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Docking and quantum mechanic studies on cholinesterases and their inhibitors.

机译:胆碱酯酶及其抑制剂的对接和量子力学研究。

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摘要

Docking studies and density functional theory (DFT) calculations were made for 88 N-aryl derivatives and for some acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) residues. Based on this information, some compounds were synthesized and tested kinetically in vitro as AChE inhibitors. Finally, some chemical properties of the N-aryl derivatives were calculated: partition coefficient (pi) and molecular electrostatic potentials (MESPs) whereas their electronic effects (rho) were taken from the literature. The results showed that all compounds act inside the AChE gorge, making pi-pi interactions and hydrogen bonds with Trp86 and Ser203 and by high HOMO energies of Ser2003 and high LUMO energies of N-aryl derivatives. These theoretical calculations for AChE are in agreement with the experimental data, whereas such calculations for BChE do not show the same behavior which could be due to in spite of both cholinesterase enzymes displaying similar functional activities they do possess important structural differences at their catalystic sites.
机译:对88个N-芳基衍生物以及一些乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BChE)残基进行了对接研究和密度泛函理论(DFT)计算。根据此信息,合成了一些化合物,并作为AChE抑制剂在体外进行了动力学测试。最后,计算了N-芳基衍生物的一些化学性质:分配系数(pi)和分子静电势(MESP),而其电子效应(rho)则取自文献。结果表明,所有化合物都在AChE峡谷内起作用,与Trp86和Ser203进行pi-pi相互作用和氢键,并由Ser2003的高HOMO能量和N-芳基衍生物的高LUMO能量起作用。这些有关AChE的理论计算与实验数据相符,而针对BChE的这些计算并未显示出相同的行为,这可能是由于尽管两种胆碱酯酶均显示出相似的功能活性,但它们在其催化位点确实具有重要的结构差异。

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