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快速评估联芳基和芳基羰基片段的构象偏好。

Rapid assessment of conformational preferences in biaryl and aryl carbonyl fragments.

机构信息

Centro de Investigación Lilly S.A., Alcobendas, Madrid, Spain.

Discovery Chemistry Research and Technologies, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana, United States of America.

出版信息

PLoS One. 2018 Mar 14;13(3):e0192974. doi: 10.1371/journal.pone.0192974. eCollection 2018.

Abstract

The ability to rapidly assess the preferred conformation of key fragments in a structure "by visual inspection" is a very useful starting point in the process of drug design. With the ability to do so, one could address questions like: "How could we avoid planarity in a molecule?", "Will a molecule change its conformational preference if we make it more or less basic?" or "How does this electronic repulsion affect the conformational preference in the system?" in timely fashion. In this paper, we describe how the conformational energy profile (CEP, plot of energy as a function of dihedral bond angle) of a fragment can be interpreted through the understanding the interplay between resonance stabilization, steric effects and electrostatic interactions. Fifty-nine biaryl and aryl carbonyl fragments present in oral drugs or which are close derivatives thereof were selected. Calculation of their CEPs using ab initio methodology allowed us to conclude the relative importance of these factors in the conformational preference of these fragments as follows: "steric repulsion > lone pair-lone pair repulsion > lone pair-fluorine repulsion > resonance stabilization" and to formulate "rules of thumb" that the practicing medicinal/organic chemist can apply when analysing molecules that contain these fragments.

摘要

通过“直观观察”快速评估结构中关键片段的优势构象的能力,是药物设计过程中一个非常有用的起点。有了这种能力,我们就可以及时提出这样的问题:“我们如何避免分子的平面性?”“如果我们使分子更碱性或更酸性,它的构象偏好会改变吗?”或“这种电子排斥如何影响系统中的构象偏好?”在本文中,我们描述了如何通过理解共振稳定、立体效应和静电相互作用之间的相互作用,来解释片段的构象能量分布(CEP,作为二面角函数的能量图)。选择了 59 个存在于口服药物中的或与其密切相关的联芳基和芳基羰基片段。使用从头算方法计算它们的 CEP,使我们能够得出这些因素在这些片段构象偏好中的相对重要性如下:“立体排斥>孤对-孤对排斥>孤对-氟排斥>共振稳定”,并制定出“经验法则”,供从事药用/有机化学的化学家在分析含有这些片段的分子时应用。

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