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通过结合配体竞争饱和法进行位点鉴定与理化性质预测人醚 - 去极化激活的钾离子通道阻断作用

hERG Blockade Prediction by Combining Site Identification by Ligand Competitive Saturation and Physicochemical Properties.

作者信息

Goel Himanshu, Yu Wenbo, MacKerell Alexander D

机构信息

Computer Aided Drug Design Center, Department of Pharmaceutical Sciences, University of Maryland School of Pharmacy, 20 Penn St. Baltimore, MD 21201, United States.

出版信息

Chemistry (Basel). 2022 Sep;4(3):630-646. doi: 10.3390/chemistry4030045. Epub 2022 Jun 21.

Abstract

Human ether-a-go-go-related gene (hERG) potassium channel is well-known contributor to drug-induced cardiotoxicity and therefore an extremely important target when performing safety assessments of drug candidates. Ligand-based approaches in connection with quantitative structure active relationships (QSAR) analyses have been developed to predict hERG toxicity. Availability of the recent published cryogenic electron microscopy (cryo-EM) structure for the hERG channel opened the prospect for using structure-based simulation and docking approaches for hERG drug liability predictions. In recent time, the idea of combining structure- and ligand-based approaches for modeling hERG drug liability has gained momentum offering improvements in predictability when compared to ligand-based QSAR practices alone. The present article demonstrates uniting the structure-based SILCS (site-identification by ligand competitive saturation) approach in conjunction with physicochemical properties to develop predictive models for hERG blockade. This combination leads to improved model predictability based on Pearson's R and percent correct (represents rank-ordering of ligands) metric for different validation sets of hERG blockers involving diverse chemical scaffold and wide range of pIC50 values. The inclusion of the SILCS structure-based approach allows determination of the hERG region to which compounds bind and the contribution of different chemical moieties in the compounds to blockade, thereby facilitating the rational ligand design to minimize hERG liability.

摘要

人醚 - 去极化相关基因(hERG)钾通道是药物诱导心脏毒性的一个众所周知的因素,因此在对候选药物进行安全性评估时是一个极其重要的靶点。已经开发了与定量构效关系(QSAR)分析相关的基于配体的方法来预测hERG毒性。最近公布的hERG通道低温电子显微镜(cryo-EM)结构为使用基于结构的模拟和对接方法进行hERG药物安全性预测开辟了前景。近年来,将基于结构和基于配体的方法结合起来对hERG药物安全性进行建模的想法越来越受到关注,与单独基于配体的QSAR方法相比,其预测性有所提高。本文展示了将基于结构的SILCS(通过配体竞争饱和进行位点识别)方法与物理化学性质相结合,以开发hERG阻断的预测模型。这种结合基于Pearson相关系数R和正确百分比(代表配体的排序)指标,针对涉及不同化学骨架和广泛pIC50值的不同hERG阻断剂验证集,提高了模型的预测性。纳入基于SILCS结构的方法可以确定化合物结合的hERG区域以及化合物中不同化学部分对阻断的贡献,从而有助于合理的配体设计,以尽量减少hERG相关风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a8f/9881610/35aa90598895/nihms-1860657-f0001.jpg

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