Biophysical Chemistry Laboratory, Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia (A Central University), New Delhi 110025, India.
Centre for Nano and Material Sciences, Jain University, Jain Global Campus, Jakkasandra Post, Bangalore 562112, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jun 15;199:32-42. doi: 10.1016/j.saa.2018.03.023. Epub 2018 Mar 11.
The binding nature of amphiphilic drugs viz. promethazine hydrochloride (PMT) and adiphenine hydrochloride (ADP), with human hemoglobin (Hb) was unraveled by fluorescence, absorbance, time resolved fluorescence, fluorescence resonance energy transfer (FRET) and circular dichroism (CD) spectral techniques in combination with molecular docking and molecular dynamic simulation methods. The steady state fluorescence spectra indicated that both PMT and ADP quenches the fluorescence of Hb through static quenching mechanism which was further confirmed by time resolved fluorescence spectra. The UV-Vis spectroscopy suggested ground state complex formation. The activation energy (E) was observed more in the case of Hb-ADP than Hb-PMT interaction system. The FRET result indicates the high probability of energy transfer from β Trp37 residue of Hb to the PMT (r=2.02nm) and ADP (r=2.33nm). The thermodynamic data reveal that binding of PMT with Hb are exothermic in nature involving hydrogen bonding and van der Waal interaction whereas in the case of ADP hydrophobic forces play the major role and binding process is endothermic in nature. The CD results show that both PMT and ADP, induced secondary structural changes of Hb and unfold the protein by losing a large helical content while the effect is more pronounced with ADP. Additionally, we also utilized computational approaches for deep insight into the binding of these drugs with Hb and the results are well matched with our experimental results.
通过荧光、吸收、时间分辨荧光、荧光共振能量转移(FRET)和圆二色性(CD)光谱技术结合分子对接和分子动力学模拟方法,揭示了两亲性药物盐酸异丙嗪(PMT)和盐酸苯丙醇胺(ADP)与人血红蛋白(Hb)的结合性质。稳态荧光光谱表明,PMT 和 ADP 均通过静态猝灭机制猝灭 Hb 的荧光,时间分辨荧光光谱进一步证实了这一点。紫外-可见光谱表明存在基态复合物形成。与 Hb-PMT 相互作用体系相比,Hb-ADP 相互作用体系的活化能(E)更高。FRET 结果表明,从 Hb 的βTrp37 残基到 PMT(r=2.02nm)和 ADP(r=2.33nm)的能量转移具有很高的概率。热力学数据表明,PMT 与 Hb 的结合是放热的,涉及氢键和范德华相互作用,而在 ADP 的情况下,疏水作用力起主要作用,结合过程是吸热的。CD 结果表明,PMT 和 ADP 均诱导 Hb 的二级结构发生变化,并通过失去大量螺旋含量使蛋白质展开,而 ADP 的影响更为明显。此外,我们还利用计算方法深入了解这些药物与 Hb 的结合情况,结果与实验结果非常吻合。