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首页> 外文期刊>Cell death & disease. >Brd4 inhibition ameliorates Pyocyanin-mediated macrophage dysfunction via transcriptional repression of reactive oxygen and nitrogen free radical pathways
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Brd4 inhibition ameliorates Pyocyanin-mediated macrophage dysfunction via transcriptional repression of reactive oxygen and nitrogen free radical pathways

机译:BRD4抑制可通过转录抑制反应性氧气和氮自由基途径改善粘稠的血盈巨噬细胞功能障碍

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Macrophages play critical roles in the first-line immune defense against airway infections caused by Pseudomonas aeruginosa (PA). The redox-active phenazine-pyocyanin (PCN), as one of the most essential virulence factors, facilities PA-related infection via a wide spectrum of cellular oxidative damages. However, little is known for PCN cytotoxicity in macrophages. In this study, besides showing PCN-mediated reactive oxygen species (ROS) indeed involved in macrophage viability and function impairment, we at the first time demonstrated a novel role of reactive nitrogen species (RNS) pathway causing cellular damage in PCN-challenged macrophages. Using small molecule inhibitor JQ1 targeting Bromodomain and extra-terminal family proteins, we showed restrained iNOS-dependent nitric oxide (NO) production correlated with abolished Brd4 recruitment to the NOS2 (encoding inducible nitric oxide synthase-iNOS) promoter. Application of JQ1 diminished PCN-mediated peroxynitrite (ONOO-) that followed ROS and NO induction, restored macrophage survival and bacteria clearance as well as repressed local inflammation in PA/PCN-challenged mice lungs. Our results uncover a novel link between PCN-mediated macrophage dysfunction and reactive free radicals that rely on Brd4-dependent transcription modulation of multiple stress-response genes, suggesting Brd4 could be a promising therapeutic target in treating PA-related lung infection.
机译:巨噬细胞在一线免疫防御中发挥着关键作用,防止铜绿假单胞菌(PA)引起的气道感染。氧化还原活性吩嗪 - 碧菁(PCN),作为最基本的毒力因子之一,通过广泛的细胞氧化损伤的含量PA相关感染。然而,在巨噬细胞中众所周知,在PCN细胞毒性中众所周知。在本研究中,除了表现出PCN介导的活性氧物质(ROS),确实涉及巨噬细胞活力和功能损伤,我们首次展示了反应性氮物质(RNS)途径的新作用,导致PCN攻击巨噬细胞的细胞损伤。使用小分子抑制剂JQ1靶向溴琼瓜和外末端家族蛋白,我们显示抑制的Inos依赖性一氧化物(NO)产生与废除BRD4募集到NOS2(编码诱导型一氧化氮合酶-InOS)启动子相关。 JQ1的应用降低了PCN介导的过氧硝酸盐(ONOO-),然后ros和NO诱导,恢复巨噬细胞存活和细菌间隙,以及PA / PCN挑战小鼠肺中的局部炎症。我们的结果揭示了PCN介导的巨噬细胞功能障碍和反应自由基之间的新颖联系,依赖于多种应激反应基因的BRD4依赖性转录调节,表明BRD4可以是治疗PA相关肺部感染的有前途的治疗靶标。

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