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炎症性核因子-κB激活促进肝脏载脂蛋白B100分泌:肝脏炎症与脂蛋白产生之间联系的证据。

Inflammatory NF-kappaB activation promotes hepatic apolipoprotein B100 secretion: evidence for a link between hepatic inflammation and lipoprotein production.

作者信息

Tsai Julie, Zhang Rianna, Qiu Wei, Su Qiaozhu, Naples Mark, Adeli Khosrow

机构信息

Department of Laboratory Medicine, University of Toronto, Canada.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2009 Jun;296(6):G1287-98. doi: 10.1152/ajpgi.90540.2008. Epub 2009 Apr 2.

Abstract

Insulin-resistant states are commonly associated with chronic inflammation and hepatic overproduction of apolipoprotein B100 (apoB100), leading to hypertriglyceridemia and a metabolic dyslipidemic profile. Molecular mechanisms linking hepatic inflammatory cascades and the pathways of apoB100-lipoprotein production are, however, unknown. In the present study, we employed a diet-induced, insulin-resistant hamster model, as well as cell culture studies, to investigate the potential link between activation of hepatic inflammatory nuclear factor-kappaB (NF-kappaB) signaling cascade and the synthesis and secretion of apoB100-containing lipoproteins. Using an established insulin-resistant animal model, the fructose-fed hamster, we found that feeding fructose (previously shown to induce hepatic inflammation) for as little as 4 days reduced hepatic IkappaB (inhibitor of NF-kappaB) level, indicating activation of the inflammatory NF-kappaB cascade. Importantly, IKK (IkappaB kinase) inhibition was found to suppress apoB100 overproduction in fructose-fed hamster hepatocytes. As IKK, the upstream activator of NF-kappaB has been shown to inhibit insulin signaling, and insulin is a major regulator of apoB100, we modulated IKK activity in primary hamster hepatocytes and HepG2 cells and assessed the effects on hepatic apoB100 biosynthesis. Inhibition of the IKK-NF-kappaB pathway by BMS345541 and activation of the pathway by adenoviral-mediated IKK overexpression decreased and increased newly synthesized apoB100 levels, respectively. Pulse-chase and metabolic labeling experiments revealed that IKK activation regulates apoB100 levels at the levels of apoB100 biosynthesis and protein stability. Inhibition of the IKK-NF-kappaB pathway significantly enhanced proteasomal degradation of hepatic apoB100, while direct IKK activation led to reduced degradation and increased apoB100 mRNA translation. Together, our results reveal important links between modulation of the inflammatory IKK-NF-kappaB signaling cascade and hepatic synthesis and secretion of apoB100-containing lipoproteins. Hepatic inflammation may be an important underlying factor in hepatic apoB100 overproduction observed in insulin resistance.

摘要

胰岛素抵抗状态通常与慢性炎症以及载脂蛋白B100(apoB100)的肝脏过度生成相关,从而导致高甘油三酯血症和代谢性血脂异常。然而,连接肝脏炎症级联反应和apoB100-脂蛋白产生途径的分子机制尚不清楚。在本研究中,我们采用饮食诱导的胰岛素抵抗仓鼠模型以及细胞培养研究,来探究肝脏炎症性核因子-κB(NF-κB)信号级联反应的激活与含apoB100脂蛋白的合成及分泌之间的潜在联系。使用已建立的胰岛素抵抗动物模型——果糖喂养的仓鼠,我们发现,仅喂养果糖4天(先前已证明可诱导肝脏炎症)就会降低肝脏IκB(NF-κB抑制剂)水平,表明炎症性NF-κB级联反应被激活。重要的是,发现抑制IKK(IκB激酶)可抑制果糖喂养的仓鼠肝细胞中apoB100的过度生成。由于NF-κB的上游激活剂IKK已被证明可抑制胰岛素信号传导,而胰岛素是apoB100的主要调节因子,我们在原代仓鼠肝细胞和HepG2细胞中调节IKK活性,并评估其对肝脏apoB100生物合成的影响。BMS345541对IKK-NF-κB途径的抑制以及腺病毒介导的IKK过表达对该途径的激活,分别降低和增加了新合成的apoB100水平。脉冲追踪和代谢标记实验表明,IKK激活在apoB100生物合成和蛋白质稳定性水平上调节apoB100水平。抑制IKK-NF-κB途径显著增强了肝脏apoB100的蛋白酶体降解,而直接激活IKK则导致降解减少和apoB100 mRNA翻译增加。总之,我们的结果揭示了炎症性IKK-NF-κB信号级联反应的调节与含apoB100脂蛋白的肝脏合成及分泌之间的重要联系。肝脏炎症可能是胰岛素抵抗中观察到的肝脏apoB100过度生成的一个重要潜在因素。

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