首页> 外文期刊>Journal of Surgical Research: Clinical and Laboratory Investigation >LPS induces HMGB1 relocation and release by activating the NF-κB-CBP signal transduction pathway in the murine macrophage-like cell line RAW264.7
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LPS induces HMGB1 relocation and release by activating the NF-κB-CBP signal transduction pathway in the murine macrophage-like cell line RAW264.7

机译:LPS通过激活鼠巨噬细胞样细胞系RAW264.7中的NF-κB-CBP信号转导途径诱导HMGB1的重新定位和释放

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Background: High mobility group protein B1 (HMGB1) is an important late inflammatory mediator in sepsis. Understanding the mechanisms that regulate HMGB1 release from cells and their downstream signal transduction pathways may lead to the ability to develop anti-HMGB1 therapies to treat inflammation. Materials and Methods: We stimulated murine macrophage-like RAW 264.7 cells with lipopolysaccharide (LPS) and LPS+ ethylpyruvate (EP) and examined the resulting HMGB1 expression and release. We also studied the expression of related signal transduction factors (NF-κB, p38 MAPK, and CBP). Results and Conclusion: Gene expression of HMGB1 mRNA in RAW264.7 cell showed no significant change at 0-18 h after stimulation with LPS, but increased significantly at 24, 36, and 48 h. HMGB1 mRNA expression in the LPS+EP group was significantly lower than in LPS alone. HMGB1 was distributed mainly in the nucleus; the cytoplasmic level was low before LPS stimulation. After stimulation with LPS, cytoplasmic HMGB1 increased gradually and plateaued at a high level at 12-48 h. Nuclear HMGB1 decreased gradually at 12-24 h, then increased, maintaining a comparatively high level at 36-48 h. EP prevented this pattern significantly. LPS induced p38 MAPK activation and NF-κB signal pathways first, followed by CBP activation. Activated CBP acetylated HMGB1 was stored in a crino-lysosome and secreted activated NF-κB resulted in increased transcription and synthesis of HMGB1, but the expression of up-regulated HMGB1 mRNA was delayed. Extracellular HMGB1 originated from early synthetic reserves present in the nucleus. New HMGB1 protein was synthesized in the nucleus and transferred into the cytoplasm, causing an increase in HMGB1 in the nucleus and cytoplasm. EP inhibits HMGB1 mRNA up-regulation and release from LPS- stimulated macrophages. The molecular function of EP is to attenuate the activation p38 MAPK, NF-κB, and CBP signaling pathways.
机译:背景:高迁移率族蛋白B1(HMGB1)是脓毒症中重要的晚期炎症介质。了解调节HMGB1从细胞释放的机制及其下游信号转导途径可能会导致开发抗HMGB1疗法来治疗炎症的能力。材料和方法:我们用脂多糖(LPS)和LPS +丙酮酸乙酯(EP)刺激了鼠巨噬细胞样RAW 264.7细胞,并检查了所得HMGB1的表达和释放。我们还研究了相关信号转导因子(NF-κB,p38 MAPK和CBP)的表达。结果与结论:LPS刺激后0-18h,RAW264.7细胞中HMGB1 mRNA的基因表达无明显变化,但在24、36、48h明显升高。 LPS + EP组的HMGB1 mRNA表达明显低于单独LPS。 HMGB1主要分布在细胞核中。 LPS刺激前细胞质水平较低。用LPS刺激后,胞质HMGB1逐渐增加,并在12-48 h达到高水平。核HMGB1在12-24小时逐渐减少,然后增加,在36-48小时保持相对较高的水平。 EP大大阻止了这种模式。 LPS首先诱导p38 MAPK激活和NF-κB信号通路,然后诱导CBP激活。活化的CBP乙酰化的HMGB1被储存在绵羊溶酶体中,分泌的活化NF-κB导致HMGB1的转录和合成增加,但是上调的HMGB1 mRNA的表达被延迟。细胞外HMGB1起源于细胞核中存在的早期合成储备。新的HMGB1蛋白在细胞核中合成,并转移到细胞质中,导致细胞核和细胞质中HMGB1的增加。 EP抑制HMGB1 mRNA的上调并从LPS刺激的巨噬细胞中释放。 EP的分子功能是减弱p38 MAPK,NF-κB和CBP信号通路的激活。

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