首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Activation of endothelial TRPV4 channels mediates flow-induced dilation in human coronary arterioles: role of Ca2+ entry and mitochondrial ROS signaling
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Activation of endothelial TRPV4 channels mediates flow-induced dilation in human coronary arterioles: role of Ca2+ entry and mitochondrial ROS signaling

机译:内皮TRPV4通道的激活介导人冠状小动脉中血流诱导的扩张:Ca2 +进入和线粒体ROS信号传导的作用

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摘要

In human coronary arterioles (HCAs) from patients with coronary artery disease, flow-induced dilation is mediated by a unique mechanism involving the release of H2O2 from the mitochondria of endothelial cells (ECs). How flow activates ECs to elicit the mitochondrial release of H2O2 remains unclear. Here, we examined the role of the transient receptor potential vanilloid type 4 (TRPV4) channel, a mechanosensitive Ca2+-permeable cation channel, in mediating ROS formation and flow-induced dilation in HCAs. Using RT-PCR, Western blot analysis, and immunohistochemical analysis, we detected the mRNA and protein expression of TRPV4 channels in ECs of HCAs and cultured human coronary artery ECs (HCAECs). In HCAECs, 4α-phorbol-12,13-didecanoate (4α-PDD), a selective TRPV4 agonist, markedly increased (via Ca2+ influx) intracellular Ca2+ concentration. In isolated HCAs, activation of TRPV4 channels by 4α-PDD resulted in a potent concentration-dependent dilation, and the dilation was inhibited by removal of the endothelium and by catalase, a H2O2-metabolizing enzyme. Fluorescence ROS assays showed that 4α-PDD increased the production of mitochondrial superoxide in HCAECs. 4α-PDD also enhanced the production of H2O2 and superoxide in HCAs. Finally, we found that flow-induced dilation of HCAs was markedly inhibited by different TRPV4 antagonists and TRPV4-specific small interfering RNA. In conclusion, the endothelial TRPV4 channel is critically involved in flow-mediated dilation of HCAs. TRPV4-mediated Ca2+ entry may be an important signaling event leading to the flow-induced release of mitochondrial ROS in HCAs. Elucidation of this novel TRPV4-ROS pathway may improve our understanding of the pathogenesis of coronary artery disease and/or other cardiovascular disorders.
机译:在患有冠状动脉疾病的患者的人冠状动脉(HCA)中,流量诱导的扩张是由一种独特的机制介导的,该机制涉及从内皮细胞(ECs)的线粒体释放H2O2。流动如何激活EC引起H2O2的线粒体释放尚不清楚。在这里,我们研究了瞬态受体电位4型香草酸(TRPV4)通道(一种机械敏感的Ca 2 + 渗透性阳离子通道)在介导HCA中的ROS形成和流致膨胀中的作用。使用RT-PCR,蛋白质印迹分析和免疫组化分析,我们检测了HCAs和培养的人冠状动脉ECs(HCAECs)ECs中TRPV4通道的mRNA和蛋白表达。在HCAECs中,选择性TRPV4激动剂4α-phorbol-12,13-十二烷酸酯(4α-PDD)显着增加(通过Ca 2 + 流入)细胞内Ca 2 + 浓度。在分离的HCA中,通过4α-PDD激活TRPV4通道会导致有效的浓度依赖性扩张,并且通过去除内皮和过氧化氢酶(过氧化氢酶)抑制了扩张。荧光ROS测定表明4α-PDD增加了HCAECs中线粒体超氧化物的产生。 4α-PDD还增强了HCA中H2O2和超氧化物的产生。最后,我们发现,不同的TRPV4拮抗剂和TRPV4特异性小干扰RNA明显抑制了HCAs的血流诱导扩张。总之,内皮TRPV4通道关键参与HCA的流量介导的扩张。 TRPV4介导的Ca 2 + 的进入可能是导致HCAs中血流诱导的线粒体ROS释放的重要信号事件。阐明这种新颖的TRPV4-ROS途径可能会增进我们对冠状动脉疾病和/或其他心血管疾病发病机理的了解。

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