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首页> 外文期刊>Biophysical Journal >Kinetic Model for NS1643 Drug Activation of WT and L529I Variants of Kv11.1 (hERG1) Potassium Channel
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Kinetic Model for NS1643 Drug Activation of WT and L529I Variants of Kv11.1 (hERG1) Potassium Channel

机译:Kv11.1(hERG1)钾通道的WT和L529I变体的NS1643药物激活的动力学模型

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摘要

Congenital and acquired (drug-induced) forms of the human long-QT syndrome are associated with alterations in Kv11.1 (hERG) channel-controlled repolarizing I-Kr currents of cardiac action potentials. A mandatory drug screen implemented by many countries led to a discovery of a large group of small molecules that can activate hERG currents and thus may act as potent antiarrhythmic agents. Despite significant progress in identification of channel activators, little is known about their mechanism of action. A combination of electrophysiological studies with molecular and kinetic modeling was used to examine the mechanism of a model activator (NS1643) action on the hERG channel and its L529I mutant. The L529I mutant has gating dynamics similar to that of wild-type while its response to application of NS1643 is markedly different. We propose a mechanism compatible with experiments in which the model activator binds to the closed (C3) and open states (O). We suggest that NS1643 is affecting early gating transitions, probably during movements of the voltage sensor that precede the opening of the activation gate.
机译:人类长QT综合征的先天性和获得性(药物诱导)形式与心脏动作电位的Kv11.1(hERG)通道控制的复极化I-Kr电流改变有关。许多国家实施的强制性药物筛查导致发现了一大批可激活hERG电流的小分子,因此可以充当有效的抗心律不齐药物。尽管在识别通道激活剂方面取得了重大进展,但对其作用机理知之甚少。将电生理研究与分子和动力学建模相结合,用于研究模型激活剂(NS1643)对hERG通道及其L529I突变体的作用机理。 L529I突变体的门控动力学与野生型相似,而其对NS1643的响应却明显不同。我们提出了一种与实验兼容的机制,其中模型激活剂绑定到关闭状态(C3)和打开状态(O)。我们建议NS1643正在影响早期的门控转换,可能是在激活门打开之前的电压传感器运动期间。

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