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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Hypochlorite-oxidized low-density lipoprotein upregulates CD36 and PPAR gamma mRNA expression and modulates SR-BI gene expression in murine macrophages
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Hypochlorite-oxidized low-density lipoprotein upregulates CD36 and PPAR gamma mRNA expression and modulates SR-BI gene expression in murine macrophages

机译:次氯酸盐氧化的低密度脂蛋白上调小鼠巨噬细胞CD36和PPARγmRNA表达并调节SR-BI基因表达

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摘要

The uptake of oxidized low-density lipoprotein (oxLDL) by scavenger receptors of macrophages with resulting foam cell formation is considered a critical event in atherogenesis. Since hypochlorite-oxidized LDL (HOCl-LDL) has been shown to be recognized by macrophages and evidence was provided that HOCl-LDL is internalized via class B scavenger receptors CD36 and SR-BI, the regulatory relationships between CD36, SR-BI, and the nuclear transcription factor PPAR gamma in murine macrophages (RAW 264.7) on exposure to HOCl-LDL were examined. Using the highly sensitive real-time RT-PCR we could demonstrate that HOCl-LDL upregulated CD36 and PPAR gamma levels dose- and time dependently while modulating SR-BI message levels differently in dependence on HOCl-LDL concentration and incubation time. On exposure of macrophages to HOCl-LDL but not native LDL in varying concentrations, a significant positive correlation between CD36 and PPAR gamma (rho = 0.603, p = 0.001) was observed indicating the presence of a positive feedback mechanism by which HOCl-LDL could promote its own uptake. The transcriptional expression of SR-BI in macrophages was not significantly related to PPAR gamma mRNA levels after treatment with HOCl-LDL suggesting a differential regulation of the two members of the scavenger receptor class B family in response to HOCl-LDL.
机译:巨噬细胞的清除剂受体摄取氧化的低密度脂蛋白(oxLDL)导致泡沫细胞形成被认为是动脉粥样硬化的关键事件。由于已证明次氯酸盐氧化的LDL(HOCl-LDL)被巨噬细胞识别,并且提供了证据表明HOCl-LDL是通过B类清除剂受体CD36和SR-BI内在化的,因此CD36,SR-BI和检测了暴露于HOCl-LDL的鼠巨噬细胞(RAW 264.7)中的核转录因子PPARγ。使用高度灵敏的实时RT-PCR,我们可以证明HOCl-LDL依赖于剂量和时间上调CD36和PPARγ水平,而依赖于HOCl-LDL浓度和孵育时间则不同地调节SR-BI信息水平。在巨噬细胞暴露于不同浓度的HOCl-LDL而非天然LDL时,观察到CD36与PPARγ之间存在显着的正相关性(rho = 0.603,p = 0.001),表明存在一种正反馈机制,HOCl-LDL可以促进自己的吸收。在用HOC1-LDL处理后,巨噬细胞中SR-BI的转录表达与PPARγmRNA水平没有显着相关,表明响应于HOC1-LDL,清道夫受体B类家族的两个成员的差异调节。

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