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Molecular Docking and Molecular Dynamic Studies of Semi-Synthetic Piperidine Alkaloids as Acetylcholinesterase Inhibitors

机译:半合成哌啶生物碱作为乙酰胆碱酯酶抑制剂的分子对接和分子动力学研究

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摘要

The mixture of semi-synthetic derivatives (-)-3-O-acetyl-cassine hydrochloride and (-)-3-O-acetyl-spectaline hydrochloride, prepared from the mixture of natural alkaloids (-)-cassine and (-)-spectaline (4:1) isolated from Senna spectabilis, has been shown to be a potent acetylcholinesterase (AChE) inhibitor, thereby prompting further molecular studies. In this sense, docking and dynamic molecular studies were carried out in this work, aiming to acquire a deeper understanding about all the structural aspects of molecules (-)-3-O-acetyl-cassine and (-)-3-O-acetyl-spectaline hydrochlorides, which differ with respect to their AChE inhibitory potentials. Both molecules establish important interactions with the peripheral anionic site within the catalytic gorge of Torpedo californica AChE. However, only the major compound (-)-3-O-acetyl-cassine hydrochloride significantly interacts with the catalytic triad. Explicit-solvent molecular dynamic simulations were conducted in order to gain better understanding about the hypothetical interactions taking place between the semi-synthetic alkaloid molecules (-)-3-O-acetyl-cassine and (-)-3-O-acetyl-spectaline hydrochlorides and AChE. The data obtained in this study indicated that (-)-3-O-acetyl-cassine hydrochloride is the most potent inhibitor of AChE possibly due to the favorable interactions of this molecule with the target protein, with lower desolvation cost. These results suggested that the size of the side chain has an effect on the inhibitory potential of the evaluated molecules and may represent the starting point for the development of new derivatives of (-)-3-O-acetyl-cassine hydrochloride, with a view to the discovery of new effective AChE inhibitors.
机译:由天然生物碱(-)-酪氨酸和(-)-的混合物制得的半合成衍生物(-)-3-O-乙酰-酪氨酸盐酸盐和(-)-3-O-乙酰-酞菁盐酸盐的混合物分离自番泻叶的番木瓜(4:1)被证明是有效的乙酰胆碱酯酶(AChE)抑制剂,从而促进了进一步的分子研究。从这个意义上讲,这项工作进行了对接和动态分子研究,旨在对分子(-)-3-O-乙酰-酪氨酸和(-)-3-O-乙酰基的分子的所有结构方面有更深入的了解。 -盐酸盐盐酸盐,其AChE抑制潜能不同。两种分子都与加州鱼雷AChE催化峡谷内的外围阴离子位点建立了重要的相互作用。但是,只有主要的化合物(-)-3-O-乙酰基酪氨酸盐酸盐才与催化三联体显着相互作用。进行了显式溶剂分子动力学模拟,以更好地了解半合成生物碱分子(-)-3-O-乙酰-酪氨酸和(-)-3-O-乙酰-spectaline之间发生的假设相互作用盐酸盐和AChE。在这项研究中获得的数据表明,(-)-3-O-乙酰基酪氨酸盐酸盐是AChE的最有效抑制剂,可能是由于该分子与靶蛋白的良好相互作用,降低了去溶剂化的成本。这些结果表明,侧链的大小对所评估分子的抑制潜能有影响,并可能代表开发(-)-3-O-乙酰基酪氨酸盐酸盐新衍生物的起点。发现新的有效AChE抑制剂。

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