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首页> 外文期刊>ChemMedChem >Structure-Activity Relationships and Binding Mode in the Human Acetylcholinesterase Active Site of Pseudo-Irreversible Inhibitors Related to Xanthostigmine
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Structure-Activity Relationships and Binding Mode in the Human Acetylcholinesterase Active Site of Pseudo-Irreversible Inhibitors Related to Xanthostigmine

机译:与Xanthostigmine相关的拟不可逆抑制剂的人乙酰胆碱酯酶活性位点中的结构-活性关系和结合模式

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Structure-activity relationship studies on acetylcholinesterase (AChE) inhibitors were extended to newly synthesized compounds derived from the lead compound xantostigmine (1). The xanthone ring of compound 1 was replaced with several different scaffolds based on the benzopyran skeleton, linked to the tertiary amino nitrogen through an heptyloxy chain. These modifications resulted in 19 new compounds, most of them showing activity in the nanomolar-subnanomolar range. Docking and molecular dynamics simulations were carried out to both define a new computational protocol for the simulation of pseudo-irreversibile AChE covalent inhibitors, and to acquire a better understanding of the structure-activity relationships of the present series of compounds. The results of this computational work prompted us to to evaluate the ability of compounds 5 and 13 to inhibit acetylcholinesterase-induced Aβ aggregation.
机译:对乙酰胆碱酯酶(AChE)抑制剂的构效关系研究扩展到了由先导化合物黄嘌呤胺(1)衍生的新合成化合物。化合物1的x吨酮环被基于苯并吡喃骨架的几种不同的支架取代,这些支架通过庚氧基连接到叔氨基氮上。这些修饰产生了19种新化合物,其中大多数在纳摩尔-亚纳摩尔范围内显示活性。进行了对接和分子动力学模拟,以定义用于模拟不可逆AChE共价抑制剂的新计算方案,并获得了对本系列化合物的构效关系的更好理解。该计算工作的结果促使我们评估化合物5和13抑制乙酰胆碱酯酶诱导的Aβ聚集的能力。

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