Dai Jie, Zou Ting, Wang Li, Zhang Yezhong, Liu Yi
College of Chemistry and Environmental Engineering, Yangtze University, Jingzhou, Hubei, 434023, People's Republic China.
Luminescence. 2014 Dec;29(8):1154-61. doi: 10.1002/bio.2676. Epub 2014 May 7.
Quercetin (Qu), a flavonoid compound, exists widely in the human diet and exhibits a variety of pharmacological activities. This work is aimed at studying the effect of Qu on the bioactive protein, human serum albumin (HSA) under simulated biophysical conditions. Multiple spectroscopic methods (including fluorescence and circular dichroism), electrochemical impedance spectra (EIS) and molecular modeling were employed to investigate the interaction between Qu and HSA. The fluorescence quenching and EIS experimental results showed that the fluorescence quenching of HSA was caused by formation of a Qu-HSA complex in the ground state, which belonged to the static quenching mechanism. Based on the calculated thermodynamic parameters, it concluded that the interaction was a spontaneous process and hydrogen bonds combined with van der Waal's forces played a major role in stabilizing the Qu-HSA complex. Molecular modeling results demonstrated that several amino acids participated in the binding process and the formed Qu-HSA complex was stabilized by H-bonding network at site I in sub-domain IIA, which was further confirmed by the site marker competitive experiments. The evidence from circular dichroism (CD) indicated that the secondary structure and microenvironment of HSA were changed. Alterations in the conformation of HSA were observed with a reduction in the amount of α helix from 59.9% (free HSA) to 56% (Qu-HSA complex), indicating a slight unfolding of the protein polypeptides.
槲皮素(Qu)是一种黄酮类化合物,广泛存在于人类饮食中,并具有多种药理活性。这项工作旨在研究在模拟生物物理条件下槲皮素对生物活性蛋白人血清白蛋白(HSA)的影响。采用多种光谱方法(包括荧光和圆二色性)、电化学阻抗谱(EIS)和分子模拟来研究槲皮素与HSA之间的相互作用。荧光猝灭和EIS实验结果表明,HSA的荧光猝灭是由于基态下形成了Qu-HSA复合物所致,属于静态猝灭机制。根据计算得到的热力学参数,得出该相互作用是一个自发过程,氢键和范德华力在稳定Qu-HSA复合物中起主要作用。分子模拟结果表明,几个氨基酸参与了结合过程,形成的Qu-HSA复合物通过IIA亚结构域I位点的氢键网络得以稳定,这一点通过位点标记竞争实验得到了进一步证实。圆二色性(CD)的证据表明,HSA的二级结构和微环境发生了变化。观察到HSA构象的改变,α螺旋含量从59.9%(游离HSA)降至56%(Qu-HSA复合物),表明蛋白质多肽略有展开。