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NLRP3 inflammasome expression is driven by NF-kB in cultured hepatocytes

机译:NLRP3炎性小体表达是由培养的肝细胞中的NF-kB驱动的

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The inflammasomes are cytoplasmic multiprotein complexes that are responsible for activation of inflammatory reactions. In principle, there are four individual inflammasome branches (NLRP1, NLRP3, NLRC4/NALP4, and AIM2) that mediate the cleavage and activation of Caspase-1 and IL-1 (3 that in turn lead to a complex network of cellular reactions initiating local and systemic inflammatory reactions. We have recently shown that NLRP3 expression is virtually absent in primary cultured hepatocytes and that in vitro the stimulation of hepatocytes with lipopolysaccharides results in strong activation of NLRP3 expression. We here demonstrate that this activation can be blocked by the NF-kB activation inhibitor QNZ or by infection with an adenoviral expression vector constitutively expressing a superrepressor of NF-kB. We show that QNZ blocks NF-KB-dependent expression of TNF-a, IL-10 and NLRP3. Likewise, the superrepressor of NF-kB prevents expression of NLRP3 and significantly reduces expression of inflammatory marker genes in liver cells. In a primary murine hepatoma cells, the concomitant depletion of NEMO and Caspase-8 resulted in a significant suppression of NLRP3 expression after Lipopolysaccharide challenge. Moreover, we demonstrate that a 1.3-kbp fragment located in close proximity of the most upstream transcriptional start site of the human NLRP3 gene that harbours one putative octamer NF-kB binding site renders LPS sensitivity in reporter gene assay. We conclude that NF-kB signalling is a necessary prerequisite for proper activation of the NLRP3 inflammasome in primary hepatocytes.
机译:炎性小体是负责激活炎症反应的胞质多蛋白复合物。原则上,有四个独立的炎性体分支(NLRP1,NLRP3,NLRC4 / NALP4和AIM2)介导Caspase-1和IL-1的裂解和激活(3进而导致复杂的细胞反应网络启动局部最近我们发现原代培养的肝细胞中实际上不存在NLRP3表达,而在体外用脂多糖刺激肝细胞会导致NLRP3表达的强烈激活,我们在此证明该激活可以被NF-κB阻断kB激活抑制剂QNZ或感染组成型表达NF-kB的超阻遏物的腺病毒表达载体。我们证明QNZ阻断了NF-KB依赖的TNF-a,IL-10和NLRP3的表达。 kB阻止了NLRP3的表达,并显着降低了肝细胞中炎症标志物基因的表达在原代小鼠肝癌细胞中,NEMO a的同时消耗脂多糖攻击后,nd Caspase-8显着抑制了NLRP3的表达。此外,我们证明了1.3 kbp片段位于人类NLRP3基因最上游的转录起始位点附近,该片段带有一个推定的八聚体NF-kB结合位点,在报告基因分析中具有LPS敏感性。我们得出结论,NF-kB信号传导是原代肝细胞中NLRP3炎性小体正确激活的必要先决条件。

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