Hunan Province College Key Laboratory of QSAR/QSPR, School of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Xiangtan, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Apr;78(4):1329-35. doi: 10.1016/j.saa.2011.01.024. Epub 2011 Jan 26.
The fluorescence and ultraviolet spectroscopy were explored to study the interaction between N-confused porphyrins (NCP) and bovine serum albumin (BSA) under imitated physiological condition. The experimental results indicated that the fluorescence quenching mechanism between BSA and NCP was static quenching procedure at low NCP concentration at 293 and 305 K or a combined quenching (static and dynamic) procedure at higher NCP concentration at 305 K. The binding constants, binding sites and the corresponding thermodynamic parameters ΔH, ΔS, and ΔG were calculated at different temperatures. The comparison of binding potency of the three NCP to BSA showed that the substituting groups in benzene ring could enhance the binding affinity. From the thermodynamic parameters, we concluded that the action force was mainly hydrophobic interaction. The binding distances between NCP and BSA were calculated using Förster non-radiation energy transfer theory. In addition, the effect of NCP on the conformation of BSA was analyzed using synchronous fluorescence spectroscopy.
采用荧光光谱法和紫外光谱法研究了在模拟生理条件下 N- 杂化卟啉(NCP)与牛血清白蛋白(BSA)之间的相互作用。实验结果表明,在 293 和 305 K 时,低浓度 NCP 与 BSA 之间的荧光猝灭机制为静态猝灭过程,而在 305 K 时高浓度 NCP 则为静态和动态猝灭的综合过程。在不同温度下计算了结合常数、结合位点数以及相应的热力学参数 ΔH、ΔS 和 ΔG。比较了三种 NCP 与 BSA 的结合能力,结果表明苯环上的取代基可以增强结合亲和力。从热力学参数可以得出,作用力主要是疏水相互作用。采用Förster 非辐射能量转移理论计算了 NCP 与 BSA 之间的结合距离。此外,还利用同步荧光光谱法分析了 NCP 对 BSA 构象的影响。