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通过大环化进行分子预组织的计算研究:密切相关的非大环和大环类似物的构象分布分析

Computational studies of molecular pre-organization through macrocyclization: Conformational distribution analysis of closely related non-macrocyclic and macrocyclic analogs.

作者信息

Olanders Gustav, Brandt Peter, Sköld Christian, Karlén Anders

机构信息

Department of Medicinal Chemistry, Uppsala University, BMC, Box 574, SE-751 23 Uppsala, Sweden.

Medicinal Chemistry, Research and Early Development Cardiovascular, Renal and Metabolism, BioPharmaceuticals R&D, AstraZeneca, Gothenburg, Sweden.

出版信息

Bioorg Med Chem. 2021 Nov 1;49:116399. doi: 10.1016/j.bmc.2021.116399. Epub 2021 Sep 11.

Abstract

Macrocycles form an important compound class in medicinal chemistry due to their interesting structural and biological properties. To help design macrocycles, it is important to understand how the conformational preferences are affected upon macrocyclization of a lead compound. To address this, we collected a unique data set of protein-ligand complexes containing "non-macrocyclic" ("linear") ligands matched with macrocyclic analogs binding to the same protein in a similar pose. Out of the 39 co-crystallized ligands considered, 10 were linear and 29 were macrocyclic. To enable a more general analysis, 128 additional ligands from the publications associated with these protein data bank entries were added to the data set. Using in total 167 collected ligands, we investigated if the conformers in the macrocyclic conformational ensembles were more similar to the bioactive conformation in comparison to the conformers of their linear counterparts. Unexpectedly, in most cases the macrocycle conformational ensemble distributions were not very different from those of the linear compounds. Thus, care should be taken when designing macrocycles with the aim to focus their conformational preference towards the bioactive conformation. We also set out to investigate potential conformational flexibility differences between the two compound classes, computational energy window settings and evaluate a literature metric for approximating the conformational focusing on the bioactive conformation.

摘要

大环化合物因其有趣的结构和生物学特性,在药物化学中构成了一类重要的化合物。为了辅助大环化合物的设计,了解先导化合物大环化后其构象偏好如何受到影响至关重要。为解决这一问题,我们收集了一组独特的蛋白质 - 配体复合物数据集,其中包含与以相似构象结合到同一蛋白质上的大环类似物相匹配的“非大环”(“线性”)配体。在所考虑的39个共结晶配体中,10个是线性的,29个是大环的。为了进行更全面的分析,我们将与这些蛋白质数据库条目相关的出版物中的另外128个配体添加到数据集中。总共使用167个收集到的配体,我们研究了大环构象集合中的构象异构体与其线性对应物的构象异构体相比,是否与生物活性构象更相似。出乎意料的是,在大多数情况下,大环构象集合分布与线性化合物的分布并没有太大差异。因此,在设计大环化合物时,若旨在使其构象偏好集中于生物活性构象,应谨慎行事。我们还着手研究这两类化合物之间潜在的构象灵活性差异、计算能量窗口设置,并评估一种文献指标,以近似聚焦于生物活性构象的构象。

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