去乙基胺碘酮对致癌 Kv10.1 通道的状态依赖性抑制作用,与胺碘酮的比较

F. Gomez-Lagunas, C. Barriga-Montoya, J. P. Pardo
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摘要

Kv10.1 是一种电压依赖性 K 通道,其异位表达与多种人类癌症有关。此外,Kv10.1 的结构-功能特性尚不十分清楚。我们正在使用具有重要临床意义的药物,试图深入了解该通道的药理学和特征功能特性之间的关系。在此,我们报告了抗心律失常药物胺碘酮的活性代谢产物去乙基胺碘酮(desAd)与 Kv10.1 的相互作用:desAd 可与关闭和开放的通道结合,大部分抑制作用发生在开放状态,其亲和力比胺碘酮小 5 倍。去甲斑蝥素和胺碘酮对电流的抑制没有协同作用。再极化时,desAd 会被困在 Kv10.1 中,然后缓慢地从关闭和阻断的通道中解离。在超极化保持电位时,Cole-Moore 移位加上 desAd 开孔-阻滞时间曲线会产生稳态抑制曲线(H∞)的上升阶段。与胺碘酮相反,desAd 不抑制 Kv10.1 Cole-Moore 漂移,这表明胺碘酮与 Kv10.1 之间的疏水相互作用参与了对 Cole-Moore 漂移的抑制,而 desAd 则失去了这种作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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State-independent inhibition of the oncogenic Kv10.1 channel by desethylamiodarone, a comparison with amiodarone

Kv10.1 is a voltage-dependent K channel whose ectopic expression is associated with several human cancers. Additionally, Kv10.1 has structure–function properties which are not yet well understood. We are using drugs of clinical importance in an attempt to gain insight on the relationship between pharmacology and characteristic functional properties of this channel. Herein, we report the interaction of desethylamiodarone (desAd), the active metabolic product of the antiarrhythmic amiodarone with Kv10.1: desAd binds to both closed and open channels, with most inhibition taking place from the open state, with affinity ~ 5 times smaller than that of amiodarone. Current inhibition by desAd and amiodarone is not synergistic. Upon repolarization desAd becomes trapped in Kv10.1 and thereafter dissociates slowly from closed-and-blocked channels. The addition of the Cole-Moore shift plus desAd open-pore-block time courses yields an increasing phase on the steady-state inhibition curve (H∞) at hyperpolarized holding potentials. In contrast to amiodarone, desAd does not inhibit the Kv10.1 Cole-Moore shift, suggesting that a relevant hydrophobic interaction between amiodarone and Kv10.1 participates in the inhibition of the Cole-Moore shift, which is lost with desAd.

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