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卡维地洛诱导 HEK293 细胞中 Kv1.3 通道阻断的特性及分子基础。

Characterization and molecular basis for the block of Kv1.3 channels induced by carvedilol in HEK293 cells.

机构信息

College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.

GongQing Institute of Science and Technology, Gongqing City 332020, China.

出版信息

Eur J Pharmacol. 2018 Sep 5;834:206-212. doi: 10.1016/j.ejphar.2018.07.025. Epub 2018 Jul 26.

Abstract

Carvedilol is a non-selective β-adrenoreceptor antagonist and exhibits a wide range of biological activities. The voltage-gated K (Kv) channel is one of the target ion channels of this compound. The rapidly activating Kv1.3 channel is expressed in several different tissues and plays an important role in the regulation of physiological functions, including cell proliferation and apoptosis. However, little is known about the possible action of carvedilol on Kv1.3 currents. Using the whole-cell configuration of the patch-clamp technique, we have revealed that exposure to carvedilol produced a concentration-dependent blocking of Kv1.3 channels heterologously expressed in HEK293 cells, with an IC value of 9.7 μM. This chemical decelerated the deactivation tail current of Kv1.3 currents, resulting in a tail crossover phenomenon. In addition, carvedilol generated a markedly hyperpolarizing shift (20 mV) of the inactivation curve, but failed to affect the activation curve. Mutagenesis experiments of Kv1.3 channels identified G427 and H451, two related sites of TEA block, as important residues for carvedilol-mediated blocking. The present results suggest that carvedilol acts directly on Kv1.3 currents by inducing closed- and open-channel block and helps to elucidate the mechanisms of action of this compound on Kv channels.

摘要

卡维地洛是一种非选择性的β肾上腺素受体拮抗剂,具有广泛的生物学活性。电压门控钾(Kv)通道是该化合物的靶离子通道之一。快速激活的 Kv1.3 通道在多种不同组织中表达,在调节生理功能方面发挥着重要作用,包括细胞增殖和凋亡。然而,对于卡维地洛对 Kv1.3 电流的可能作用知之甚少。本研究采用膜片钳全细胞记录技术,揭示了卡维地洛可浓度依赖性地抑制 HEK293 细胞中异表达的 Kv1.3 通道,IC值为 9.7μM。该化合物可减慢 Kv1.3 电流的失活动力学尾电流,导致尾电流交叉现象。此外,卡维地洛可明显超极化失活曲线(20mV),但不影响激活曲线。Kv1.3 通道的突变实验确定了 G427 和 H451 两个 TEA 阻断相关位点,是卡维地洛介导阻断的重要残基。本研究结果提示卡维地洛通过诱导关闭和开放通道阻断直接作用于 Kv1.3 电流,有助于阐明该化合物对 Kv 通道的作用机制。

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