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Alcohol exposure regulates heat shock transcription factor binding and heat shock proteins 70 and 90 in monocytes and macrophages: implication for TNF-α regulation

机译:酒精暴露调节单核细胞和巨噬细胞中的热激转录因子结合和热激蛋白70和90:对TNF-α调节的意义

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摘要

Immunomodulatory effects of alcohol use involve regulation of innate immune cell function leading to liver disease. Alteration of inflammatory responses by alcohol is linked to dysregulated TNF-α production. Alcohol-induced oxidative stress also contributes to alterations in inflammatory cell activity. Heat shock proteins (hsps) and the heat shock transcription factor-1 (HSF-1) induced by oxidative stress regulate NF-κB activation and TNF-α gene expression in monocytes and macrophages. Here, we report that in vitro alcohol treatment induced and augmented LPS-induced HSF-1 nuclear translocation and DNA-binding activity in monocytes and macrophages. Supershift analysis revealed that alcohol regulated HSF-1- and not HSF-2-binding activity. Hsp70, a target gene induced by HSF-1, was transiently increased within 24 h by alcohol, but extended alcohol exposure decreased hsp70 in macrophages. The alcohol-induced alteration of hsp70 correlated with a concomitant change in hsp70 promoter activity. Hsp90, another HSF-1 target gene, was decreased during short-term alcohol but increased after prolonged alcohol exposure. Decreased hsp90-HSF-1 complexes after short-term alcohol indicated dissociation of HSF-1 from hsp90. On the other hand, hsp90 interacted with client protein IκB kinase β, a signaling intermediate of the LPS pathway, followed by IκBα degradation and increased NF-κB activity after chronic alcohol exposure, indicating that hsp90 plays an important role in supporting inflammatory cytokine production. Inhibition of hsp90 using geldanamycin prevented prolonged alcohol-induced elevation in LPS-induced NF-κB and TNF-α production. These results suggest that alcohol exposure differentially regulates hsp70 and hsp90 via HSF-1 activation. Further, hsp90 regulates TNF-α production in macrophages contributing to alcohol-induced inflammation.
机译:饮酒的免疫调节作用涉及导致肝病的先天免疫细胞功能的调节。酒精引起的炎症反应改变与TNF-α产生失调有关。酒精引起的氧化应激也有助于炎症细胞活性的改变。氧化应激诱导的热休克蛋白(hsps)和热休克转录因子-1(HSF-1)调节单核细胞和巨噬细胞中的NF-κB活化和TNF-α基因表达。在这里,我们报告体外酒精处理诱导和增强单核细胞和巨噬细胞中LPS诱导的HSF-1核易位和DNA结合活性。超转变分析表明,醇调节HSF-1-而不是HSF-2-结合活性。 Hsp-1是由HSF-1诱导的靶基因,在24小时内被酒精短暂增加,但是长时间的酒精暴露会降低巨噬细胞中的hsp70。酒精引起的hsp70改变与hsp70启动子活性的伴随变化有关。 Hsp90,另一个HSF-1靶基因,在短期饮酒期间降低,但在长时间饮酒后升高。短期饮酒后hsp90-HSF-1复合物减少,表明HSF-1从hsp90分离。另一方面,hsp90与客体蛋白IκB激酶β(LPS途径的信号传导中间产物)相互作用,随后在慢性酒精暴露后,IκBα降解并增加NF-κB活性,这表明hsp90在支持炎症细胞因子的产生中起着重要作用。使用格尔德霉素抑制hsp90可以防止酒精诱导的LPS诱导的NF-κB和TNF-α产生的时间延长。这些结果表明,酒精暴露通过HSF-1激活差异调节hsp70和hsp90。此外,hsp90调节巨噬细胞中TNF-α的产生,从而导致酒精引起的炎症。

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