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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Identification of 'toxicophoric' features for predicting drug-induced QT interval prolongation.
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Identification of 'toxicophoric' features for predicting drug-induced QT interval prolongation.

机译:鉴定“毒理性”特征,以预测药物诱导的QT间隔延长。

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摘要

Drugs delaying cardiac repolarization by blockade of hERG K(+) channel generally prolong the QT interval of the electrocardiogram, an effect regarded as a cardiac risk factor with the potential to cause 'torsade des pointes'-type arrhythmias in humans. The present study applied a homology building technique and molecular dynamics simulations to model the pore of hERG K(+) channel. A docking analysis was then performed on selected ligands which were classified as QT-prolonging or non-prolonging after experimental measurements in in vivo anesthetized guinea pig. The results of this structural analysis provided a "toxicophoric" model that was further exploited to inspect a dataset of known QT-prolongingon-prolonging molecules. The emerging major chemical features to be avoided, in order to obtain cardiac safe therapeutic agents, comprise the simultaneous presence of (i) a protonated nitrogen atom within an observed range of distances from a heteroatom; (ii) aromatic groups capable of interacting within an area defined by Gly657 residues of the pore or within an area located at the top of the longitudinal axis of the pore. Moreover, additional hydrophobic moieties interacting with one of the equatorial cavities located in the area near-by Tyr652 residues and/or with a hydrophobic ring defined by Phe656 residues should be avoided.
机译:通过阻断hERG K(+)通道来延迟心脏复极的药物通常会延长心电图的QT间隔,这种作用被认为是心脏危险因素,有可能导致人类“尖端扭转型”心律失常。本研究应用同源性构建技术和分子动力学模拟来建模hERG K(+)通道的孔。然后在体内麻醉的豚鼠中进行实验测量后,对选定的配体进行对接分析,这些配体被分类为QT延长或非延长。该结构分析的结果提供了“毒理学”模型,该模型被进一步用来检查已知的QT延长/不延长分子的数据集。为了获得对心脏安全的治疗剂,应避免出现的主要化学特征包括:(i)在距杂原子的观察距离范围内同时存在质子化的氮原子; (ii)能够在由孔的Gly657残基限定的区域内或在孔的纵轴顶部的区域内相互作用的芳族基团。此外,应避免与位于Tyr652残基附近区域的赤道腔之一和/或与由Phe656残基定义的疏水环相互作用的其他疏水部分。

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