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首页> 外文期刊>American Journal of Physiology >Polychlorinated biphenyl quinone induces endothelial barrier dysregulation by setting the cross talk between VE-cadherin, focal adhesion, and MAPK signaling
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Polychlorinated biphenyl quinone induces endothelial barrier dysregulation by setting the cross talk between VE-cadherin, focal adhesion, and MAPK signaling

机译:通过在Ve-Cadherin,局灶性粘附和MAPK信号之间设置横谈,聚氯氯联苯醌诱导内皮屏障障碍。

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Environmental hazardous material polychlorinated biphenyl (PCB) exposure is associated with vascular endothelial dysfunction, which may increase the risk of cardiovascular diseases and cancer metastasis. Our previous studies illustrated the cytotoxic, antiproliferative, and genotoxic effects of a synthetic, quinone-type, highly reactive metabolite of PCB, 2,3,5-trichloro-6-phenyl-[1,4]benzoquinone (PCB29-pQ). Here, we used it as the model compound to investigate its effects on vascular endothelial integrity and permeability. We demonstrated that noncyto-toxic doses of PCB29-pQ induced vascular endothelial (VE)-cadherin junction disassembly by increasing the phosphorylation of VE-cadherin at Y658. We also found that focal adhesion assembly was required for PCB29-pQ-induced junction breakdown. Focal adhesion site-associated actin stress fibers may serve as holding points for cytoskeletal tension to regulate the cellular contractility. PCB29-pQ exposure promoted the association of actin stress fibers with paxillin-containing focal adhesion sites and enlarged the size/number of focal adhesions. In addition, PCB29-pQ treatment induced phosphorylation of paxillin at Y118. By using pharmacological inhibition, we further demonstrated that p38 activation was necessary for paxillin phosphorylation, whereas extracellular signal-regulated kinases-1/2 activation regulated VE-cadherin phosphorylation. In conclusion, these results indicated that PCB29-pQ stimulates endothelial hyperpermeability by mediating VE-cadherin disassembly, junction breakdown, and focal adhesion formation. Intervention strategies targeting focal adhesion and MAPK signaling could be used as therapeutic approaches for preventing adverse cardiovascular health effects induced by environmental toxicants such as PCBs.
机译:环境危险物质多氯联苯(PCB)曝光与血管内皮功能障碍有关,可能增加心血管疾病和癌症转移的风险。我们以前的研究表明了合成,醌型,高反应性代谢物的细胞毒性,抗增殖和遗传毒性作用,PCB,2,3,5-三氯-6-苯基-[1,4]苯醌(PCB29-PQ)。在这里,我们用它作为模型化合物,以研究其对血管内皮完整性和渗透性的影响。我们证明,通过增加Y658在Y658的Ve-Cadherin的磷酸化通过增加Ve-Cadherin的磷酸化,证明了非含有毒性的血管内皮(Ve)-Cadherin结拆卸。我们还发现PCB29-PQ诱导的结析需要局灶性粘附组件。局灶性粘附位点相关的肌动蛋白应激纤维可以用作细胞骨骼张力的保持点,以调节细胞收缩性。 PCB29-PQ曝光促进肌动蛋白应力纤维与含卵蛋白的焦相粘附位点的关联,并扩大局部粘连的尺寸/数量。此外,PCB29-PQ治疗诱导帕斯林在Y118的磷酸化。通过使用药理学抑制,我们进一步证明了P38活化对于帕西林磷酸化是必需的,而细胞外信号调节激酶-1 / 2活化调节的Ve-Cadherin磷酸化。总之,这些结果表明,PCB29-PQ通过介导VE-CADHERIN拆卸,结击穿和局灶性粘附形成刺激内皮高耐甲型。靶向局灶性粘附和MAPK信号传导的干预策略可作为预防诸如PCB等环境毒物诱导的不良心血管健康效应的治疗方法。

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