首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Activation of the Ca2+-sensing receptors increases currents through inward rectifier K+ channels via activation of phosphatidylinositol 4-kinase
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Activation of the Ca2+-sensing receptors increases currents through inward rectifier K+ channels via activation of phosphatidylinositol 4-kinase

机译:Ca2 +受体的激活通过磷脂酰肌醇4-激酶的激活增加了通过内向整流器K +通道的电流

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Inward rectifier K+ channels are important for maintaining normal electrical function in many cell types. The proper function of these channels requires the presence of membrane phosphoinositide 4,5-bisphosphate (PIP2). Stimulation of the Ca2+-sensing receptor CaR, a pleiotropic G protein-coupled receptor, activates both G(q/11), which decreases PIP2, and phosphatidylinositol 4-kinase (PI-4-K), which, conversely, increases PIP2. How membrane PIP2 levels are regulated by CaR activation and whether these changes modulate inward rectifier K+ are unknown. In this study, we found that activation of CaR by the allosteric agonist, NPSR568, increased inward rectifier K+ current (I-K1) in guinea pig ventricular myocytes and currents mediated by Kir2.1 channels exogenously expressed in HEK293T cells with a similar sensitivity. Moreover, using the fluorescent PIP2 reporter tubby-R332H-cYFP to monitor PIP2 levels, we found that CaR activation in HEK293T cells increased membrane PIP2 concentrations. Pharmacological studies showed that both phospholipase C (PLC) and PI-4-K are activated by CaR stimulation with the latter played a dominant role in regulating membrane PIP2 and, thus, Kir currents. These results provide the first direct evidence that CaR activation upregulates currents through inward rectifier K+ channels by accelerating PIP2 synthesis. The regulation of I-K1 plays a critical role in the stability of the electrical properties of many excitable cells, including cardiac myocytes and neurons. Further, synthetic allosteric modulators that increase CaR activity have been used to treat hyperparathyroidism, and negative CaR modulators are of potential importance in the treatment of osteoporosis. Thus, our results provide further insight into the roles played by CaR in the cardiovascular system and are potentially valuable for heart disease treatment and drug safety.
机译:内向整流器K +通道对于维持许多电池类型的正常电气功能很重要。这些通道的正常功能需要存在膜磷酸肌醇4,5-双磷酸酯(PIP2)。 Ca2 +感性受体CaR(多效性G蛋白偶联受体)的刺激会激活降低PIP2的G(q / 11)和反之会增加PIP2的磷脂酰肌醇4-激酶(PI-4-K)。未知如何通过CaR激活调节膜PIP2水平,以及这些变化是否调节内向整流器K +。在这项研究中,我们发现变构激动剂NPSR568对CaR的激活增加了豚鼠心室肌​​细胞的内向整流器K +电流(I-K1),以及在HEK293T细胞中外源表达的Kir2.1通道介导的电流具有相似的敏感性。此外,使用荧光PIP2报告基因tubby-R332H-cYFP监测PIP2水平,我们发现HEK293T细胞中的CaR激活增加了膜PIP2浓度。药理研究表明,CaR刺激可激活磷脂酶C(PLC)和PI-4-K,后者在调节膜PIP2和Kir电流方面起主要作用。这些结果提供了第一个直接证据,表明CaR激活通过加速PIP2合成来上调通过内向整流器K +通道的电流。 I-K1的调节在许多可兴奋细胞(包括心肌细胞和神经元)电特性的稳定性中起关键作用。此外,增加CaR活性的合成变构调节剂已经用于治疗甲状旁腺功能亢进,并且负CaR调节剂在骨质疏松症的治疗中具有潜在的重要性。因此,我们的研究结果可进一步了解CaR在心血管系统中的作用,对于心脏病治疗和药物安全性具有潜在价值。

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