首页> 外文期刊>The Journal of Membrane Biology >Characterization of Recombinant Human Cardiac KCNQ1/KCNE1 Channels (I Ks) Stably Expressed in HEK 293 Cells
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Characterization of Recombinant Human Cardiac KCNQ1/KCNE1 Channels (I Ks) Stably Expressed in HEK 293 Cells

机译:HEK 293细胞中稳定表达的重组人心脏KCNQ1 / KCNE1通道(IKs)的表征

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摘要

The present study was designed to characterize pharmacological, biophysical and electrophysiological properties of the recombinant human cardiac I Ks (KCNQ1/KCNE1) channels at physiological temperature. Human cardiac KCNQ1 and KCNE1 genes were cotransfected into HEK 293 cells, and a cell clone stably expressing both genes was selected. Membrane currents were recorded using a perforated patch-clamp technique. The typical I Ks was slowly activated upon depolarization voltages in HEK 293 cells stably expressing human cardiac KCNQ1 and KCNE1 genes, and the current was inhibited by I Ks blockers HMR 1556 and chromanol 293B, with 50% inhibitory concentrations (IC50s) of 83.8 nM and 9.2 μM, respectively. I Ks showed a significant temperature-dependent increase in its magnitude upon elevating bath temperature to 36°C from room temperature (21°C). The current was upregulated by the β-adrenoceptor agonist isoproterenol, and the effect was reversed by H89. In addition, I Ks was inhibited by Ba2+ in a concentration-dependent manner (IC50 = 1.4 mM). Action potential clamp revealed a “bell-shaped” time course of I Ks during the action potential, and maximal peak current was seen at the plateau of the action potential. A significant use- and frequency-dependent increase of I Ks was observed during a train of action potential clamp. These results indicate that the recombinant human cardiac I Ks stably expressed in HEK 293 cells is similar to native I Ks in drug sensitivity and regulated by Ba2+ and β-adrenoceptor via the cyclic adenosine monophosphate/protein kinase A pathway. Importantly, the current exhibits significant temperature dependence, a bell-shaped time course during action potential and prominent use- or frequency-dependent accumulation during a train of action potentials.
机译:本研究旨在表征在生理温度下重组人心脏IKs(KCNQ1 / KCNE1)通道的药理,生物物理和电生理特性。将人心脏KCNQ1和KCNE1基因共转染入HEK 293细胞,并选择稳定表达这两个基因的细胞克隆。使用穿孔膜片钳技术记录膜电流。在稳定表达人心脏KCNQ1和KCNE1基因的HEK 293细胞中,典型的I Ks 会在去极化电压下缓慢激活,电流被I Ks 阻滞剂HMR 1556和苯并二氢苯并二氢吡喃酚293B抑制,抑制率为50%浓度(IC50 )分别为83.8 nM和9.2μM。当浴温从室温(21℃)升至36℃时,I Ks 表现出明显的温度依赖性。 β-肾上腺素受体激动剂异丙肾上腺素可上调电流,而H89可逆转作用。另外,Ba 2+抑制I Ks 的浓度呈浓度依赖性(IC50 = 1.4 mM)。动作电位钳位揭示了动作电位期间I Ks 的“钟形”时间进程,并且在动作电位的平台上看到了最大峰值电流。在一系列动作电位钳期间,观察到I Ks 的明显使用和频率依赖性增加。这些结果表明在HEK 293细胞中稳定表达的重组人心脏IKs在药物敏感性方面与天然IKs相似,并通过环状单磷酸腺苷被Ba2 +和β-肾上腺素受体调节。 /蛋白激酶A途径。重要的是,电流表现出显着的温度依赖性,在动作电位期间呈钟形时间进程,在一系列动作电位期间呈现出明显的使用或频率相关的累积。

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