Biophysical Chemistry Laboratory, Physical Chemistry Section, Department of Chemistry, Jadavpur University, Raja S. C. Mullick Road, Jadavpur, Kolkata 700 032, India.
Biophysical Chemistry Laboratory, Physical Chemistry Section, Department of Chemistry, Jadavpur University, Raja S. C. Mullick Road, Jadavpur, Kolkata 700 032, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2019 Dec 5;223:117293. doi: 10.1016/j.saa.2019.117293. Epub 2019 Jun 20.
The association of a putative bioactive alkaloid nitidine (NIT) with blood protein bovine hemoglobin (BHb) was investigated by employing various biophysical and molecular docking techniques. NIT binding to BHb was first characterized by hypochromic effect on the Soret band absorption of BHb from spectrophotometric studies. Spectrofluorimetric titration and unchanged fluorescence lifetime of BHb confirmed ground state complexation followed by the static nature of the emission quenching mechanism of the protein induced by NIT. Substantial conformational changes in the protein structure were established from circular dichroism study. Conformational perturbation results a lowering in the α-helical organization of the tetrameric protein structure. Thermodynamics of the binding suggest that the binding is exothermic with a favourable small positive entropy change and negative enthalpy change making a sense of electrostatic interaction as the major acting force. Experimentally calculated free energy change for the NIT-BHb interaction was found to be -7.50 kcal mol which is in well agreement to the theoretical docking energy value of -6.36 kcal mol. AutoDock based molecular docking suggests the internal cavity of BHb as the preferred binding position of NIT. Overall this manuscript depicts consequences on the molecular interaction of NIT with BHb from structural and energetic standpoints providing a profound insight into protein-ligand association.
采用多种生物物理和分子对接技术研究了一种假定的生物活性生物碱尼替丁(NIT)与血蛋白牛血红蛋白(BHb)的结合。通过分光光度研究,从 BHb 的 Soret 带吸收的增色效应首先表征了 NIT 与 BHb 的结合。光谱荧光滴定和 BHb 的荧光寿命不变证实了基态络合,随后是 NIT 诱导的蛋白质发射猝灭机制的静态性质。圆二色性研究确立了蛋白质结构的大量构象变化。构象扰动导致四聚体蛋白质结构的α-螺旋组织降低。结合的热力学表明,结合是放热的,具有有利的小正熵变化和负焓变化,使静电相互作用成为主要作用力量。实验计算的 NIT-BHb 相互作用的自由能变化为-7.50 kcal/mol,与理论对接能量值-6.36 kcal/mol 非常吻合。基于 AutoDock 的分子对接表明 BHb 的内部腔是 NIT 的首选结合位置。总体而言,本文从结构和能量的角度描述了 NIT 与 BHb 的分子相互作用的后果,为蛋白质-配体结合提供了深刻的见解。