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An investigation of molecular dynamics simulation and molecular docking: Interaction of citrus flavonoids and bovine p-lactoglobulin in focus

机译:分子动力学模拟与分子对接的研究:柑橘类黄酮与牛对乳球蛋白的相互作用

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摘要

Citrus flavonoids are natural compounds with important health benefits. The study of their interaction with a transport protein, such as bovine P-lactoglobulin (BLG), at the atomic level could be a valuable factor to control their transport to biological sites. In the present study, molecular docking and molecular dynamics simulation methods were used to investigate the interaction of hesperetin, naringenin, nobiletin and tangeretin as citrus flavonoids and BLG as transport protein. The molecular docking results revealed that these flavonoids bind in the internal cavity of BLG and the BLG affinity for binding the flavonoids follows naringenin > hesperetin > tangeretin > nobiletin. The docking results also indicated that the BLG-flavonoid complexes are stabilized through hydrophobic interactions, hydrogen bond interactions and pi-pi stacking interactions. The analysis of molecular dynamics (MD) simulation trajectories showed that the root mean square deviation (RMSD) of various systems reaches equilibrium and fluctuates around the mean value at various times. Time evolution of the radius of gyration, total solvent accessible surface of the protein and the second structure of protein showed as well that BLG and BLG-flavonoid complexes were stable around 2500 ps, and there was not any conformational change as for BLG-flavonoid complexes. Further, the profiles of atomic fluctuations indicated the rigidity of the ligand binding site during the simulation.
机译:柑橘类黄酮是具有重要健康益处的天然化合物。在原子水平上研究它们与运输蛋白如牛P-乳球蛋白(BLG)的相互作用可能是控制其向生物部位运输的重要因素。在本研究中,使用分子对接和分子动力学模拟方法研究橙皮素,柚皮素,诺比列汀和橘皮素作为柑桔类黄酮和BLG作为转运蛋白的相互作用。分子对接结果表明,这些类黄酮在BLG的内腔中结合,并且BLG对类黄酮的亲和力遵循柚皮苷>橙皮素>橘皮苷>诺比列汀。对接结果还表明,BLG-类黄酮复合物通过疏水相互作用,氢键相互作用和pi-pi堆积相互作用而稳定。分子动力学(MD)模拟轨迹的分析表明,各种系统的均方根偏差(RMSD)达到平衡,并在不同时间围绕平均值波动。旋转半径,蛋白质的总溶剂可及表面和蛋白质的二级结构的时间演变也表明,BLG和BLG-类黄酮复合物在2500 ps左右稳定,并且与BLG-类黄酮复合物没有任何构象变化。 。此外,原子涨落的轮廓表明了模拟过程中配体结合位点的刚性。

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