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MRTF-A steers an epigenetic complex to activate endothelin-induced pro-inflammatory transcription in vascular smooth muscle cells

机译:MRTF-A操纵于血管平滑肌细胞中活化内皮素诱导的内皮素诱导的促炎症转录

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Endothelin (ET-1) was initially identified as a potent vasoconstrictor contributing to the maintenance of vascular rhythm. Later studies have implicated ET-1, when aberrantly up-regulated within the vasculature, in a range of human pathologies associated with disruption of vascular homeostasis. ET-1 has been shown to invoke strong pro-inflammatory response in vascular smooth muscle cells (VSMCs); the underlying mechanism, however, remains elusive. Here, we report that the transcriptional modulator MRTF-Amediates the activation of pro-inflammatory mediators by ET-1 in VSMCs. ET-1 increased nuclear enrichment and activity of MRTF-A in cultured VSMCs. MRTF-A silencing attenuated ET-1 induced synthesis and release of pro-inflammatory mediators including IL-6, MCP-1 and IL-1 likely as a result of diminished NF-kappa B activity. In addition, MRTF-A was indispensible for the accumulation of active histone modifications on the gene promoters. Of intrigue, MRTF-A interacted with and recruited ASH2, a component of the mammalian histone methyltransferase complex, to transactivate pro-inflammatory genes in response to ET-1 treatment. The chromatin remodeling proteins BRG1 and BRM were also required for ET-1-dependent induction of pro-inflammatory mediators by communicating with ASH2, a process dependent on MRTF-A. In conclusion, our data have identified a novel epigenetic complex responsible for vascular inflammation inflicted by ET-1.
机译:最初将内皮素(ET-1)鉴定为有助于维持血管节律的有效的血管收缩剂。后来的研究在脉管系统内处于异常上调的情况下,在血管系统内的一系列人体病理学中具有牵连的ET-1,与血管稳态的破坏相关。 ET-1已被证明在血管平滑肌细胞(VSMCs)中调用强烈的促炎反应;然而,潜在机制仍然难以捉摸。在这里,我们报告转录调节剂MRTF-amediates在VSMC中通过ET-1激活促炎介质。 ET-1在培养的VSMC中增加了MRTF-A的核富集和活性。 MRTF-A沉默衰减的ET-1诱导的合成和释放促炎介质,包括IL-6,MCP-1和IL-1,其可能减少了NF-Kappa B活性。此外,MRTF-A对于基因启动子积累积极组蛋白修饰是不可或缺的。阴谋,MRTF-A与哺乳动物组甲基转移酶复合物的ASH2相互作用,哺乳动物组甲基转移酶复合物的组分,以反应于ET-1治疗的促炎序列基因。通过与ASH2连通,还需要通过与ASH2汇流进行促炎介质的ET-1依赖性诱导来进行染色质改造蛋白BRG1和BRM。依赖于MRTF-A的方法。总之,我们的数据鉴定了一种对ET-1造成的血管炎症的新型表观遗传复合物。

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