Department of Chemistry, National Institute of Technology, Meghalaya, Shillong 793003, India.
Phys Chem Chem Phys. 2018 Aug 22;20(33):21668-21684. doi: 10.1039/c8cp02760a.
The binding of two bio-active flavonoids, quercetin and rutin, with bovine hemoglobin (BHb) was investigated by multi-spectroscopic and computational (molecular docking and molecular dynamics simulation) studies. The two flavonoids were found to quench the intrinsic fluorescence of BHb through a static quenching mechanism. The binding constants at 288 K were observed to be (14.023 ± 0.73) × 104 M-1 and (7.848 ± 0.20) × 104 M-1, respectively for quercetin and rutin binding with BHb. Both rutin and quercetin were observed to increase the polarity around the Trp residues of BHb as indicated by synchronous and 3D spectral studies. No significant alterations in the secondary structural components of the protein were caused during the binding of the flavonoids as studied by CD and FTIR studies. The negative molar Gibbs free energies indicated the spontaneity of the interaction processes while the binding processes were characterized by a negative enthalpy change (ΔH) and a positive entropy change (ΔS). The possibility of energy transfer from the donor (BHb) to the acceptor molecules (flavonoids) was indicated by the FRET studies. According to the fluorescence studies, the flavonoids interact near to the β2-Trp37 residue of BHb. Excellent correlations with the experimental studies were observed from the molecular docking and molecular dynamics (MD) simulation studies. Further investigations established that these flavonoids are efficient in the inhibition of glucose mediated glycation of BHb.
两种生物活性黄酮类化合物槲皮素和芦丁与牛血红蛋白(BHb)的结合通过多光谱和计算(分子对接和分子动力学模拟)研究进行了研究。发现这两种类黄酮通过静态猝灭机制猝灭 BHb 的固有荧光。在 288 K 下观察到与 BHb 结合的槲皮素和芦丁的结合常数分别为(14.023 ± 0.73)×104 M-1和(7.848 ± 0.20)×104 M-1。芦丁和槲皮素都观察到增加了 BHb 色氨酸残基周围的极性,如同步和 3D 光谱研究所示。通过 CD 和 FTIR 研究发现,在黄酮类化合物结合过程中,蛋白质的二级结构成分没有发生明显变化。负摩尔吉布斯自由能表明相互作用过程的自发性,而结合过程的特征是焓变(ΔH)为负和熵变(ΔS)为正。荧光猝灭研究表明,能量从供体(BHb)转移到受体分子(类黄酮)的可能性。根据荧光研究,类黄酮在 BHb 的β2-Trp37 残基附近相互作用。分子对接和分子动力学(MD)模拟研究与实验研究具有极好的相关性。进一步的研究表明,这些类黄酮在抑制葡萄糖介导的 BHb 糖化方面非常有效。