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通过选择性标记甲基的化学位移测量探究蛋白质-配体甲基-π相互作用几何结构

Probing Protein-Ligand Methyl-π Interaction Geometries through Chemical Shift Measurements of Selectively Labeled Methyl Groups.

作者信息

Beier Andreas, Platzer Gerald, Höfurthner Theresa, Ptaszek Aleksandra L, Lichtenecker Roman J, Geist Leonhard, Fuchs Julian E, McConnell Darryl B, Mayer Moriz, Konrat Robert

机构信息

Christian Doppler Laboratory for High-Content Structural Biology and Biotechnology, Department of Structural and Computational Biology, Max Perutz Laboratories, University of Vienna, Campus Vienna Biocenter 5, 1030 Vienna, Austria.

Vienna Doctoral School of Chemistry, University of Vienna, Währingerstraße 38, 1090 Vienna, Austria.

出版信息

J Med Chem. 2024 Aug 8;67(15):13187-13196. doi: 10.1021/acs.jmedchem.4c01128. Epub 2024 Jul 28.

Abstract

Fragment-based drug design is heavily dependent on the optimization of initial low-affinity binders. Herein we introduce an approach that uses selective labeling of methyl groups in leucine and isoleucine side chains to directly probe methyl-π contacts, one of the most prominent forms of interaction between proteins and small molecules. Using simple NMR chemical shift perturbation experiments with selected BRD4-BD1 binders, we find good agreement with a commonly used model of the ring-current effect as well as the overall interaction geometries extracted from the Protein Data Bank. By combining both interaction geometries and chemical shift calculations as fit quality criteria, we can position dummy aromatic rings into an AlphaFold model of the protein of interest. The proposed method can therefore provide medicinal chemists with important information about binding geometries of small molecules in fast and iterative matter, even in the absence of high-resolution experimental structures.

摘要

基于片段的药物设计严重依赖于对初始低亲和力结合剂的优化。在此,我们介绍一种方法,该方法利用亮氨酸和异亮氨酸侧链中甲基的选择性标记来直接探测甲基-π相互作用,这是蛋白质与小分子之间最显著的相互作用形式之一。通过对选定的BRD4-BD1结合剂进行简单的核磁共振化学位移扰动实验,我们发现与常用的环电流效应模型以及从蛋白质数据库中提取的整体相互作用几何结构具有良好的一致性。通过将相互作用几何结构和化学位移计算结合起来作为拟合质量标准,我们可以将虚拟芳香环定位到感兴趣蛋白质的AlphaFold模型中。因此,即使在没有高分辨率实验结构的情况下,所提出的方法也可以快速且迭代地为药物化学家提供有关小分子结合几何结构的重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe05/11320577/d1df2ebd96de/jm4c01128_0001.jpg

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