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天然黄酮 Acacetin 阻断 hKv4.3 通道的特性和分子决定因素。

Properties and molecular determinants of the natural flavone acacetin for blocking hKv4.3 channels.

机构信息

Department and Medicine, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Pokfulam, Hong Kong, China.

出版信息

PLoS One. 2013;8(3):e57864. doi: 10.1371/journal.pone.0057864. Epub 2013 Mar 20.

Abstract

The natural flavone acacetin has been demonstrated to inhibit transient outward potassium current (Ito) in human atrial myocytes. However, the molecular determinants of acacetin for blocking Ito are unknown. The present study was designed to investigate the properties and molecular determinants of this compound for blocking hKv4.3 channels (coding Ito) stably expressed in HEK 293 cells using the approaches of whole-cell patch voltage-clamp technique and mutagenesis. It was found that acacetin inhibited hKv4.3 current by binding to both the closed and open channels, and decreased the recovery from inactivation. The blockade of hKv4.3 channels by acacetin was use- and frequency-dependent, and IC50s of acacetin for inhibiting hKv4.3 were 7.9, 6.1, 3.9, and 3.2 µM, respectively, at 0.2, 0.5, 1, and 3.3 Hz. The mutagenesis study revealed that the hKv4.3 mutants T366A and T367A in the P-loop helix, and V392A, I395A and V399A in the S6-segment had a reduced channel blocking efficacy of acacetin (IC50, 44.5 µM for T366A, 25.8 µM for T367A, 17.6 µM for V392A, 16.2 µM for I395A, and 19.1 µM for V399A). These results demonstrate the novel information that acacetin may inhibit the closed channels and block the open state of the channels by binding to their P-loop filter helix and S6 domain. The use- and rate-dependent blocking of hKv4.3 by acacetin is likely beneficial for managing atrial fibrillation.

摘要

天然黄酮 Acacetin 已被证明可抑制人心房肌细胞中的瞬时外向钾电流 (Ito)。然而,Acacetin 阻断 Ito 的分子决定因素尚不清楚。本研究旨在使用全细胞膜片钳电压钳技术和突变技术,研究该化合物阻断稳定表达于 HEK293 细胞的 hKv4.3 通道 (编码 Ito) 的特性和分子决定因素。结果发现,Acacetin 通过与关闭和开放通道结合来抑制 hKv4.3 电流,并减少失活后的恢复。Acacetin 对 hKv4.3 通道的阻断具有使用依赖性和频率依赖性,抑制 hKv4.3 的 Acacetin IC50 值分别为 0.2、0.5、1 和 3.3 Hz 时的 7.9、6.1、3.9 和 3.2 µM。突变研究表明,P 环螺旋中的 hKv4.3 突变体 T366A 和 T367A 以及 S6 片段中的 V392A、I395A 和 V399A 对 Acacetin 的通道阻断作用降低(IC50 值分别为 T366A 为 44.5 µM、T367A 为 25.8 µM、V392A 为 17.6 µM、I395A 为 16.2 µM 和 V399A 为 19.1 µM)。这些结果表明,Acacetin 可能通过与 P 环滤器螺旋和 S6 结构域结合来抑制关闭通道并阻断通道的开放状态,从而提供 Acacetin 抑制封闭通道和阻断开放状态的新信息。Acacetin 对 hKv4.3 的使用依赖性和速率依赖性阻断可能有益于治疗心房颤动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e14/3603988/5d4521601681/pone.0057864.g001.jpg

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