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一项多层次理论研究,以揭示金(III)-联吡啶化合物作为选择性水甘油通道蛋白抑制剂的结合机制。

A Multi-Level Theoretical Study to Disclose the Binding Mechanisms of Gold(III)-Bipyridyl Compounds as Selective Aquaglyceroporin Inhibitors.

作者信息

Graziani Valentina, Marrone Alessandro, Re Nazzareno, Coletti Cecilia, Platts James A, Casini Angela

机构信息

Department of Pharmacy, Università "G d'Annunzio" di Chieti-Pescara, Via dei Vestini 31, 66100, Chieti, Italy.

School of Chemistry, Cardiff University, Park Place, Cardiff, CF10 3AT, UK.

出版信息

Chemistry. 2017 Oct 4;23(55):13802-13813. doi: 10.1002/chem.201703092. Epub 2017 Sep 7.

DOI:10.1002/chem.201703092
PMID:28776779
Abstract

Structural studies have paved the avenue to a deeper understanding of aquaporins (AQPs), small ancient proteins providing efficient transmembrane pathways for water, small uncharged solutes such as glycerol, and possibly gas molecules. Despite the numerous studies, their roles in health and disease remain to be fully disclosed. The recent discovery of Au complexes as potent and selective inhibitors of aquaglyceroporin isoforms paves the way to their possible therapeutic application. The binding of the selective human AQP3 inhibitor, the cationic complex [Au(bipy)Cl ] (Aubipy), to the protein channel has been investigated here by means of a multi-level theoretical workflow that includes QM, MD and QM/MM approaches. The hydroxo complex was identified as the prevalent form of Aubipy in physiological media and its binding to AQP3 studied by MD. Both non-covalent and coordinative Aubipy-AQP3 adducts were simulated to probe their role in the modulation of water channel functionality. The electronic structures of representative Aubipy-AQP3 adducts were then analysed to unveil the role played by the metal moiety in their stabilisation. This study spotlights the overall importance of three key aspects for AQP3 inhibition: 1) water speciation of the Au complex, 2) stability of non-covalent adducts and 3) conformational changes induced within the pore by the coordinative binding of Au . The obtained results are expected to orient future developments in the design of isoform-selective Au inhibitors.

摘要

结构研究为更深入理解水通道蛋白(AQPs)铺平了道路,水通道蛋白是一类古老的小蛋白,为水、甘油等不带电荷的小分子溶质以及可能的气体分子提供高效的跨膜通道。尽管已有众多研究,但它们在健康和疾病中的作用仍有待全面揭示。最近发现金配合物是水甘油通道蛋白亚型的有效且选择性抑制剂,这为其可能的治疗应用开辟了道路。本文通过包括量子力学(QM)、分子动力学(MD)和量子力学/分子力学(QM/MM)方法的多层次理论工作流程,研究了选择性人水通道蛋白3抑制剂、阳离子配合物[Au(bipy)Cl](Aubipy)与蛋白通道的结合。已确定羟基配合物是Aubipy在生理介质中的主要形式,并通过分子动力学研究了其与水通道蛋白3的结合。模拟了非共价和配位的Aubipy-水通道蛋白3加合物,以探究它们在调节水通道功能中的作用。然后分析了代表性Aubipy-水通道蛋白3加合物的电子结构,以揭示金属部分在其稳定性中所起的作用。本研究突出了水通道蛋白3抑制的三个关键方面的总体重要性:1)金配合物的水形态;2)非共价加合物的稳定性;3)金的配位结合在孔内诱导的构象变化。预期所得结果将为亚型选择性金抑制剂的设计指明未来的发展方向。

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