Fernández-Velasco María, Ruiz-Hurtado Gema, Delgado Carmen
Institute of Pharmacology and Toxicology (CSIC-UCM), School of Medicine, Universidad Complutense, 28040 Madrid, Spain.
Pflugers Arch. 2006 May;452(2):146-54. doi: 10.1007/s00424-005-0024-7. Epub 2006 Jan 5.
Electrophysiological properties of inward rectifier potassium current (I (K1)) and hyperpolarization-activated inward current (I (f)) and the protein expression of the Kir2.1 subfamily and the hyperpolarization-activated cation channel 2 (HCN2) and HCN4 were studied in control and hypertrophied myocytes. Electrophysiological experiments were conducted by whole-cell patch-clamp technique, and protein levels of Kir2.1 subfamily and HCN2 and HCN4 isoforms were analysed by Western blot technique. The density of I (f) as well as the protein expression levels of the HCN2 isoform was found to be significantly higher in hypertrophied myocytes, whereas the protein expression level of HCN4 was not detected in any group. I (K1) density and Kir 2.1 protein expression were similar in control and hypertrophied myocytes, but the time-course of the currents was slower in hypertrophied myocytes. Analysis of I (f) and I (K1) in the same control and hypertrophied myocyte at -80 mV showed that cells in which I (f) was present had values of I (K1) density similar to those cells in which I (f) was not observed. In conclusion, although left ventricular hypertrophy involves an up-regulation of I (f) and its molecular correlate HCN2 in the rat ventricle, its contribution to diastolic depolarization would be limited by the low values of I (f) density at potentials close to the resting potential of the ventricular cells.
在对照和肥大心肌细胞中研究了内向整流钾电流(I(K1))和超极化激活内向电流(I(f))的电生理特性,以及Kir2.1亚家族、超极化激活阳离子通道2(HCN2)和HCN4的蛋白表达。采用全细胞膜片钳技术进行电生理实验,并用蛋白质印迹技术分析Kir2.1亚家族、HCN2和HCN4亚型的蛋白水平。发现肥大心肌细胞中I(f)的密度以及HCN2亚型的蛋白表达水平显著更高,而在任何组中均未检测到HCN4的蛋白表达水平。对照和肥大心肌细胞中I(K1)密度和Kir 2.1蛋白表达相似,但肥大心肌细胞中电流的时间进程较慢。在-80 mV下对相同的对照和肥大心肌细胞中的I(f)和I(K1)进行分析表明,存在I(f)的细胞的I(K1)密度值与未观察到I(f)的细胞相似。总之,尽管左心室肥大涉及大鼠心室中I(f)及其分子相关物HCN2的上调,但其对舒张期去极化的贡献将受到接近心室细胞静息电位时I(f)密度较低值的限制。