首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Stimulation of Ca 2+-sensing receptor inhibits the basolateral 50-pS K channels in the thick ascending limb of rat kidney
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Stimulation of Ca 2+-sensing receptor inhibits the basolateral 50-pS K channels in the thick ascending limb of rat kidney

机译:刺激Ca 2+感应受体抑制大鼠肾脏粗大上升肢的基底外侧50-pS K通道

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摘要

We used the patch-clamp technique to study the effect of changing the external Ca 2+ on the basolateral 50-pS K channel in the thick ascending limb (TAL) of rat kidney. Increasing the external Ca 2+ concentration from 1mM to 2 or 3mM inhibited the basolateral 50-pS K channels while decreasing external Ca 2+ to 10μM [U+F020]increased the 50-pS K channel activity. The effect of the external Ca 2+ on the 50-pS K channels was observed only in cell-attached patches but not in excised patches. Moreover, the inhibitory effect of increasing external Ca 2+ on the 50-pS K channels was absent in the presence of NPS2390, an antagonist of Ca 2+-sensing receptor (CaSR), suggesting that the inhibitory effect of the external Ca 2+ was the result of stimulation of the CaSR. Application of the membrane-permeable cAMP analog increased the 50-pS K channel activity but did not block the effect of raising the external Ca 2+ on the K channels. Neither inhibition of phospholipase A2 (PLA 2) nor suppression of cytochrome P450-ω-hydroxylation-dependent metabolism of arachidonic acid was able to abolish the effect of raising the external Ca 2+ on the 50-pS K channels. In contrast, inhibition of phospholipase C (PLC) or blocking protein kinase C (PKC) completely abolished the inhibition of the basolateral 50-pS K channels induced by raising the external Ca 2+. We conclude that the external Ca 2+ concentration plays an important role in the regulation of the basolateral K channel activity in the TAL and that the effect of the external Ca 2+ is mediated by the CaSR which stimulates PLC-PKC pathways. The regulation of the basolateral K channels by the CaSR may be the mechanism by which extracellular Ca 2+ level modulates the reabsorption of divalent cations.
机译:我们使用膜片钳技术研究了改变外部Ca 2+对大鼠肾脏厚上升肢(TAL)基底外侧50-pS K通道的影响。将外部Ca 2+浓度从1mM增加到2或3mM会抑制基底外侧50-pS K通道,而将外部Ca 2+减少到10μM[U + F020]则增加了50-pS K通道活性。仅在附着细胞的贴片中观察到外部Ca 2+对50-pS K通道的影响,而在切除的贴片中未观察到。此外,在Ca 2+感应受体(CaSR)拮抗剂NPS2390的存在下,不存在增加外部Ca 2+对50-pS K通道的抑制作用,这表明外部Ca 2+的抑制作用是刺激CaSR的结果。膜可渗透的cAMP类似物的应用增加了50-pS K通道的活性,但没有阻止提高外部Ca 2+在K通道上的作用。抑制磷脂酶A2(PLA 2)或抑制细胞色素P450-ω-羟基化依赖的花生四烯酸代谢均不能消除提高外部Ca 2+对50-pS K通道的影响。相反,抑制磷脂酶C(PLC)或阻断蛋白激酶C(PKC)完全取消了对外部Ca 2+升高引起的基底外侧50-pS K通道的抑制。我们得出结论,外部Ca 2+浓度在TAL基底外侧K通道活性的调节中起着重要作用,并且外部Ca 2+的作用是由刺激PLC-PKC途径的CaSR介导的。 CaSR对基底外侧K通道的调节可能是细胞外Ca 2+水平调节二价阳离子重吸收的机制。

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