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Angiotensin II regulates neuronal excitability via phosphatidylinositol 4,5-bisphosphate-dependent modulation of Kv7 (M-type) K+ channels

机译:血管紧张素II通过磷脂酰肌醇4,5-二磷酸酯依赖性的Kv7(M型)K +通道调节来调节神经元兴奋性

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摘要

Voltage-gated Kv7 (KCNQ) channels underlie important K+ currents in many different types of cells, including the neuronal M current, which is thought to be modulated by muscarinic stimulation via depletion of membrane phosphatidylinositol 4,5-bisphosphate (PIP2). We studied the role of modulation by angiotensin II (angioII) of M current in controlling discharge properties of superior cervical ganglion (SCG) sympathetic neurons and the mechanism of action of angioII on cloned Kv7 channels in a heterologous expression system. In SCG neurons, which endogenously express angioII AT1 receptors, application of angioII for 2 min produced an increase in neuronal excitability and a decrease in spike-frequency adaptation that partially returned to control values after 10 min of angioII exposure. The increase in excitability could be simulated in a computational model by varying only the amount of M current. Using Chinese hamster ovary (CHO) cells expressing cloned Kv7.2 + 7.3 heteromultimers and AT1 receptors studied under perforated patch clamp, angioII induced a strong suppression of the Kv7.2/7.3 current that returned to near baseline within 10 min of stimulation. The suppression was blocked by the phospholipase C inhibitor edelfosine. Under whole-cell clamp, angioII moderately suppressed the Kv7.2/7.3 current whether or not intracellular Ca2+ was clamped or Ca2+ stores depleted. Co-expression of PI(4)5-kinase in these cells sharply reduced angioII inhibition, but did not augment current amplitudes, whereas co-expression of a PIP2 5′-phosphatase sharply reduced current amplitudes, and also blunted the inhibition. The rebound of the current seen in perforated-patch recordings was blocked by the PI4-kinase inhibitor, wortmannin (50 μm), suggesting that PIP2 re-synthesis is required for current recovery. High-performance liquid chromatographic analysis of anionic phospholipids in CHO cells stably expressing AT1 receptors revealed that PIP2 and phosphatidylinositol 4-phosphate levels are to be strongly depleted after 2 min of stimulation with angioII, with a partial rebound after 10 min. The results of this study establish how angioII modulates M channels, which in turn affects the integrative properties of SCG neurons.
机译:电压门控性Kv7(KCNQ)通道是许多不同类型细胞中重要K +电流的基础,包括神经元M电流,据信这是由毒蕈碱刺激通过膜磷脂酰肌醇4,5-双磷酸酯(PIP2)耗竭调节的。我们研究了M电流的血管紧张素II(angioII)的调节在控制上颈神经节(SCG)交感神经元放电特性中的作用以及在异源表达系统中克隆II Kv7通道上血管紧张素II的作用机理。在内源性表达angioII AT1受体的SCG神经元中,应用angioII 2分钟可增加神经元兴奋性,并降低尖峰频率适应性,在暴露anioII 10分钟后部分恢复为控制值。可以通过仅改变M current的量在计算模型中模拟兴奋性的增加。使用表达在穿孔膜片钳下研究的克隆的Kv7.2 + 7.3异源多聚体和AT1受体的中国仓鼠卵巢(CHO)细胞,angioII可以强烈抑制Kv7.2 / 7.3电流,该电流在刺激后10分钟内恢复到接近基线的水平。抑制作用被磷脂酶C抑制剂edelfosine阻断。在全细胞钳夹下,无论是否钳夹细胞内Ca2 +或耗尽Ca2 +存储,angioII都会适度抑制Kv7.2 / 7.3电流。在这些细胞中共表达PI(4)5-激酶可显着降低血管II抑制,但不会增加电流幅度,而PIP2 5'-磷酸酶的共表达可显着降低电流幅度,也减弱了抑制作用。在穿孔斑片中看到的电流反弹被PI4-激酶抑制剂渥曼青霉素(50μm)阻滞,表明电流恢复需要PIP2重新合成。稳定地表达AT1受体的CHO细胞中的阴离子磷脂的高效液相色谱分析表明,在用angioII刺激2分钟后,PIP2和磷脂酰肌醇4-磷酸酯水平将大量减少,在10分钟后部分反弹。这项研究的结果确定了angioII如何调节M通道,进而影响SCG神经元的整合特性。

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