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Two Decades of 4D-QSAR: A Dying Art or Staging a Comeback?

机译:二十年的4D-QSAR:垂死的艺术或分阶段卷土重来?

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摘要

A key question confronting computational chemists concerns the preferable ligand geometry that fits complementarily into the receptor pocket. Typically, the postulated ‘bioactive’ 3D ligand conformation is constructed as a ‘sophisticated guess’ (unnecessarily geometry-optimized) mirroring the pharmacophore hypothesis—sometimes based on an erroneous prerequisite. Hence, 4D-QSAR scheme and its ‘dialects’ have been practically implemented as higher level of model abstraction that allows the examination of the multiple molecular conformation, orientation and protonation representation, respectively. Nearly a quarter of a century has passed since the eminent work of Hopfinger appeared on the stage; therefore the natural question occurs whether 4D-QSAR approach is still appealing to the scientific community? With no intention to be comprehensive, a review of the current state of art in the field of receptor-independent (RI) and receptor-dependent (RD) 4D-QSAR methodology is provided with a brief examination of the ‘mainstream’ algorithms. In fact, a myriad of 4D-QSAR methods have been implemented and applied practically for a diverse range of molecules. It seems that, 4D-QSAR approach has been experiencing a promising renaissance of interests that might be fuelled by the rising power of the graphics processing unit (GPU) clusters applied to full-atom MD-based simulations of the protein-ligand complexes.
机译:构成计算化学家面临的关键问题涉及互补的配体几何形状,其互补地进入受体口袋。通常,假设的“生物活性”3D配体构造构造为“复杂的猜测”(不必要的几何优化)镜像药物角假设 - 有时是基于错误的先决条件。因此,4D-QSAR方案及其“方言”实际上已经实施为更高水平的模型抽象,允许分别检查多种分子构象,取向和质子化表示。自从Hopfinger的杰出作品出现在舞台上的杰出的工作以来,近四分之一世纪已经过去;因此,自然问题发生在4D-QSAR方法仍然吸引科学界吗?没有意图全面,对受体无关(RI)和受体依赖性(RD)4D-QSAR方法的当前艺术状态的审查提供了简要检查“主流”算法。事实上,已经实施了无数的4D-QSAR方法,并实际上已经实施并应用了各种分子。看来,4D-QSAR方法已经经历了可能是由应用于蛋白质 - 配体复合物的全原子MD模拟的图形处理单元(GPU)簇的上升力来推动的有希望的兴趣。

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