抗阿尔茨海默病的1n -甲基- 1s -甲基-2-亚硝基乙烯(NMSM)衍生物的合成及硅评价:了解其与乙酰胆碱酯酶的相互作用机制。

Journal of Chemical Biology Pub Date : 2012-09-20 eCollection Date: 2012-01-01 DOI:10.1007/s12154-012-0084-z
M Kannan, P Manivel, K Geetha, J Muthukumaran, H Surya Prakash Rao, R Krishna
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引用次数: 5

摘要

人乙酰胆碱酯酶(hAChE)在阿尔茨海默病(AD)中的异常作用被各种AChE抑制剂所抑制,其中特异性和强效的主要候选药物多奈哌齐被用于治疗AD。除了特异性外,观察到的多奈哌齐引起的不良副作用引发了对AChE效力和特异性更高的新铅分子的探索。本研究阐明了六种1n -甲基- 1s -甲基-2-亚硝基(NMSM)衍生物与hAChE的外周阴离子位点和催化阴离子亚位点残基形成特异性相互作用的能力。以1,1-二(甲基磺酰)-2-亚硝基乙烯和伯胺(或)氨基酸酯为原料制备了NMSMs。硅相互作用分析揭示了hAChE和选定配体分子之间特定和有效的相互作用。这些分子之间形成的位点特异性相互作用也导致hAChE活性位点残基方向的构象改变,从而阻止β -淀粉样蛋白(a β)进入它们,β -淀粉样蛋白是淀粉样斑块形成和乙酰胆碱(ACh)的病原体。配体结合的hAChE与乙酰胆碱和乙酰胆碱之间的硅相互作用分析证实了这一观察结果。hAChE构象的变化与新型NMSMs诱导的Aβ和ACh进入hAChE各自功能残基的能力下降有关,这有利于选择它们作为hAChE抑制剂的新成员进行体内分析。
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Synthesis and in silico evaluation of 1N-methyl-1S-methyl-2-nitroethylene (NMSM) derivatives against Alzheimer disease: to understand their interacting mechanism with acetylcholinesterase.

Anomalous action of human acetylcholinesterase (hAChE) in Alzheimer's disease (AD) was restrained by various AChE inhibitors, of which the specific and potent lead candidate Donepezil is used for treating the disease AD. Besides the specificity, the observed undesirable side effects caused by Donepezil invoked the quest for new lead molecules with the increased potency and specificity for AChE. The present study elucidates the potency of six 1N-methyl-1S-methyl-2-nitroethylene (NMSM) derivatives to form a specific interaction with the peripheral anionic site and catalytic anionic subsite residues of hAChE. The NMSMs were prepared in good yield from 1,1-di(methylsulfanyl)-2-nitroethylene and primary amine (or) amino acid esters. In silico interaction analysis reveals specific and potent interactions between hAChE and selected ligand molecules. The site-specific interactions formed between these molecules also results in a conformational change in the orientation of active site residues of hAChE, which prevents them from being accessed by beta-amyloid protein (Aβ), which is a causative agent for amyloid plaque formation and acetylcholine (ACh). In silico interaction analysis between the ligand-bounded hAChE with Aß and ACh confirms this observation. The variation in the conformation of hAChE associated with the decreased ability of Aβ and ACh to access the respective functional residues of hAChE induced by the novel NMSMs favors their selection for in vivo analysis to present themselves as new members of hAChE inhibitors.

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