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In silico modelling - pharmacophores and hERG channel models

机译:在Silico建模 - 药物和Herg频道模型中

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In computational drug design, modelling studies are undertaken following two main strategies that depend on which information is available. If experimental data exist only for the molecules displaying the biological property of interest, a so-called ligand-based approach is taken; if information is available on the macromolecular target(s) of the compounds (e.g. proteins' 3D structures), target-based studies can be carried out. Recently, in the field of hERG K~+-channel blocking drugs, pharmacophoric (ligand-based) studies started appearing aimed at determining the physicochemical features associated with the channel block, and also at predicting the hERG blocking potential of compounds. However, partial homology models (target-based) of the hERG channel have also been built and used as working tools to interpret electrophysiological and mutagenesis studies. Here, we review some of the ligand- and target-based in silico studies carried out on hERG, focusing on both their main characteristics and their meaning. In addition, we discuss some methodological aspects of the computational work that in our opinion should be considered, in view of the construction of reliable models possibly able to predict the functional behaviour of the channel system and the blocking potential of drugs.
机译:在计算药物设计中,建模研究遵循依赖哪些信息可用的主要策略。如果实验数据仅存在显示感兴趣的生物特性的分子,则采用所谓的基于配体的方法;如果在化合物的大分子靶标(例如蛋白质'3D结构)上可获得信息,则可以进行基于目标的研究。最近,在Herg K〜+ -Channel阻断药物的领域中,开始出现的药物(基于配体的)研究旨在确定与通道块相关的物理化学特征,以及预测化合物的HERG阻塞电位。然而,也已经建造了HERG通道的局部同源模型(基于目标),并用作用于解释电生理和诱变研究的工作工具。在这里,我们审查了一些基于Silico研究的配体和靶标在疱疹中进行的硅研究,重点是它们的主要特征及其含义。此外,考虑到可能能够预测渠道系统的功能行为和药物阻塞潜力的可靠模型的建造,我们讨论了在我们看来的计算工作的一些方法论。

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