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Deoxycholic Acid Upregulates Serum Golgi Protein 73 through Activating NF-κB Pathway and Destroying Golgi Structure in Liver Disease

机译:脱氧胆酸通过激活NF-κB途径来推解血清Golgi蛋白质73并在肝病中破坏Golgi结构

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摘要

Golgi protein 73 (GP73) is upregulated in a variety of liver diseases, yet the detailed mechanism is poorly characterized. We analyzed GP73 in a retrospective cohort including 4211 patients with chronic liver disease (CLD) or hepatocellular carcinoma (HCC). The effect of deoxycholic acid (DCA) and nuclear factor-kappa B (NF-κB) on expression and release of GP73 in Huh-7 and SMMC7721 cells were studied. A mouse study was used to confirm our findings in vivo. A positive correlation was found between serum GP73 and total bile acid (TBA) in cirrhotic patients (r = 0.540, p < 0.001), higher than that in non-cirrhotic CLD (r = 0.318, p < 0.001) and HCC (r = 0.353, p < 0.001) patients. In Huh-7 and SMMC7721 cells, DCA upregulated the expression and release of GP73 in a dose- and time-dependent manner. After overexpressing NF-κB p65, the promoter activity, GP73 messenger RNA (mRNA) level, and supernatant GP73 level were increased. The promotion effect of DCA on GP73 release was attenuated after inhibiting the NF-κB pathway. Mutating the binding sites of NF-κB in the sequence of the GP73 promoter led to a declined promoting effect of DCA on GP73. The upregulation role of DCA in GP73 expression through the NF-κB pathway was confirmed in vivo. In addition, exposure to DCA caused disassembly of Golgi apparatus. In summary, DCA upregulates the expression and release of GP73 via activating the NF-κB pathway and destroying the Golgi structure.
机译:Golgi蛋白质73(GP73)在各种肝脏疾病中上调,但具体机制表征不佳。我们分析了在回顾性队列中的GP73,包括4211例慢性肝病(CLD)或肝细胞癌(HCC)。研究了脱氧胆酸(DCA)和核因子-κB(NF-κB)对HUH-7和SMMC7721细胞中GP73表达和释放的影响。鼠标研究用于确认我们的研究结果。血清GP73和肝硬化患者的总胆汁酸(TBA)之间发现阳性相关性(r = 0.540,p <0.001),高于非肝硬化CLD(r = 0.318,p <0.001)和hcc(r = 0.353,P <0.001)患者。在HUH-7和SMMC7721细胞中,DCA以剂量和时间依赖的方式上调了GP73的表达和释放。过表达NF-κBP65后,提高启动子活性,GP73信使RNA(mRNA)水平和上清液GP73水平。抑制NF-κB途径后,DCA对GP73释放的促进效果。在GP73启动子的序列中突变NF-κB的结合位点导致DCA在GP73上的下降促进作用。 DCA在GP73通过NF-κB途径中的表达的上调作用在体内确认。此外,暴露于DCA引起的GOLGI装置的拆卸。总之,DCA通过激活NF-κB途径并破坏GOLGI结构来提高GP73的表达和释放。

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