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首页> 外文期刊>Journal of Molecular Liquids >Molecular insight into binding behavior of polyphenol (rutin) with beta lactoglobulin: Spectroscopic, molecular docking and MD simulation studies
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Molecular insight into binding behavior of polyphenol (rutin) with beta lactoglobulin: Spectroscopic, molecular docking and MD simulation studies

机译:分子洞察β乳糖蛋白的聚酚(芦丁)的结合行为:光谱,分子对接和MD仿真研究

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The interaction of natural polyphenolic compounds (rutin) with beta-lactoglobulin (BLG) was carried out by using several optical spectroscopic (UV-visible spectroscopy, fluorescence quenching measurements, synchronous fluorescence, 3D fluorescence spectroscopy and far-UV CD measurements), molecular docking and molecular dynamics (MD) simulation methods. The fluorescence quenching results confirmed that fluorescence intensity of BLG is quenched by rutin and the quenching constant is increased with increase in temperature. The quenching mechanism between rutin-BLG was found to be dynamic in nature. The thermodynamic parameter particularly Delta H-0 and Delta S-0 obtained through fluorescence measurements clearly indicated that hydrophobic forces are majorly involved in the rutin-BLG interaction. The UV-absorption, synchronous and three-dimensional fluorescence results displayed that the micro-environment of BLG is changed due to rutin interaction. The secondary structure of BLG was found higher in the presence of rutin. Molecular docking results suggested that rutin binds strongly in the internal cavity of BLG at site 1 and superficially at site 2 through both hydrogen bonding and hydrophobic interactions. The binding affinity was found to be higher 5.47 x 10(6) M-1 for site 1 compared to site 2 (2.86 x 10(5) M-1). The MD simulation suggested that rutin formed a stable complex with BLG at site].This study will explain interacting properties of rutin with carrier BLG proteins and open a new vista for the food industry. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过使用几种光学光谱(UV可见光光谱,荧光猝灭测量,同步荧光,3D荧光光谱和FAR-UV CD测量,通过使用几种光学光谱(UV可见光谱,荧光猝灭测量和Far-UV CD测量来进行天然多酚化合物(芦丁)与β-乳酰键蛋白(BLG)的相互作用。分子对接和分子动力学(MD)仿真方法。荧光猝灭结果证实,通过芦丁淬灭BLG的荧光强度,并且随着温度的增加而增加淬火常数。发现Rutin-BLG之间的猝灭机制是动态的。通过荧光测量得到的热力学参数特别是通过荧光测量获得的ΔS-0清楚地表明疏水力主要参与芦丁-BLG相互作用。紫外线吸收,同步和三维荧光结果显示,由于芦丁相互作用,BLG的微环境改变。在芦丁的存在下,BLG的二级结构在存在下较高。分子对接结果表明,Rutin通过氢键和疏水相互作用在位点1的BLG的内腔中强烈结合BLG的内腔。与位点2(2.86×10(5)m-1)相比,将结合亲和力为较高的5.47×10(6)m-1。(2.86×10(5)m-1)。 MD仿真表明,芦丁在现场形成了BLG稳定的综合体。本研究将解释芦丁与载体BLG蛋白的​​相互作用,并为食品工业开放新的Vista。 (c)2018年elestvier b.v.保留所有权利。

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