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鉴定由背景钾通道KCNK5(TASK-2)引起的天然大鼠小脑颗粒细胞电流。

Identification of native rat cerebellar granule cell currents due to background K channel KCNK5 (TASK-2).

作者信息

Cotten Joseph F, Zou Hilary Liao, Liu Canhui, Au John D, Yost C Spencer

机构信息

Department of Anesthesia and Perioperative Care, University of California, San Francisco, 513 Parnassus Ave., Room S-261, Box 0542, San Francisco, CA 94143, USA.

出版信息

Brain Res Mol Brain Res. 2004 Sep 28;128(2):112-20. doi: 10.1016/j.molbrainres.2004.06.007.

Abstract

The TWIK-related, Acid Sensing K (TASK-2; KCNK5) potassium channel is a member of the tandem pore (2P) family of potassium channels and mediates an alkaline pH-activated, acid pH-inhibited, outward-rectified potassium conductance. In previous work, we demonstrated TASK-2 protein expression in newborn rat cerebellar granule neurons (CGNs). In this study, we demonstrate TASK-2 functional expression in CGNs as a component of the pH-sensitive, volatile anesthetic-potentiated, standing-outward potassium conductance (I(K,SO)). Using excised, inside-out patch-clamp technique, we studied CGNs grown in primary culture. We identified four distinct, noninactivating single channel potassium conductances, Types 1-4. Types 1-3 have previously been attributed to TASK-1 (KCNK3), TASK-3 (KCNK9) and TASK-1/TASK-3 heteromers, and TREK-2 (KCNK10) 2P potassium channel function, respectively; however, the Type 4 conductance is currently unassigned. Previous studies demonstrated that Type 4 single channel activity is potentiated by extracellular, alkaline pH and cytoplasmic arachidonic acid (10-20 microM) and inhibited by cytoplasmic tetraethylammonium (TEA; 1 mM). We determined that heterologously expressed TASK-2 channels have single channel gating, conductance properties and pH sensitivity identical to the Type 4 conductance. Additionally, we found that TASK-2 single channel activity, like the Type 4 conductance is potentiated by cytoplasmic arachidonic acid (20 microM) and inhibited by cytoplasmic TEA (1 mM). We conclude that TASK-2 mediates the Type 4 single channel conductance in CGNs as a component of I(K,SO).

摘要

TWIK相关的酸敏感钾通道(TASK-2;KCNK5)是钾通道串联孔(2P)家族的成员,介导碱性pH激活、酸性pH抑制的外向整流钾电导。在先前的研究中,我们证明了TASK-2蛋白在新生大鼠小脑颗粒神经元(CGNs)中的表达。在本研究中,我们证明了TASK-2在CGNs中的功能表达是pH敏感、挥发性麻醉药增强的外向持续钾电导(I(K,SO))的一个组成部分。使用膜片钳外翻式记录技术,我们研究了原代培养的CGNs。我们鉴定出四种不同的、非失活的单通道钾电导,即1-4型。1-3型先前分别归因于TASK-1(KCNK3)、TASK-3(KCNK9)和TASK-1/TASK-3异聚体,以及TREK-2(KCNK10)2P钾通道功能;然而,4型电导目前尚未确定归属。先前的研究表明,4型单通道活性可被细胞外碱性pH和细胞质花生四烯酸(10-20 microM)增强,并被细胞质四乙铵(TEA;1 mM)抑制。我们确定,异源表达的TASK-2通道具有与4型电导相同的单通道门控、电导特性和pH敏感性。此外,我们发现,TASK-2单通道活性与4型电导一样,可被细胞质花生四烯酸(20 microM)增强,并被细胞质TEA(1 mM)抑制。我们得出结论,TASK-2作为I(K,SO)的一个组成部分,介导了CGNs中的4型单通道电导。

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