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Steady-State Kinetics of Enzyme-Catalyzed Hydrolysis of Echothiophate a P–S Bonded Organophosphorus as Monitored by Spectrofluorimetry

机译:荧光光谱法监测的酶催化的Echothiophate水解的稳态动力学Echothiophate是一种PS键合的有机磷。

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摘要

Enzyme-catalyzed hydrolysis of echothiophate, a P–S bonded organophosphorus (OP) model, was spectrofluorimetrically monitored, using Calbiochem Probe IV as the thiol reagent. OP hydrolases were: the G117H mutant of human butyrylcholinesterase capable of hydrolyzing OPs, and a multiple mutant of phosphotriesterase, GG1, designed to hydrolyze a large spectrum of OPs at high rate, including V agents. Molecular modeling of interaction between Probe IV and OP hydrolases (G117H butyrylcholinesterase, GG1, wild types of and phosphotriesterases, and human paraoxonase-1) was performed. The high sensitivity of the method allowed steady-state kinetic analysis of echothiophate hydrolysis by highly purified G117H butyrylcholinesterase concentration as low as 0.85 nM. Hydrolysis was michaelian with = 0.20 ± 0.03 mM and = 5.4 ± 1.6 min . The GG1 phosphotriesterase hydrolyzed echothiophate with a high efficiency ( = 2.6 ± 0.2 mM; = 53400 min ). With a = (2.6 ± 1.6) × 10 M min , GG1 fulfills the required condition of potential catalytic bioscavengers. quantum mechanics/molecular mechanics (QM/MM) and molecular docking indicate that Probe IV does not interact significantly with the selected phosphotriesterases. Moreover, results on G117H mutant show that Probe IV does not inhibit butyrylcholinesterase. Therefore, Probe IV can be recommended for monitoring hydrolysis of P–S bonded OPs by thiol-free OP hydrolases.
机译:使用Calbiochem Probe IV作为硫醇试剂,通过荧光光谱法监测了P-S键合的有机磷(OP)模型的酶催化的巯基磷酸盐的水解。 OP水解酶是:能够水解OP的人丁酰胆碱酯酶的G117H突变体,和磷酸三酯酶GG1的多个突变体,被设计为高速率水解大范围的OP,包括V试剂。进行了探针IV和OP水解酶(G117H丁酰胆碱酯酶,GG1,野生型和磷酸三酯酶以及人对氧磷酶-1)之间相互作用的分子建模。该方法的高灵敏度允许通过低至0.85 nM的高纯度G117H丁酰胆碱酯酶浓度对回硫硫代磷酸酯水解进行稳态动力学分析。水解是米氏的,为0.20±0.03mM,= 5.4±1.6min。 GG1磷酸三酯酶高效水解(2.6±0.2 mM; = 53400 min)的硫代硫代磷酸酯。当a =(2.6±1.6)×10 M min时,GG1满足潜在催化生物清除剂的要求条件。量子力学/分子力学(QM / MM)和分子对接表明探针IV与所选的磷酸三酯酶没有明显的相互作用。此外,G117H突变体的结果表明,探针IV不抑制丁酰胆碱酯酶。因此,建议使用探针IV来监测无硫醇的OP水解酶对PS键合的OP的水解。

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