He Wen-Ying, Sun Zhen-Fan, Yao Xiao-Jun, Chen Guang-Ying
College of Chemical and Chemical Engineering, Hainan Normal University, Haikou 571158, China.
Yao Xue Xue Bao. 2010 May;45(5):608-14.
In this paper, the fluorogenic property of vindoline was exploited and, as a probe, used to analyze the interaction of vindoline with HSA by fluorescence and absorption spectra in combination with molecular modeling under a simulated physiological conditions. The evidences from synchronous fluorescence and absorption spectroscopes showed the effect of vindoline on the microenvironment around HSA in aqueous solution. Data obtained by the fluorescence spectroscopy indicated that binding of vindoline with HSA leads to dramatic enhancement of the fluorescence emission intensity. The binding constants and the number of binding sites between vindoline and HSA at different temperatures (303, 310 and 317 K) were calculated according to the data obtained from fluorescence titration. Molecular docking was performed to reveal the possible binding mode or mechanism and suggested that vindoline can bind strongly to HSA. It is considered that vindoline binds to HSA mainly by a hydrophobic interaction and there are four hydrogen bonds interactions between the drug and the residues Ala291, Arg222, Arg218 and Lys195, separately. Fluorescent displacement measurements confirmed that vindoline bind HSA on site II. The thermodynamic parameters obtained (the enthalpy change deltaH0 and the entropy change deltaS0 were calculated to be -10.30 kJ x mol(-1) and 79.98 J x mol(-1) x K(-1), respectively, according to the Van't Hoff equation) suggested that hydrophobic and electrostatic interaction is the predominant intermolecular forces stabilizing the complex.
本文利用长春多灵的荧光特性,将其作为探针,在模拟生理条件下通过荧光光谱和吸收光谱结合分子模拟来分析长春多灵与血清白蛋白(HSA)的相互作用。同步荧光光谱和吸收光谱的证据表明了长春多灵对水溶液中HSA周围微环境的影响。荧光光谱获得的数据表明,长春多灵与HSA的结合导致荧光发射强度显著增强。根据荧光滴定获得的数据计算了不同温度(303、310和317K)下长春多灵与HSA之间的结合常数和结合位点数。进行分子对接以揭示可能的结合模式或机制,结果表明长春多灵可与HSA强烈结合。据认为,长春多灵主要通过疏水相互作用与HSA结合,药物与残基Ala291、Arg222、Arg218和Lys195之间分别存在四个氢键相互作用。荧光位移测量证实长春多灵在II位点与HSA结合。获得的热力学参数(根据范特霍夫方程计算,焓变ΔH0和熵变ΔS0分别为-10.30kJ·mol⁻¹和79.98J·mol⁻¹·K⁻¹)表明疏水和静电相互作用是稳定该复合物的主要分子间作用力。