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Coplanar polychlorinated biphenyl-induced CYP1A1 is regulated through caveolae signaling in vascular endothelial cells

机译:共面多氯联苯诱导的CYP1A1通过小窝信号在血管内皮细胞中被调控

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摘要

Polychlorinated biphenyls (PCBs) are persistent environmental contaminants that can induce inflammatory processes in the vascular endothelium. We hypothesize that the plasma membrane microdomains called caveolae are critical in endothelial activation and toxicity induced by PCBs. Caveolae are particularly abundant in endothelial cells and play a major role in endothelial trafficking and the regulation of signaling pathways associated with the pathology of vascular diseases. We focused on the role of caveolae and their major protein component, caveolin-1 (Cav-1), on aryl hydrocarbon receptor (AhR)-mediated induction of cytochrome P450 1A1 (CYP1A1) by coplanar PCBs. Endothelial cell exposure to PCB77 increased both caveolin-1 and CYP1A1 levels in a time-dependent manner in total cell lysates, with a maximum increase at 6 h. Furthermore, PCB77 accumulated mainly in the caveolae-rich fraction, as determined by gas chromatograph-mass spectrometry. Immunoprecipitation analysis revealed that PCB77 increased AhR binding to caveolin-1. Silencing of caveolin-1 significantly attenuated PCB77-mediated induction of CYP1A1 and oxidative stress. Similar effects were observed in caveolin-1 null mice treated with PCB77. These data suggest that caveolae may play a role in regulating vascular toxicity induced by persistent environmental pollutants such as coplanar PCBs. This may have implications in understanding mechanisms of inflammatory diseases induced by environmental pollutants.
机译:多氯联苯(PCB)是持续存在的环境污染物,可在血管内皮中诱发炎症过程。我们假设称为小窝的质膜微区在由PCBs诱导的内皮激活和毒性中至关重要。小窝在内皮细胞中特别丰富,并在内皮运输和与血管疾病病理相关的信号传导途径的调节中起主要作用。我们专注于caveolae及其主要蛋白组分caveolin-1(Cav-1)在芳烃受体(AhR)介导的共面PCBs诱导细胞色素P450 1A1(CYP1A1)上的作用。内皮细胞暴露于PCB77时,总细胞裂解物中的Caveolin-1和CYP1A1水平均呈时间依赖性,在6 h时最大。此外,通过气相色谱-质谱法测定,PCB77主要积累在富含小孔的部分中。免疫沉淀分析表明,PCB77增加了AhR与小窝蛋白1的结合。 Caveolin-1的沉默显着减弱了PCB77介导的CYP1A1的诱导和氧化应激。在用PCB77处理的Caveolin-1无效小鼠中观察到了类似的效果。这些数据表明,海绵体可能在调节由持久性环境污染物(例如共面多氯联苯)引起的血管毒性中发挥作用。这可能对理解由环境污染物引起的炎性疾病的机制有影响。

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