺乏有效的治疗靶点。在本研究中,我们证明了 Brd4 的选择性抑制剂 JQ1 抑制可在小鼠肾脏 I/R 损伤中发挥保护作用。无论是使用 JQ1 还是基因敲低抑制 Brd4,都会导致内质网应激(ERS)相关蛋白和促凋亡蛋白的表达减少,无论是在 I/R 诱导的损伤中还是在 HK-2 细胞的缺氧/复氧(H/R)刺激中。体外,H/R 诱导的细胞凋亡和 ERS 依赖于氧化应激。此外,FoxO4 参与过氧化氢的产生,在 H/R 刺激介导的细胞凋亡和 ERS 中上调,而 Brd4 抑制可消除这种上调。一致的是,FoxO4 介导的 ROS 生成在使用 JQ1 抑制 Brd4 或针对 Brd4 的 siRNA 抑制时会减弱。此外,FoxO4 的转录活性受到 PI3K 和 AKT 磷酸化的抑制,PI3K 和 AKT 磷酸化是 FoxO4 表达的上游信号,而 Brd4 无论是在体内还是体外都增强了 FoxO4 的表达。总之,我们的结果证明 Brd4 抑制通过 PI3K/AKT 途径阻止 FoxO4 依赖性 ROS 生成来阻断肾脏凋亡和 ERS 蛋白表达,表明 Brd4 可能是肾脏 I/R 损伤的潜在治疗靶点。
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Am J Transl Res. 2018-9-15
Pharmazie. 2018-9-1
Evid Based Complement Alternat Med. 2017
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