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花生四烯酸抑制克隆的肾钾通道ROMK1的活性。

Arachidonic acid inhibits activity of cloned renal K+ channel, ROMK1.

作者信息

Macica C M, Yang Y, Hebert S C, Wang W H

机构信息

Department of Pharmacology, New York Medical College, Valhalla 10595, USA.

出版信息

Am J Physiol. 1996 Sep;271(3 Pt 2):F588-94. doi: 10.1152/ajprenal.1996.271.3.F588.

Abstract

Arachidonic acid (AA) has been shown to inhibit the activity of the low-conductance ATP-sensitive K+ channel in the apical membrane of the cortical collecting duct [W. Wang, A. Cassola, and G. Giebisch. Am. J. Physiol. 262 (Renal Fluid Electrolyte Physiol. 31): F554-F559, 1992]. ROMK1, a K+ channel derived from the rat renal outer medulla, shares many biophysical properties of the native low-conductance K+ channel, which is localized to the apical membranes of the cortical collecting duct and thick ascending limb. This study was designed to determine whether the ROMK channel maintains the property of AA sensitivity of the native low-conductance K+ channel. Experiments were conducted in Xenopus oocytes injected with cRNA encoding the ROMK1 channel by use of patch-clamp techniques. We have confirmed previous reports that the cloned ROMK1 has similar channel kinetics, high open probability, and inward slope conductance as the native low-conductance K+ channel, respectively. Addition of 5 microM AA to an inside-out patch resulted in reversible inhibition of channel activity at a concentration similar to the inhibitor constant for AA on the native K+ channel. The effect of AA on channel activity was preserved in the presence of 10 microM indomethacin, a cyclooxygenase inhibitor, 4 microM cinnamyl-3,4-dihydroxycyanocinnamate, a lipoxygenase inhibitor, and 4 microM 17-octadecynoic acid, an inhibitor of cytochrome P-450 monooxygenases, thus indicating that the effect of AA was not mediated by metabolites of AA. The effect did not appear to be the result of changes in membrane fluidity, since 5 microM eicosatetraynoic acid, an AA analogue that is a potent modulator of membrane fluidity, had no effect. Furthermore, the addition of AA to the outside of the patch also had no effect on channel activity. These results indicate that, like the native low-conductance channel, AA is able to directly inhibit ROMK1 channel activity.

摘要

花生四烯酸(AA)已被证明可抑制皮质集合管顶端膜中低电导ATP敏感性钾通道的活性[W. Wang,A. Cassola,和G. Giebisch。《美国生理学杂志》262卷(肾流体电解质生理学31):F554 - F559,1992年]。ROMK1是一种源自大鼠肾外髓质的钾通道,具有许多天然低电导钾通道的生物物理特性,该天然通道定位于皮质集合管和髓袢升支粗段的顶端膜。本研究旨在确定ROMK通道是否维持天然低电导钾通道对AA的敏感性。实验通过膜片钳技术在注射了编码ROMK1通道的cRNA的非洲爪蟾卵母细胞中进行。我们已证实先前的报道,即克隆的ROMK1分别具有与天然低电导钾通道相似的通道动力学、高开放概率和内向斜率电导。向内面向外的膜片中添加5微摩尔AA会导致通道活性的可逆抑制,其浓度与AA对天然钾通道的抑制常数相似。在存在10微摩尔吲哚美辛(一种环氧化酶抑制剂)、4微摩尔肉桂酰 - 3,4 - 二羟基氰基肉桂酸(一种脂氧合酶抑制剂)和4微摩尔17 - 十八碳炔酸(一种细胞色素P - 450单加氧酶抑制剂)的情况下,AA对通道活性的影响得以保留,因此表明AA的作用不是由AA的代谢产物介导的。该作用似乎不是膜流动性变化的结果,因为5微摩尔二十碳四炔酸(一种AA类似物,是膜流动性的有效调节剂)没有作用。此外,在膜片外部添加AA对通道活性也没有影响。这些结果表明,与天然低电导通道一样,AA能够直接抑制ROMK1通道活性。

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