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靶向蛋白质表面的配体的多种构象与热力学:以呋塞米在水溶液中与线粒体衍生的NEET蛋白结合为例

Multiple Poses and Thermodynamics of Ligands Targeting Protein Surfaces: The Case of Furosemide Binding to mitoNEET in Aqueous Solution.

作者信息

Hoang Linh Gia, Goßen Jonas, Capelli Riccardo, Nguyen Toan T, Sun Zhaoxi, Zuo Ke, Schulz Jörg B, Rossetti Giulia, Carloni Paolo

机构信息

INM-11, Forschungszentrum, Jülich, Germany.

Key Laboratory for Multiscale Simulations of Complex Systems, VNU University of Science, Vietnam National University, Hanoi, Vietnam.

出版信息

Front Cell Dev Biol. 2022 Apr 26;10:886568. doi: 10.3389/fcell.2022.886568. eCollection 2022.

Abstract

Human NEET proteins, such as NAF-1 and mitoNEET, are homodimeric, redox iron-sulfur proteins characterized by triple cysteine and one histidine-coordinated [2Fe-2S] cluster. They exist in an oxidized and reduced state. Abnormal release of the cluster is implicated in a variety of diseases, including cancer and neurodegeneration. The computer-aided and structure-based design of ligands affecting cluster release is of paramount importance from a pharmaceutical perspective. Unfortunately, experimental structural information so far is limited to only one ligand/protein complex. This is the X-ray structure of furosemide bound to oxidized mitoNEET. Here we employ an enhanced sampling approach, Localized Volume-based Metadynamics, developed by some of us, to identify binding poses of furosemide to human mitoNEET protein in solution. The binding modes show a high variability within the same shallow binding pocket on the protein surface identified in the X-ray structure. Among the different binding conformations, one of them is in agreement with the crystal structure's one. This conformation might have been overstabilized in the latter because of the presence of crystal packing interactions, absent in solution. The calculated binding affinity is compatible with experimental data. Our protocol can be used in a straightforward manner in drug design campaigns targeting this pharmaceutically important family of proteins.

摘要

人类的NEET蛋白,如NAF-1和线粒体膜联蛋白,是同型二聚体的氧化还原铁硫蛋白,其特征是具有三个半胱氨酸和一个组氨酸配位的[2Fe-2S]簇。它们以氧化态和还原态存在。该簇的异常释放与多种疾病有关,包括癌症和神经退行性疾病。从药物研发的角度来看,基于计算机辅助和结构的配体设计以影响簇的释放至关重要。不幸的是,目前的实验结构信息仅限于一种配体/蛋白质复合物。这就是与氧化态线粒体膜联蛋白结合的速尿的X射线结构。在这里,我们采用了一种由我们中的一些人开发的增强采样方法——基于局部体积的元动力学,来确定速尿在溶液中与人类线粒体膜联蛋白的结合构象。结合模式在X射线结构中确定的蛋白质表面同一浅结合口袋内显示出高度的变异性。在不同的结合构象中,其中一种与晶体结构的构象一致。由于晶体堆积相互作用的存在,这种构象在晶体结构中可能被过度稳定,而在溶液中不存在这种相互作用。计算得到的结合亲和力与实验数据相符。我们的方案可以直接用于针对这个具有重要药学意义的蛋白质家族的药物设计研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfb0/9086288/47e8a14c1d77/fcell-10-886568-g001.jpg

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