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大鼠心室肌中TREK-1通道介导的钾电流。

The potassium current carried by TREK-1 channels in rat cardiac ventricular muscle.

作者信息

Bodnár Mandy, Schlichthörl Günter, Daut Jürgen

机构信息

Institute of Physiology and Pathophysiology, Marburg University, 35037, Marburg, Germany.

出版信息

Pflugers Arch. 2015 May;467(5):1069-79. doi: 10.1007/s00424-014-1678-9. Epub 2014 Dec 25.

DOI:10.1007/s00424-014-1678-9
PMID:25539776
Abstract

We studied the potassium current flowing through TREK-1 channels in rat cardiac ventricular myocytes. We separated the TREK-1 current from other current components by blocking most other channels with a blocker cocktail. We tried to inhibit the TREK-1 current by activating protein kinase A (PKA) with a mixture of forskolin and isobutyl-methylxanthine (IBMX). Activation of PKA blocked an outwardly rectifying current component at membrane potentials positive to -40 mV. At 37 °C, application of forskolin plus IBMX reduced the steady-state outward current measured at positive voltages by about 52 %. Application of the potassium channel blockers quinidine or tetrahexylammonium also reduced the steady-state outward current by about 50 %. Taken together, our results suggest that the increase in temperature from 22 to 37 °C increased the TREK-1 current by a factor of at least 5 and that the average density of the TREK-1 current in rat cardiomyocytes at 37 °C is about 1.5 pA/pF at +30 mV. The contribution of TREK-1 to the action potential was assessed by using a dynamic patch clamp technique. After subtraction of simulated TREK-1 currents, action potential duration at 50 or 90 % repolarisation was increased by about 12 %, indicating that TREK-1 may be functionally important in rat ventricular muscle. During sympathetic stimulation, inhibition of TREK-1 channels via PKA is expected to prolong the action potential primarily in subendocardial myocytes; this may decrease the transmural dispersion of repolarisation and thus may serve to prevent the occurrence of arrhythmias.

摘要

我们研究了大鼠心室肌细胞中通过TREK - 1通道流动的钾电流。我们通过使用阻断剂混合物阻断大多数其他通道,将TREK - 1电流与其他电流成分分离。我们试图用福斯高林和异丁基甲基黄嘌呤(IBMX)的混合物激活蛋白激酶A(PKA)来抑制TREK - 1电流。PKA的激活阻断了膜电位正向至 - 40 mV时的外向整流电流成分。在37℃时,应用福斯高林加IBMX可使在正电压下测量的稳态外向电流降低约52%。应用钾通道阻滞剂奎尼丁或四己铵也可使稳态外向电流降低约50%。综合来看,我们的结果表明,温度从22℃升高到37℃使TREK - 1电流增加了至少5倍,并且在37℃时大鼠心肌细胞中TREK - 1电流在 + 30 mV时的平均密度约为1.5 pA/pF。通过使用动态膜片钳技术评估了TREK - 1对动作电位的贡献。在减去模拟的TREK - 1电流后,50%或90%复极化时的动作电位时程增加了约12%,表明TREK - 1在大鼠心室肌中可能具有重要的功能。在交感神经刺激期间,预计通过PKA抑制TREK - 1通道主要会延长心内膜下心肌细胞的动作电位;这可能会减少复极化的跨壁离散度,从而可能有助于预防心律失常的发生。

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