Department of Chemistry, Zhengzhou University, Zhengzhou, China.
J Fluoresc. 2012 Nov;22(6):1449-59. doi: 10.1007/s10895-012-1082-9. Epub 2012 Jul 8.
In this work, the interactions of twelve structurally different flavonoids with Lysozyme (Lys) were studied by fluorescence quenching method. The interaction mechanism and binding properties were investigated. It was found that the binding capacities of flavonoids to Lys were highly depend on the number and position of hydrogen, the kind and position of glycosyl. To explore the selectivity of the bindings of flavonoids with Lys, the structure descriptors of the flavonoids were calculated under QSAR software package of Cerius2, the quantitative relationship between the structures of flavonoids and their binding activities to Lys (QSAR) was performed through genetic function approximation (GFA) regression analysis. The QSAR regression equation was K(A) = 37850.460 + 1630.01Dipole +3038.330HD-171.795MR. (r = 0.858, r(CV)(2) = 0.444, F((11,3)) = 7.48), where K(A) is binding constants, Dipole, HD and MR was dipole moment, number of hydrogen-bond donor and molecular refractivity, respectively. The obtained results make us understand better how the molecular structures influencing their binding to protein which may open up new avenues for the design of the most suitable flavonoids derivatives with structure variants.
在这项工作中,通过荧光猝灭法研究了十二种结构不同的黄酮类化合物与溶菌酶(Lys)的相互作用。研究了相互作用机制和结合特性。结果发现,黄酮类化合物与 Lys 的结合能力高度依赖于氢的数量和位置、糖苷的种类和位置。为了探索黄酮类化合物与 Lys 结合的选择性,在 Cerius2 的 QSAR 软件包下计算了黄酮类化合物的结构描述符,通过遗传功能逼近(GFA)回归分析,对黄酮类化合物的结构与其与 Lys 的结合活性(QSAR)之间的定量关系进行了研究。QSAR 回归方程为 K(A) = 37850.460 + 1630.01Dipole +3038.330HD-171.795MR。(r = 0.858,r(CV)(2) = 0.444,F((11,3)) = 7.48),其中 K(A)为结合常数,Dipole、HD 和 MR 分别为偶极矩、氢键供体数和分子折射率。所得结果使我们更好地了解了分子结构如何影响其与蛋白质的结合,这可能为设计具有结构变体的最合适的黄酮类衍生物开辟新途径。