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Functional Analysis and Molecular Docking studies of Medicinal Compounds for AChE and BChE in Alzheimer’s Disease and Type 2 Diabetes Mellitus

机译:阿尔茨海默氏病和2型糖尿病中AChE和BChE的药用化合物的功能分析和分子对接研究

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摘要

Acetylcholinesterase and Butyrylcholinesterase share unravelling link with components of metabolic syndromes that’s characterised by low levels of HDL cholesterol, obesity, high fast aldohexose levels, hyper-trigliceridaemia and high blood pressure, by regulation of cholinergic transmission and therefore the enzyme activity within a living system. The phosphomotifs associated with amino acid and tyrosine binding motifs in AChE and BChE were known to be common. Phylogenetic tree was constructed to these proteins usinf UPGMA and Maximum Likelihood methods in MEGA software has shown interaction of AChE and BChE with ageing diseases like Alzheimer’s disease and Diabetes. AChE has shown closely related to BChE, retinol dehydrogenase and β-polypeptide. The present studies is also accomplished that AChE, BChE, COLQ, HAND1, APP, NLGN2 and NGF proteins has interactions with diseases such as Alzheimer’s and D2M using Pathwaylinker and STRING. Medicinal compounds like Ortho-7, Dibucaine and HI-6 are predicted as good targets for modeled AChE and BChE proteins based on docking studies. Hence perceptive studies of cholinesterase structure and the biological mechanisms of inhibition are necessary for effective drug development.
机译:乙酰胆碱酯酶和丁酰胆碱酯酶与代谢综合征的组成部分有着明确的联系,这些代谢综合征的特征是HDL胆固醇水平低,肥胖,醛固酮水平高,甘油三酯血症和高血压,这是通过调节胆碱能传递从而在生命系统中进行的。已知与AChE和BChE中的氨基酸和酪氨酸结合基序相关的磷酸基序是常见的。使用UPGMA为这些蛋白质构建了系统树,MEGA软件中的最大似然法显示AChE和BChE与衰老性疾病(如阿尔茨海默氏病和糖尿病)的相互作用。 AChE已显示与BChE,视黄醇脱氢酶和β多肽密切相关。本研究还完成了使用Pathwaylinker和STRING的AChE,BChE,COLQ,HAND1,APP,NLGN2和NGF蛋白与阿尔茨海默氏病和D2M等疾病的相互作用。根据对接研究,预测诸如Ortho-7,Dubucaine和HI-6的药用化合物将成为模拟AChE和BChE蛋白的良好靶标。因此,对胆碱酯酶结构和抑制生物学机制的感知研究对于有效的药物开发是必要的。

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