Liu Hui-Juan, Li Peng, Zhang Ya-Dong, Guo Cao, Deng Jun-Yuan, Cai Jian-Wei, Liu Bo-Li
Key Laboratory of Radiopharmaceuticals, Ministry of Education, School of Chemistry, Beijing Normal University, Beijing 100875, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2009 Jul;29(7):1915-9.
The interaction of human serum albumin and folic acid was studied using fluorescence spectroscopy, UV absorption and synchronous fluorescence spectroscopy in the pH 7.4 Tris-HCl buffer system at different temperatures. The research shows that these interactions result in the endogenous fluorescence quenching of HSA, which belongs to a static quenching mechanism. The quenching rate constants, the binding constants and the binding sites of the static quenching were calculated. The distance between the body (HSA) and receptor (folic acid) and the efficiency of energy transfer were obtained to be 1.77 nm and 0. 052 65 respectively, based on the theory of Forster nonradiative energy transfer. And according to the thermodynamic parameters calculated the binding of HSA and folic acid is mainly attributed to the hydrophobic interaction, partly static force. Further more the synchronous fluorescence spectrum was utilized to investigate the conformational transformation; The decline result of the hydrophobic nature around Trp demonstrates that the folic acid is in the hydrophobic cavity of HSA.
在pH 7.4的Tris-HCl缓冲体系中,于不同温度下,采用荧光光谱法、紫外吸收光谱法和同步荧光光谱法研究了人血清白蛋白与叶酸的相互作用。研究表明,这些相互作用导致人血清白蛋白的内源荧光猝灭,属于静态猝灭机制。计算了静态猝灭的猝灭速率常数、结合常数和结合位点。基于福斯特非辐射能量转移理论,得到主体(人血清白蛋白)与受体(叶酸)之间的距离为1.77 nm,能量转移效率为0.052 65。根据热力学参数计算得出,人血清白蛋白与叶酸的结合主要归因于疏水相互作用,部分为静电力。此外,利用同步荧光光谱研究了构象转变;色氨酸周围疏水性的下降结果表明叶酸位于人血清白蛋白的疏水腔内。