4-羧基-2,6-二硝基苯基偶羟基萘与牛血清白蛋白相互作用的分子对接和ADMET研究

O. E. Thomas
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引用次数: 0

摘要

先前的分光光度研究表明,四种潜在的单偶氮着色剂(代号为AZ-01至04)与牛血清白蛋白(BSA)之间具有很强的结合亲和力,这可以指示添加剂的组织分布和毒性。利用AutoDock vina和PatchDock分析了染料与牛血清白蛋白的分子对接作用,以阐明参与络合物稳定的官能团。对接构象证实了配体优先插入BSA位点的疏水空腔。结构-BSA结合关系表明,AZ-02的结合是由游离的羟基萘取代基向Ser-479提供氢键驱动的,而其位置异构体AZ-01的主要腙形式增加了其亲脂性和疏水相互作用的倾向。由于含有额外的C-7取代基,AZ-03和- 04具有较高的C/H比,因此它们的结合更强,其芳香环通过Pi-Pi t形、pi -烷基和烷基-烷基相互作用广泛参与配体- I位络合物的稳定。此外,AZ-01、-03和-04主要以带整体正电荷的腙互变异构体存在,为与带负电荷的天冬氨酸和谷氨酸相互作用提供了互补模式。这些分子的结构- bsa结合关系已被阐明,可用于合成更安全的同源物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular docking and ADMET studies of the interaction of 4-carboxyl-2,6-dinitrophenylazohydroxynaphthalenes with bovine serum albumin
Previous spectrophotometric investigations revealed strong binding affinities between four potential monoazo colourants (code-named AZ-01 to 04) and bovine serum albumin (BSA) which could dictate the tissue distribution and toxicity of the additives. The molecular docking interactions of the dyes with BSA were analyzed using AutoDock vina and PatchDock in order to elucidate the functional groups involved in complex stabilization. Docking conformations confirmed the ligands preferentially inserted into the hydrophobic cavities of BSA site I. Structure-BSA binding relationships revealed the binding of AZ-02 was driven by hydrogen bond donation from its free phydroxynaphthalene substituent to Ser-479 while the predominantly hydrazone form of its positional isomer, AZ-01, increased its lipophilicity and tendency for hydrophobic interactions. The relatively higher C/H ratio of AZ-03 and - 04, which contain additional C-7 substituents, was responsible for their stronger binding and the extensive involvement of their aromatic rings in ligand-site I complex stabilization via Pi-Pi T-shaped, Pi-alkyl and alkyl-alkyl interactions. Moreso, AZ-01, -03 and -04 exist predominantly as hydrazone tautomers with an overall positive charge which provided complementary modes for interaction with negatively charged aspartic and glutamic acids. The structure-BSA binding relationships of the molecules, which can be employed in synthesis of safer congeners, have been elucidated. 
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