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新型非离子型、中枢作用再激活剂与 OP-hAChE 缀合物相互作用的机制。

Mechanism of interaction of novel uncharged, centrally active reactivators with OP-hAChE conjugates.

机构信息

Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California at San Diego, La Jolla, CA 92093-0650, USA.

出版信息

Chem Biol Interact. 2013 Mar 25;203(1):67-71. doi: 10.1016/j.cbi.2012.08.014. Epub 2012 Sep 4.

Abstract

A library of more than 200 novel uncharged oxime reactivators was used to select and refine lead reactivators of human acetylcholinesterase (hAChE) covalently conjugated with sarin, cyclosarin, VX, paraoxon and tabun. N-substituted 2-hydroxyiminoacetamido alkylamines were identified as best reactivators and reactivation kinetics of the lead oximes, RS41A and RS194B, were analyzed in detail. Compared to reference pyridinium reactivators, 2PAM and MMB4, molecular recognition of RS41A reflected in its Kox constant was compromised by an order of magnitude on average for different OP-hAChE conjugates, without significant differences in the first order maximal phosphorylation rate constant k(2). Systematic structural modifications of the RS41A lead resulted in several-fold improvement with reactivator, RS194B. Kinetic analysis indicated K(ox) reduction for RS194B as the main kinetic constant leading to efficient reactivation. Subtle structural modifications of RS194B were used to identify essential determinants for efficient reactivation. Computational molecular modeling of RS41A and RS194B interactions with VX inhibited hAChE, bound reversibly in Michaelis type complex and covalently in the pentacoordinate reaction intermediate suggests that the faster reactivation reaction is a consequence of a tighter RS194B interactions with hAChE peripheral site (PAS) residues, in particular with D74, resulting in lower interaction energies for formation of both the binding and reactivation states. Desirable in vitro reactivation properties of RS194B, when coupled with its in vivo pharmacokinetics and disposition in the body, reveal the potential of this oxime design as promising centrally and peripherally active antidotes for OP toxicity.

摘要

利用超过 200 种新型中性肟重活化剂库,从与沙林、梭曼、VX、对氧磷和塔崩共价结合的人乙酰胆碱酯酶 (hAChE) 中筛选和精炼先导重活化剂。确定 N-取代 2-羟亚氨基乙酰胺基烷基胺为最佳重活化剂,并详细分析了先导肟 RS41A 和 RS194B 的重活化动力学。与参考吡啶重活化剂 2PAM 和 MMB4 相比,RS41A 的分子识别反映在其 Kox 常数上,对于不同的 OP-hAChE 缀合物平均降低了一个数量级,而第一级最大磷酸化速率常数 k(2) 没有显著差异。对 RS41A 先导的系统结构修饰导致重活化剂 RS194B 的重活化效率提高了数倍。动力学分析表明,对于 RS194B,K(ox) 降低是导致有效重活化的主要动力学常数。对 RS194B 进行细微的结构修饰,以确定有效重活化的关键决定因素。RS41A 和 RS194B 与 VX 抑制的 hAChE 的相互作用的计算分子建模,以迈克尔型复合物可逆结合,以五配位反应中间体共价结合,表明更快的重活化反应是由于 RS194B 与 hAChE 周围部位 (PAS) 残基的更紧密相互作用的结果,特别是与 D74 的相互作用,导致结合和重活化状态形成的相互作用能更低。RS194B 的理想体外重活化特性,当与体内药代动力学和处置相结合时,揭示了这种肟设计作为有前途的中枢和外周活性抗 OP 毒性解毒剂的潜力。

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