Binding interaction of a potential statin with β-lactoglobulin: An in silico approach

氢键 化学 范德瓦尔斯力 回转半径 配体(生物化学) 结合能 分子动力学 相互作用能 计算化学 结晶学 蛋白质配体 对接(动物) 疏水效应 可达表面积 分子 受体 有机化学 物理 医学 护理部 生物化学 核物理学 聚合物
作者
Indrani Baruah,Gargi Borgohain
出处
期刊:Journal of Molecular Graphics & Modelling [Elsevier BV]
卷期号:111: 108077-108077 被引量:5
标识
DOI:10.1016/j.jmgm.2021.108077
摘要

This article reports the interaction between a synthetic statin, fluvastatin with bovine milk protein, β-lactoglobulin (BLG) through docking, constant pH molecular dynamics simulation (cpHMD) and binding free energy calculations. Docking provides the best fitted binding mode of the ligand with the receptor. We have carried out MD simulations of the protein and protein-ligand complex at two different pH viz. 7.0 and 1.5. We have found that the protein shows more compact behavior at pH 1.5 and this behavior is more prominent on complexation with the ligand. In support of this we have utilized the properties viz. root mean square deviations, root mean square fluctuations, radius of gyration, protein-ligand hydrogen bond and binding free energy calculations. Calculation of radius of gyration shows that the value decreases from 14.51 Å to 14.03 Å on complexation at pH 1.5. Calculations of hydrogen bonds at pH 1.5 confirms that hydrogen bonding interactions of the binding residues of the protein with the ligand provides stability to the complex. We have used molecular mechanics-generalized Born surface area (MMGBSA) method to estimate binding free energies of the protein with the ligand. MMGBSA calculations suggest that there is favorable binding interactions between the protein and the ligand with major contributions from Van der Waals interactions. We have found that the net average binding free energy is -29.394 kcal/mol that reveals a favorable binding interactions of BLG with the ligand. This study suggests that in spite of the acidic environment in the stomach BLG can act as a carrier for the acid-sensitive drug molecules such as fluvastatin because of its highly stable conformational behavior in the acidic pH.

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