首页> 外文期刊>CNS & neurological disorders drug targets >Prediction of comparative inhibition efficiency for a novel natural ligand, galangin against human brain acetylcholinesterase, butyrylcholinesterase and 5-lipoxygenase: A neuroinformatics study
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Prediction of comparative inhibition efficiency for a novel natural ligand, galangin against human brain acetylcholinesterase, butyrylcholinesterase and 5-lipoxygenase: A neuroinformatics study

机译:新型天然配体高良姜素对人脑乙酰胆碱酯酶,丁酰胆碱酯酶和5-脂氧合酶的相对抑制作用的预测:神经信息学研究

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摘要

The present study elucidates molecular interactions of human acetylcholinesterase (AChE), butyrylcholinesterase (BuChE) and 5-lipoxygenase (5-LPO) with a novel natural ligand Galangin (GAL); and also with the well-known ligands Bisnorcymserine (BNC) and Cymserine for comparison. Docking between these ligands and enzymes were performed using 'Autodock4.2'. It was found that hydrophobic interactions play an important role in the correct positioning of BNC within the 'catalytic site' of AChE, BuChE and 5-LPO to permit docking while hydrogen bonds are significant in case of cymserine for the same. However, only polar interactions are significant in the correct positioning of GAL within the 'catalytic site' of AChE, BuChE and 5-LPO to permit docking. Such information may aid in the design of versatile AChE, BuChE and 5 LPO-inhibitors, and is expected to aid in safe clinical use of above ligands. Scope still remains in the determination of the three-dimensional structure of AChE-GAL, BuChE-GAL and 5-LPO-GAL complex by X-ray crystallography to certify the described data. Moreover, the present study confirms that GAL is a more efficient inhibitor of human brain AChE compared to BNC and cymserine, while in case of 5-LPO and human brain BuChE, BNC is a more efficient inhibitor compared to GAL and cymserine with reference to ΔG and Ki values.
机译:本研究阐明了人乙酰胆碱酯酶(AChE),丁酰胆碱酯酶(BuChE)和5-脂氧合酶(5-LPO)与新型天然配体高良姜精(GALANGIN)的分子相互作用。并与著名的配体Bisnorcymserine(BNC)和Cymserine进行比较。这些配体和酶之间的对接使用“ Autodock4.2”进行。发现疏水相互作用在BNC在AChE,BuChE和5-LPO的“催化位点”内的正确定位中起重要作用,以允许对接,而对于cysererine,氢键很重要。但是,只有极性相互作用对GAL在AChE,BuChE和5-LPO的“催化位点”中的正确定位有意义,以允许对接。此类信息可能有助于设计通用的AChE,BuChE和5种LPO抑制剂,并有望有助于上述配体的安全临床使用。通过X射线晶体学确定AChE-GAL,BuChE-GAL和5-LPO-GAL复合物的三维结构以证明所描述的数据仍然存在范围。此外,本研究证实,与BNC和西西林相比,GAL是更有效的人脑AChE抑制剂,而对于5-LPO和人脑BuChE,相对于ΔG,BNC与GAL和西西林相比是更有效的抑制剂。和Ki值。

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