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Electron-density descriptors as predictors in quantitative structure--activity/property relationships and drug design.

机译:电子密度描述符是定量结构-活性/性质关系和药物设计中的预测指标。

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摘要

The use of electron density-based molecular descriptors in drug research, particularly in quantitative structure--activity relationships/quantitative structure--property relationships studies, is reviewed. The exposition starts by a discussion of molecular similarity and transferability in terms of the underlying electron density, which leads to a qualitative introduction to the quantum theory of atoms in molecules (QTAIM). The starting point of QTAIM is the topological analysis of the molecular electron-density distributions to extract atomic and bond properties that characterize every atom and bond in the molecule. These atomic and bond properties have considerable potential as bases for the construction of robust quantitative structure--activity/property relationships models as shown by selected examples in this review. QTAIM is applicable to the electron density calculated from quantum-chemical calculations and/or that obtained from ultra-high resolution x-ray diffraction experiments followed by nonspherical refinement. Atomic and bond properties are introduced followed by examples of application of each of these two families of descriptors. The review ends with a study whereby the molecular electrostatic potential, uniquely determined by the density, is used in conjunction with atomic properties to elucidate the reasons for the biological similarity of bioisosteres.
机译:综述了基于电子密度的分子描述符在药物研究中的使用,特别是在定量结构-活性关系/定量结构-性质关系研究中的使用。博览会以关于基础电子密度的分子相似性和可转移性的讨论开始,这导致对分子中原子量子理论(QTAIM)的定性介绍。 QTAIM的出发点是对分子电子密度分布的拓扑分析,以提取表征分子中每个原子和键的原子和键性质。这些原子和键的性质具有巨大的潜力,可作为构建稳健的定量结构-活性/性质关系模型的基础,如本综述中的示例所示。 QTAIM适用于通过量子化学计算和/或通过超高分辨率x射线衍射实验以及随后的非球面精炼获得的电子密度。介绍了原子和键的特性,然后举例说明了这两个描述符家族中的每一个。审查以一项研究结束,在该研究中,由密度唯一确定的分子静电势与原子特性结合使用,阐明了生物等位基因生物学相似性的原因。

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