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首页> 外文期刊>Journal of Molecular Liquids >Mechanistic understanding and binding analysis of a novel Schiff base palladium (II) complex with beta-lactoglobulin and human serum albumin
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Mechanistic understanding and binding analysis of a novel Schiff base palladium (II) complex with beta-lactoglobulin and human serum albumin

机译:一种与β-乳蛋白和人血清白蛋白的新型席夫钯(II)复合物的机械理解及结合分析

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摘要

The binding interactions between new Schiff base palladium(II) complex and two transporter proteins, human serum albumin (HSA) and p-lactoglobulin (beta-LG) were studied by spectroscopic and computational methods. Fluorescence spectroscopy results revealed the strong quenching of intrinsic fluorescence of both HSA and beta-LG due to interaction with Pd(II) complex by a static quenching mechanism. The Pd(II) complex interacted with studied proteins with moderate binding affinity (K-b = 1.01 x 10(4) M-1 for HSA and 6.60 x 10(3) M-1 for beta-LG at 303 K). The thermodynamic parameters revealed the contribution of hydrogen bond and Van der Waals interactions but, the role of hydrophobic interactions was not negligible due to imine group in structure of complex and obtained small positive Delta S degrees values in both systems. UV-Visible and FT-IR measurements indicated that the binding of Pd(II) complex to HSA and beta-LG may induce conformational and micro-environmental changes of these proteins. Moreover, Multivariate Curve Resolution- Alternating Least Square (MCR-ALS), was used for resolution of measured complex spectra and estimation the number of independent chemical species. The docking studies indicate the Pd(II) complex binds to residues located in the subdomain IIIA of HSA and site II of beta-LG. (C) 2018 Published by Elsevier B.V.
机译:通过光谱和计算方法研究了新的席夫基钯(II)复合物和两种转运蛋白,人血清白蛋白(HSA)和P-乳酰键蛋白(Beta-LG)之间的结合相互作用。荧光光谱结果揭示了HSA和β-LG的固有荧光的强烈猝灭,由于通过静态猝灭机构与Pd(II)复合物相互作用。 Pd(II)复合物与研究的蛋白质相互作用(K-B = 1.01×10(4)m-1,用于HSA的6.60×10(3)m-1,β-Lg为303k)。热力学参数揭示了氢键和范德华相互作用的贡献,但由于亚胺基团在复合物结构中的亚胺基团,并且在两个系统中获得的小ΔS度值的少量ΔS度值,疏水相互作用的作用并不可忽略。 UV可见和FT-IR测量表明Pd(II)复合物与HSA和β-LG的结合可以诱导这些蛋白质的构象和微环境变化。此外,多变量曲线分辨率 - 交替的最小二乘(MCR-ALS)用于分辨测量的复杂光谱和估计的独立化学物质的数量。对接研究表明Pd(II)复合物与位于HSA亚域IIIa的残基与β-LG的部位II结合。 (c)2018由elestvier b.v出版。

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