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首页> 外文期刊>Bioorganic and medicinal chemistry >Probing the mid-gorge of cholinesterases with spacer-modified bivalent quinazolinimines leads to highly potent and selective butyrylcholinesterase inhibitors.
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Probing the mid-gorge of cholinesterases with spacer-modified bivalent quinazolinimines leads to highly potent and selective butyrylcholinesterase inhibitors.

机译:用间隔物修饰的二价喹唑啉亚胺探测胆碱酯酶的中谷可产生高度有效和选择性的丁酰胆碱酯酶抑制剂。

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摘要

The spacer structure of homobivalent quinazolinimes acting as potent acetyl-(AChE)- and butyrylcholinesterase (BChE) inhibitors was chemically modified introducing tertiary amine and acyl-amide moieties, and the activities at both ChEs were evaluated. Molecular docking was applied to explain the data and probe the capacity of the mid-gorge site of both ChEs. The novel spacer structures considerably alter the biological profile of bivalent quinazolinimines with regard to both inhibitory activity and selectivity. Mutual interaction of binding to the various sites of the enzymes was further investigated by applying also different spacer lengths and ring sizes of the alicycle of the tricyclic quinazolinimines. In order to achieve selectivity toward BChE and to improve inhibitory activities, the spacer structure was optimized and identified a highly potent and selective BChE inhibitor.
机译:化学上修饰了用作有效乙酰基(AChE)和丁酰胆碱酯酶(BChE)抑制剂的均二价喹唑啉肟的间隔结构,并引入了叔胺和酰基酰胺基团,并评估了两种ChE的活性。分子对接用于解释数据并探查两种ChE的中谷位点的容量。就抑制活性和选择性而言,新颖的间隔结构大大改变了二价喹唑啉亚胺的生物学特性。通过应用三环喹唑啉亚胺的脂环的不同间隔区长度和环大小,进一步研究了与酶的各个位点结合的相互作用。为了实现对BChE的选择性并提高抑制活性,对间隔结构进行了优化,并确定了一种高效且选择性的BChE抑制剂。

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