首页> 美国卫生研究院文献>American Journal of Respiratory Cell and Molecular Biology >Novel Mechanism of Attenuation of LPS-Induced NF-κB Activation by the Heat Shock Protein 90 Inhibitor 17-N-allylamino-17-demethoxygeldanamycin in Human Lung Microvascular Endothelial Cells
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Novel Mechanism of Attenuation of LPS-Induced NF-κB Activation by the Heat Shock Protein 90 Inhibitor 17-N-allylamino-17-demethoxygeldanamycin in Human Lung Microvascular Endothelial Cells

机译:热激蛋白90抑制剂17-N-烯丙基氨基-17-去甲氧基格尔德霉素在人肺微血管内皮细胞中减弱LPS诱导的NF-κB活化的新机制。

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摘要

Heat shock protein (hsp) 90 inhibition attenuates NF-κB activation and blocks inflammation. However, the precise mechanism of NF-κB regulation by hsp90 in the endothelium is not clear. We investigated the mechanisms of hsp90 inhibition by 17-N-allylamino-17-demethoxygeldanamycin (17-AAG) on NF-κB activation by LPS in primary human lung microvascular endothelial cells. Transcriptional activation of NF-κB was measured by luciferase reporter assay, gene expression by real-time RT-PCR, DNA binding of transcription factors by chromatin immunoprecipitation assay, protein–protein interaction by coimmunoprecipitation/immunoblotting, histone deacetylase (HDAC)/histone acetyltransferase enzyme activity by fluorometry, and nucleosome eviction by partial microccocal DNase digestion. In human lung microvascular endothelial cells, 17-AAG–induced degradation of IKBα was accomplished regardless of the phosphorylation/ubiquitination state of the protein. Hence, 17-AAG did not block LPS-induced NF-κB nuclear translocation and DNA binding activity. Instead, 17-AAG blocked the recruitment of the coactivator, cAMP response element binding protein binding protein, and prevented the assembly of a transcriptionally competent RNA polymerase II complex at the κB elements of the IKBα (an NF-κB–responsive gene) promoter. The effect of LPS on IKBα mRNA expression was associated with rapid deacetylation of histone-H3(Lys9) and a dramatic down-regulation of core histone H3 binding. Even though treatment with an HDAC inhibitor produced the same effect as hsp90 inhibition, the effect of 17-AAG was independent of HDAC. We conclude that hsp90 inhibition attenuates NF-κB transcriptional activation by preventing coactivator recruitment and nucleosome eviction from the target promoter in human lung endothelial cells.
机译:热休克蛋白(hsp)90抑制可减弱NF-κB活化并阻止炎症。然而,hsp90调节内皮细胞NF-κB的确切机制尚不清楚。我们研究了17-N-烯丙基氨基-17-脱甲氧基格尔德霉素(17-AAG)对HPS90抑制机制的主要人肺微血管内皮细胞中LPS激活NF-κB的作用。通过荧光素酶报告基因测定,实时RT-PCR测定基因表达,通过染色质免疫沉淀测定转录因子与DNA的结合,通过共免疫沉淀/免疫印迹进行蛋白质-蛋白质相互作用,组蛋白脱乙酰基酶(HDAC)/组蛋白乙酰转移酶来测定NF-κB的转录激活通过荧光法测定酶活性,通过部分微球菌DNA酶消化除去核小体。在人肺微血管内皮细胞中,无论蛋白质的磷酸化/泛素化状态如何,均可完成17-AAG诱导的IKBα降解。因此,17-AAG不能阻断LPS诱导的NF-κB核移位和DNA结合活性。相反,17-AAG阻止了共激活因子cAMP反应元件结合蛋白结合蛋白的募集,并阻止了IKBα(一种NF-κB响应基因)启动子的κB元件上具有转录能力的RNA聚合酶II复合体的组装。 LPS对IKBαmRNA表达的影响与组蛋白H3(Lys9)的快速脱乙酰作用和核心组蛋白H3结合的急剧下调有关。即使使用HDAC抑制剂治疗产生与hsp90抑制相同的效果,但17-AAG的效果与HDAC无关。我们得出的结论是,hsp90抑制可通过防止人肺内皮细胞中的目标启动子从辅助启动子募集和核小体逐出而减弱NF-κB转录激活。

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