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汉黄芩素与人血清白蛋白的结合:汉黄芩素在亚结构域IIA中的一个共同结合位点。

Binding of wogonin to human serum albumin: a common binding site of wogonin in subdomain IIA.

作者信息

Tian Jianniao, Liu Jiaqin, Xie Jianping, Yao Xiaojun, Hu Zhide, Chen Xinguo

机构信息

Department of Chemistry, Lanzhou University, Lanzhou, Gansu Province 730000, China.

出版信息

J Photochem Photobiol B. 2004 Mar 19;74(1):39-45. doi: 10.1016/j.jphotobiol.2004.01.001.

Abstract

The binding of wogonin to human serum albumin (HSA) has been studied by spectroscopic method including circular dichroism (CD), infrared spectra (IR) and fluorescence spectra. The fluorescence properties of HSA were examined in presence of wogonin and the fluorescence intensity of HSA was significantly decreased in the presence of wogonin. The binding parameters of wogonin were studied from the fluorescence decreasing of HSA by the fluoremetric titrations. The Stern-Volmer plots indicated that the binding of wogonin to HSA at 296, 303, 310 K is characterized by one binding site with the binding constant K(S-V) at 1.872 x 10(5), 1.561 x 10(5), 1.392 x 10(5), respectively, which are good agreement with the results from the Scatchard plots. The binding process was exothermic, enthalpy driven and spontaneous, as indicated by the thermodynamic analyses, and the major part of the binding energy is hydrophobic interaction, which were consistent with the result of molecule modelling study, and there are also a numbers of hydrogen bonds between wogonin and HSA. Furthermore, the displacement experiments indicate that wogonin can bind to the subdomain IIA, that is, the site I of HSA, which is also good agreement with the result of molecule modelling study.

摘要

采用圆二色光谱(CD)、红外光谱(IR)和荧光光谱等光谱学方法研究了汉黄芩素与人血清白蛋白(HSA)的结合作用。考察了汉黄芩素存在下HSA的荧光特性,发现汉黄芩素存在时HSA的荧光强度显著降低。通过荧光滴定法,根据HSA荧光强度的降低研究了汉黄芩素的结合参数。Stern-Volmer曲线表明,汉黄芩素在296、303、310 K下与HSA的结合具有一个结合位点,结合常数K(S-V)分别为1.872×10(5)、1.561×10(5)、1.392×10(5),这与Scatchard曲线的结果吻合良好。热力学分析表明,结合过程是放热的、由焓驱动的且自发的,结合能的主要部分是疏水相互作用,这与分子模拟研究的结果一致,并且汉黄芩素与HSA之间还存在大量氢键。此外,置换实验表明汉黄芩素可以结合到亚结构域IIA,即HSA的位点I,这也与分子模拟研究的结果吻合良好。

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