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首页> 外文期刊>Chemico-biological interactions >Exploring binding properties of sertraline with human serum albumin: Combination of spectroscopic and molecular modeling studies
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Exploring binding properties of sertraline with human serum albumin: Combination of spectroscopic and molecular modeling studies

机译:探索舍曲林与人血清白蛋白的结合特性:光谱学和分子建模研究的结合

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摘要

Human serum albumin (HSA)-drug binding is an important factor to determine half life and bioavailability of drugs. In the present research, the interaction of sertraline (SER) to HSA was investigated using combination of spectroscopic and molecular modeling techniques. Changes in the UV-Vis, CD and FT-IR spectra as well as a significant degree of tryptophan fluorescence quenching were observed upon SER-HSA interaction. Data obtained by spectroscopic methods along with the computational studies suggest that SER binds to residues located in subdomain IIA of HSA. Analysis of spectroscopic data represented the formation of 1:1 complex, significant binding affinity, negative values of entropy and enthalpy changes and the essential role of hydrophobic interactions in binding of SER to HSA. The binding models were demonstrated in the aspects of SER's conformation, active site interactions, important amino acids and hydrogen bonding. Computational mapping of the possible binding site of SER confirmed that the ligand to be bound in a large hydrophobic cavity of HSA. In accordance with experimental data, computational analyses indicated that SER binding does not alter the secondary structure of the protein. The results not only lead to a better understanding of interaction between SER and HSA but also provide useful data about the influence of SER on the protein conformation. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:人血清白蛋白(HSA)-药物结合是确定药物的半衰期和生物利用度的重要因素。在本研究中,结合光谱和分子建模技术研究了舍曲林(SER)与HSA的相互作用。在SER-HSA相互作用后,观察到UV-Vis,CD和FT-IR光谱的变化以及色氨酸荧光猝灭的程度。通过光谱方法获得的数据以及计算研究表明,SER与位于HSA亚结构域IIA中的残基结合。光谱数据分析表明形成了1:1复合物,显着的结合亲和力,熵和焓变的负值以及疏水相互作用在SER与HSA结合中的重要作用。在SER的构象,活性位点相互作用,重要的氨基酸和氢键方面证明了结合模型。 SER可能结合位点的计算图谱证实,该配体要结合在HSA的大疏水腔中。根据实验数据,计算分析表明,SER结合不会改变蛋白质的二级结构。结果不仅使人们更好地了解了SER与HSA之间的相互作用,而且还提供了有关SER对蛋白质构象影响的有用数据。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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