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首页> 外文期刊>Journal of Medicinal Chemistry >In-situ synthesis of a tacrine-triazole-based inhibitor of acetylcholinesterase: Configurational selection imposed by steric interactions
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In-situ synthesis of a tacrine-triazole-based inhibitor of acetylcholinesterase: Configurational selection imposed by steric interactions

机译:基于他克林-三唑的乙酰胆碱酯酶抑制剂的原位合成:由空间相互作用引起的构型选择

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Recently, researchers have used acetylcholinesterase (AChE) as a reaction vessel to synthesize its own inhibitors. Thus, 1 (syn-TZ2PA6), a femtomolar AChE inhibitor, which is formed in a 1: 1 mixture with its anti-isomer by solution phase reaction from 3 (TZ2) and 4 (PA6), can be synthesized exclusively inside the AChE gorge. Our computational approach based on quantum mechanical/molecular mechanical (QM/MM) calculations, molecular dynamics (MD), and targeted molecular dynamics (TMD) studies answers why 1 is the sole product in the AChE environment. Ab initio QM/MM results show that the reaction in the AChE gorge occurs when 3/azide and 4/acetylene are extended in a parallel orientation. An MD simulation started from the final structure of QM/MM calculations keeps the azide's and acetylene's parallel orientations intact for 10 ns of simulation time. A TMD simulation applied on an antiparallel azide-acetylene conformation flips the acetylene easily to bring it to a postion that is parallel to azide. A second set of QM/MM calculations performed on this flipped structure generates a similar minimum-energy path as obtained previously. Even a TMD simulation carried out on a parallel azide-acetylene conformation could not deform their parallel arrangement. All of these results, thus, imply that inside the AChE gorge, the azide group of 3 and the acetylene group of 4 always remain parallel, with the consequence that 1 is the only product. The architecture of the gorge plays an important role in this selective formation of 1.
机译:最近,研究人员已使用乙酰胆碱酯酶(AChE)作为反应容器来合成其自身的抑制剂。因此,可以仅在AChE内部合成1(syn-TZ2PA6),一种飞摩尔型AChE抑制剂,它通过3(TZ2)和4(PA6)的溶液相反应与其反异构体以1:1的混合物形式形成。峡谷。我们基于量子力学/分子力学(QM / MM)计算,分子动力学(MD)和目标分子动力学(TMD)研究的计算方法回答了为什么1是AChE环境中的唯一产品。从头算QM / MM结果表明,当3 /叠氮化物和4 /乙炔以平行方向延伸时,在AChE峡谷中发生反应。从QM / MM计算的最终结构开始的MD模拟可在10 ns的模拟时间内保持叠氮化物和乙炔的平行方向完整。应用于反平行叠氮化物-乙炔构象的TMD模拟可以轻松地将乙炔翻转,使其与叠氮化物平行。在此翻转结构上执行的第二组QM / MM计算将生成与先前获得的相似的最小能量路径。即使在平行的叠氮化物-乙炔构象上进行的TMD模拟也不会使它们的平行排列变形。因此,所有这些结果表明,在AChE峡谷内部,3的叠氮化物基团和4的乙炔基始终保持平行,结果是1是唯一的产物。峡谷的结构在1的选择性形成中起着重要作用。

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