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血管舒张剂17,18-环氧二十碳四烯酸作用于啮齿动物中形成孔道的大电导钙激活钾通道α亚基。

The vasodilator 17,18-epoxyeicosatetraenoic acid targets the pore-forming BK alpha channel subunit in rodents.

作者信息

Hercule Hantz C, Salanova Birgit, Essin Kirill, Honeck Horst, Falck John R, Sausbier Matthias, Ruth Peter, Schunck Wolf-Hagen, Luft Friedrich C, Gollasch Maik

机构信息

Nephrology/Hypertension Division, Franz Volhard Clinic, HELIOS Klinikum-Berlin, Campus Buch, Berlin, Germany.

出版信息

Exp Physiol. 2007 Nov;92(6):1067-76. doi: 10.1113/expphysiol.2007.038166. Epub 2007 Aug 3.

Abstract

17,18-Epoxyeicosatetraenoic acid (17,18-EETeTr) stimulates vascular large-conductance K(+) (BK) channels. BK channels are composed of the pore-forming BK alpha and auxiliary BK beta1 subunits that confer an increased sensitivity for changes in membrane potential and calcium to BK channels. Ryanodine-sensitive calcium-release channels (RyR3) in the sarcoplasmic reticulum (SR) control the process. To elucidate the mechanism of BK channel activation, we performed whole-cell and perforated-patch clamp experiments in freshly isolated cerebral and mesenteric artery vascular smooth muscle cells (VSMC) from Sprague-Dawley rats, BK beta1 gene-deficient (-/-), BK alpha (-/-), RyR3 (-/-) and wild-type mice. The 17,18-EETeTr (100 nm) increased tetraethylammonium (1 mm)-sensitive outward K(+) currents in VSMC from wild-type rats and wild-type mice. The effects were not inhibited by the epoxyeicosatrienoic acid (EET) antagonist 14,15-epoxyeicosa-5(Z)-enoic acid (10 mum). BK channel currents were increased 3.5-fold in VSMC from BK beta1 (-/-) mice, whereas a 2.9-fold stimulation was observed in VSMC from RyR3 (-/-) mice (at membrane voltage 60 mV). The effects were similar compared with those observed in cells from wild-type mice. The BK current increase was neither influenced by strong internal calcium buffering (Ca(2)(+), 100 nm), nor by external calcium influx. The 17,18-EETeTr did not induce outward currents in VSMC BK alpha (-/-) cells. We next tested the vasodilator effects of 17,18-EETeTr on isolated arteries of BK alpha-deficient mice. Vasodilatation was largely inhibited in cerebral and mesenteric arteries isolated from BK alpha (-/-) mice compared with that observed in wild-type and BK beta1 (-/-) arteries. We conclude that 17,18-EETeTr represents an endogenous BK channel agonist and vasodilator. Since 17,18-EETeTr is active in small arteries lacking BK beta1, the data further suggest that BK alpha represents the molecular target for the principal action of 17,18-EETeTr. Finally, the action of 17,18-EETeTr is not mediated by changes of the internal global calcium concentration or local SR calcium release events.

摘要

17,18-环氧二十碳四烯酸(17,18-EETeTr)可刺激血管大电导钾离子(BK)通道。BK通道由形成孔道的BKα和辅助性BKβ1亚基组成,这些亚基使BK通道对膜电位变化和钙离子变化的敏感性增加。肌浆网(SR)中的雷诺丁敏感型钙释放通道(RyR3)控制这一过程。为了阐明BK通道激活的机制,我们对来自Sprague-Dawley大鼠、BKβ1基因缺陷型(-/-)、BKα(-/-)、RyR3(-/-)和野生型小鼠的新鲜分离的脑动脉和肠系膜动脉血管平滑肌细胞(VSMC)进行了全细胞和穿孔膜片钳实验。17,18-EETeTr(100 nM)增加了野生型大鼠和野生型小鼠VSMC中对四乙铵(1 mM)敏感的外向钾离子电流。环氧二十碳三烯酸(EET)拮抗剂14,15-环氧二十碳-5(Z)-烯酸(10 μM)并未抑制该效应。BKβ1(-/-)小鼠VSMC中的BK通道电流增加了3.5倍,而在RyR3(-/-)小鼠的VSMC中观察到2.9倍的刺激作用(在膜电压为60 mV时)。与野生型小鼠细胞中的效应相比,这些效应相似。BK电流的增加既不受强内部钙缓冲(Ca²⁺,100 nM)的影响,也不受外部钙内流的影响。17,18-EETeTr在BKα(-/-)细胞的VSMC中未诱导外向电流。接下来,我们测试了17,18-EETeTr对BKα缺陷型小鼠离体动脉的血管舒张作用。与野生型和BKβ1(-/-)动脉相比,从BKα(-/-)小鼠分离的脑动脉和肠系膜动脉中的血管舒张在很大程度上受到抑制。我们得出结论,17,18-EETeTr是一种内源性BK通道激动剂和血管舒张剂。由于17,18-EETeTr在缺乏BKβ1的小动脉中具有活性,数据进一步表明BKα是17,18-EETeTr主要作用的分子靶点。最后,17,18-EETeTr的作用不是由内部总体钙浓度的变化或局部SR钙释放事件介导的。

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