Tan Joy H C, Liu Weihong, Saint David A
School of Molecular and Biomedical Sciences, University of Adelaide, Adelaide, SA 5005, Australia.
Exp Physiol. 2004 May;89(3):237-42. doi: 10.1113/expphysiol.2003.027052. Epub 2004 Feb 17.
Mechanoelectric feedback (MEF) is the process by which mechanical forces on the myocardium induce electrical responses. It is thought that MEF is important in controlling the beat to beat force of contraction in the ventricle, in response to fluctuations in load, and it may also play a role in controlling the dispersion of repolarization. The transduction mechanism for MEF is via stretch sensitive ion channels in the surface membrane of myocytes. Two types of stretch sensitive channels have been described; a non-selective cation channel, and a potassium selective channel. TREK-1 is a member of the recently cloned tandem pore potassium channels that has been shown to be mechanosensitive and to be expressed in rat heart. Here we report that the gene expression level of TREK-1, quantified using real-time RT-PCR against glyceraldehyde phosphate dehydrogenase (GAPDH) as a comparator gene, was found to be 0.34 +/- 0.14 in endocardial cells compared to 0.02 +/- 0.02 in epicardial cells (P < 0.05). To confirm that this is reflected in a different current density, whole cell TREK-1 currents, activated by chloroform, were recorded with patch clamp techniques in epicardial and endocardial cells. TREK-1 current density in epicardial and endocardial cells was 0.21 +/- 0.06 pA/pF and 0.8 +/- 0.27 pA/pF, respectively (P</= 0.05). We discuss the implications of this differential expression of TREK-1 for controlling action potential repolarization when the myocardium is stretched. We hypothesize that the gene expression of TREK-1 is controlled by the different amounts of stretch experienced by muscle cells across the ventricular wall.
机械电反馈(MEF)是心肌上的机械力诱发电反应的过程。人们认为,MEF对于控制心室逐搏收缩力以应对负荷波动很重要,并且它可能在控制复极离散方面也发挥作用。MEF的转导机制是通过心肌细胞表面膜中的牵张敏感离子通道。已描述了两种类型的牵张敏感通道;一种非选择性阳离子通道和一种钾选择性通道。TREK-1是最近克隆的串联孔钾通道的成员,已证明它具有机械敏感性并在大鼠心脏中表达。在此我们报告,以甘油醛-3-磷酸脱氢酶(GAPDH)作为对照基因,通过实时RT-PCR定量的TREK-1基因表达水平,在心内膜细胞中为0.34±0.14,而在心外膜细胞中为0.02±0.02(P<0.05)。为了证实这反映在不同电流密度上,用膜片钳技术记录了在心外膜和心内膜细胞中由氯仿激活的全细胞TREK-1电流。心外膜和心内膜细胞中的TREK-1电流密度分别为0.21±0.06 pA/pF和0.8±0.27 pA/pF(P≤0.05)。我们讨论了TREK-1这种差异表达对于心肌拉伸时控制动作电位复极的意义。我们假设TREK-1的基因表达受心室壁上肌肉细胞所经历的不同牵张量控制。