Department of Chemistry, Federal University of Lavras, Lavras, Brazil.
Department of Chemistry, Federal University of Lavras, Lavras, Brazil; Laboratory of Molecular Modeling Applied to the Chemical and Biological Defense, Military Institute of Engineering, Rio de Janeiro, Brazil.
Chem Biol Interact. 2019 Aug 25;309:108671. doi: 10.1016/j.cbi.2019.05.037. Epub 2019 Jun 15.
Studies with oximes have been extensively developed to design new reactivators with better efficiency, and greater spectrum of action. In this study, we aimed to analyze the influence of the Carbamoyl group position change in two isomeric oximes, K203 and K206, on the reactivation percentage of Mus musculus Acetylcholinesterase (MmAChE), inhibited by different nerve agents. Theoretical calculations were performed to assess the difference for the oxime activity with inhibited AChE-complexes and the factors that govern this difference. Comparing theoretical and experimental data, it is possible to observe that this change between the oximes results in different reactivation percentage for the same nerve agent, due to the different interaction modes and activation energy for the studied systems.
研究肟类化合物的目的是设计新的更有效、作用谱更广的重活化剂。在这项研究中,我们旨在分析 Carbamoyl 基团在两种 K203 和 K206 异构肟中的位置变化对不同神经毒剂抑制的 Mus musculus 乙酰胆碱酯酶(MmAChE)的重活化百分比的影响。理论计算用于评估肟与抑制的 AChE 复合物的活性差异以及控制这种差异的因素。通过比较理论和实验数据,可以观察到肟之间的这种变化导致相同神经毒剂的重活化百分比不同,这是由于研究体系的不同相互作用模式和活化能所致。