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首页> 外文期刊>The Journal of biological chemistry >P2X4 Activation Modulates Volume-sensitive Outwardly Rectifying Chloride Channels in Rat Hepatoma Cells
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P2X4 Activation Modulates Volume-sensitive Outwardly Rectifying Chloride Channels in Rat Hepatoma Cells

机译:P2X4活化调节大鼠肝癌细胞中体积敏感的向外整流氯化物通道

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Volume-sensitive outwardly rectifying (VSOR) Cl? channels are critical for the regulatory volume decrease (RVD) response triggered upon cell swelling. Recent evidence indicates that H2O2 plays an essential role in the activation of these channels and that H2O2 per se activates the channels under isotonic isovolumic conditions. However, a significant difference in the time course for current onset between H2O2-induced and hypotonicity-mediated VSOR Cl? activation is observed. In several cell types, cell swelling induced by hypotonic challenges triggers the release of ATP to the extracellular medium, which in turn, activates purinergic receptors and modulates cell volume regulation. In this study, we have addressed the effect of purinergic receptor activation on H2O2-induced and hypotonicity-mediated VSOR Cl? current activation. Here we show that rat hepatoma cells (HTC) exposed to a 33% hypotonic solution responded by rapidly activating VSOR Cl? current and releasing ATP to the extracellular medium. In contrast, cells exposed to 200 μm H2O2 VSOR Cl? current onset was significantly slower, and ATP release was not detected. In cells exposed to either 11% hypotonicity or 200 μm H2O2, exogenous addition of ATP in the presence of extracellular Ca2+ resulted in a decrease in the half-time for VSOR Cl? current onset. Conversely, in cells that overexpress a dominant-negative mutant of the ionotropic receptor P2X4 challenged with a 33% hypotonic solution, the half-time for VSOR Cl? current onset was significantly slowed down. Our results indicate that, at high hypotonic imbalances, swelling-induced ATP release activates the purinergic receptor P2X4, which in turn modulates the time course of VSOR Cl? current onset in a extracellular Ca2+-dependent manner.
机译:体积敏感的向外整流(Vsor)Cl?通道对于在细胞溶胀时触发的调节体积降低(RVD)响应至关重要。最近的证据表明,H2O2在激活这些通道的激活中起重要作用,并且H2O2本身在等渗储存条件下激活通道。但是,H2O2诱导和低渗介导VSOR CL的当前发生的时间课程的显着差异?观察到激活。在几种细胞类型中,通过低渗攻击引起的细胞肿胀触发了ATP向细胞外培养基的释放,这反过来激活嘌呤能受体并调节细胞体积调节。在这项研究中,我们已经解决了嘌呤能受体激活对H 2 O 2诱导和低渗介导的vsor Cl的影响?当前激活。在这里,我们显示大鼠肝癌细胞(HTC)暴露于33%的低渗溶液,通过快速激活VSOR CL响应?电流并释放ATP到细胞外培养基。相比之下,暴露于200μmH2O2vsor Cl的细胞?目前的发作显着较慢,未检测到ATP释放。在暴露于11%的低渗或200μmH2O2的细胞中,在细胞外CA2 +存在下的外源添加ATP导致VSOR CL的半时间减少?当前发作。相反,在过表达离子耐受受体p2x4的主导阴性突变体的细胞中,用33%的低渗溶液攻击,vsor cl的半时间?目前的发作显着减慢了。我们的结果表明,在高低旋转性失衡中,肿胀诱导的ATP释放激活嘌呤能受体P2X4,其又调节VSOR CL的时间过程?细胞外CA2 +依赖性方式的电流发作。

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