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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Integrated study of the mechanism of tyrosinase inhibition by baicalein using kinetic, multispectroscopic and computational simulation analyses
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Integrated study of the mechanism of tyrosinase inhibition by baicalein using kinetic, multispectroscopic and computational simulation analyses

机译:黄芩素使用动力学,多光谱,计算模拟分析对酪氨酸酶抑制机理的综合研究

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摘要

Controlling the activity of tyrosinase, which plays an important role in melanin synthesis, is essential endeavor in the field of medicine, food, cosmetics, and agriculture. Baicalein is a widely available inhibitor of tyrosinase. The mechanism of this inhibition was studied through an integrated approach coupling enzyme kinetics, multiple types of spectroscopy and computational simulation. Baicalein conspicuously inhibited the diphenolase activity with an IC50 value of 0.11 mM. The inhibtion kinetics indicated that baicalein was a mix-type tight binding inhibitor with a K-i of 0.17 mM and an alpha value of 0.56. UV absorption spectra showed that a complex formed. Baicalein quenched the fluorescence via both static and dynamic quenching though a single binding site with a binding constant of 278,000 M-1. Thermodynamic parameters suggested spontaneous binding through hydrogen bonding and van der Waals forces. The binding distance was estimated at 3.41 nm. Phase diagram analysis suggested baicalein induced at least two structurally distinct intermediates. Synchronous fluorescence and three-dimensional fluorescence spectra showed blue shift of the maximum emission wavelength. The content of alpha-helix decreased from 32.67% to 29.00% according to circular dichroism spectra. It was revealed that baicalein induced conformational changes in tyrosinase and enhanced the hydrophobicity of the microenvironment around Trp residues. Docking simulations predicted that baicalein mainly bound tyrosinase via its Met280 residue. This research will provide reliable basis concerning the inhibitory mechanism of baicalein against tyrosianse, and therefore eventually contribute to development of anti-tyrosinase agents. (C) 2018 Elsevier B.V. All rights reserved.
机译:控制在黑色素合成中起重要作用的酪氨酸酶的活性,是医药,食品,化妆品和农业领域的必要态度。 Baicalein是一种广泛可用的酪氨酸酶抑制剂。通过集成方法偶联酶动力学,多种光谱学和计算模拟研究了这种抑制的机制。 Baicalein显着抑制了IC50值0.11mm的二酚酶活性。抑制动力学表明,Baicalin是一种混合型密封结合抑制剂,K-1为0.17mm,α值为0.56。 UV吸收光谱显示形成复合物。 Baicalein通过静态和动态猝灭淬灭荧光,但是单个结合位点,其结合常数为278,000m-1。热力学参数建议通过氢键和范德华力的自发结合。结合距离估计为3.41nm。相图分析表明Baicalein诱导了至少两个结构上不同的中间体。同步荧光和三维荧光光谱显示出最大发射波长的蓝色偏移。根据圆形二分频谱,α-螺旋的含量从32.67%降至29.00%。据透露,黄芩素诱导酪氨酸酶的构象变化,增强了TRP残基周围微环境的疏水性。对接模拟预测,Baicalein主要通过其MET280残留物结合酪氨酸酶。该研究将提供关于Baicalein对酪氨酸的抑制机制的可靠基础,因此最终有助于抗酪氨酸酶试剂的发展。 (c)2018年elestvier b.v.保留所有权利。

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