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一氧化氮和环鸟苷酸依赖性蛋白激酶对 TREK-1 的调节。在平滑肌抑制性神经传递中的重要作用。

TREK-1 regulation by nitric oxide and cGMP-dependent protein kinase. An essential role in smooth muscle inhibitory neurotransmission.

作者信息

Koh S D, Monaghan K, Sergeant G P, Ro S, Walker R L, Sanders K M, Horowitz B

机构信息

Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, Nevada 89557, USA.

出版信息

J Biol Chem. 2001 Nov 23;276(47):44338-46. doi: 10.1074/jbc.M108125200. Epub 2001 Sep 17.

Abstract

Potassium channels activated by membrane stretch may contribute to maintenance of relaxation of smooth muscle cells in visceral hollow organs. Previous work has identified K(+) channels in murine colon that are activated by stretch and further regulated by NO-dependent mechanisms. We have screened murine gastrointestinal, vascular, bladder, and uterine smooth muscles for the expression of TREK and TRAAK mRNA. Although TREK-1 was expressed in many of these smooth muscles, TREK-2 was expressed only in murine antrum and pulmonary artery. TRAAK was not expressed in any smooth muscle cells tested. Whole cell currents from TREK-1 expressed in mammalian COS cells were activated by stretch, and single channel recordings showed that the stretch-dependent conductance was due to 90 pS channels. Sodium nitroprusside (10(-6) or 10(-5) m) and 8-Br-cGMP (10(-4) or 10(-3) m) increased TREK-1 currents in perforated whole cell and single channel recordings. Mutation of the PKG consensus sequence at serine 351 blocked the stimulatory effects of sodium nitroprusside and 8-Br-cGMP on open probability without affecting the inhibitory effects of 8-Br-cAMP. TREK-1 encodes a component of the stretch-activated K(+) conductance in smooth muscles and may contribute to nitrergic inhibition of gastrointestinal muscles.

摘要

膜拉伸激活的钾通道可能有助于维持内脏中空器官平滑肌细胞的舒张。先前的研究已经在小鼠结肠中鉴定出受拉伸激活并进一步受一氧化氮依赖性机制调控的钾通道。我们已经筛选了小鼠胃肠道、血管、膀胱和子宫平滑肌中TREK和TRAAK mRNA的表达情况。尽管TREK-1在许多这些平滑肌中都有表达,但TREK-2仅在小鼠胃窦和肺动脉中表达。TRAAK在任何测试的平滑肌细胞中均未表达。在哺乳动物COS细胞中表达的TREK-1的全细胞电流可被拉伸激活,单通道记录显示拉伸依赖性电导归因于90 pS的通道。硝普钠(10⁻⁶或10⁻⁵ m)和8-溴-cGMP(10⁻⁴或10⁻³ m)在穿孔全细胞和单通道记录中增加了TREK-1电流。丝氨酸351处PKG共有序列的突变阻断了硝普钠和8-溴-cGMP对开放概率的刺激作用,而不影响8-溴-cAMP的抑制作用。TREK-1编码平滑肌中拉伸激活的钾电导的一个组成部分,可能有助于胃肠道肌肉的一氧化氮能抑制作用。

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