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Inhibition of AChE by malathion and some structurally similar compounds

机译:马拉硫磷和某些结构相似的化合物对AChE的抑制作用

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Inhibition of bovine erythrocyte acetylcholinesterase (free and immobilized on controlled pore glass) by separate and simultaneous exposure to malathion and malathion transformation products which are generally formed during storage or through natural or photochemical degradation was investigated. Increasing concentrations of malathion, its oxidation product malaoxon, and its isomerisation product isomalathion inhibited free and immobilized AChE in a concentration-dependent manner. K I, the dissociation constant for the initial reversible enzyme inhibitor-complex, and k 3, the first order rate constant for the conversion of the reversible complex into the irreversibly inhibited enzyme, were determined from the progressive development of inhibition produced by reaction of native AChE with malathion, malaoxon and isomalathion. K I values of 1.3 × 10 -4 M -1, 5.6 × 10 -6 M -1 and 7.2 × 10 -6 M -1 were obtained for malathion, malaoxon and isomalathion, respectively. The IC 50 values for free/immobilized AChE, (3.7 ± 0.2) × 10 -4 M/(1.6 ± 0.1) ×10 -4, (2.4 ± 0.3) × 10 -6/(3.4 ± 0.1) × 10 -6 M and (3.2 ± 0.3) × 10 -6 M/(2.7 ± 0.2) × 10 -6 M, were obtained from the inhibition curves induced by malathion, malaoxon and isomalathion, respectively. However, the products formed due to photoinduced degradation, phosphorodithioic O,O,S-trimethyl ester and O,O-dimethyl thiophosphate, did not noticeably affect enzymatic activity, while diethyl maleate inhibited AChE activity at concentrations 10 mM. Inhibition of acetylcholinesterase increased with the time of exposure to malathion and its inhibiting by-products within the interval from 0 to 5 minutes. Through simultaneous exposure of the enzyme to malaoxon and isomalathion, an additive effect was achieved for lower concentrations of the inhibitors (in the presence of malaoxon/ isomalathion at concentrations 2 ×10 -7 M/2 × 10 -7 M, 2 × 10 -7 M/3 × 10 -7 M and 2 × 10 -7 M/4.5 × 10 -7 M), while an antagonistic effect was obtained for all higher concentrations of inhibitors. The presence of a non-inhibitory degradation product (phosphorodithioic O,O,S-trimethyl ester) did not affect the inhibition efficiencies of the malathion by-products, malaoxon and isomalathion.
机译:研究了牛红细胞乙酰胆碱酯酶(游离并固定在受控孔玻璃上)通过分别同时暴露于马拉硫磷和马拉硫磷转化产物的抑制作用,该产物通常在储存过程中或通过自然或光化学降解而形成。马拉硫磷,其氧化产物马拉oxon及其异构化产物异马拉硫磷浓度的增加以浓度依赖的方式抑制了游离的和固定化的AChE。根据天然AChE反应产生的抑制作用的逐步发展来确定KI(初始可逆酶抑制剂复合物的解离常数)和k 3(可逆复合物转化为不可逆抑制酶的一级速率常数)。与马拉硫磷,马拉松和异马拉硫磷。马拉硫磷,马拉松和异马拉硫磷的K I值分别为1.3×10 -4 M -1,5.6×10 -6 M -1和7.2×10 -6 M -1。游离/固定AChE的IC 50值(3.7±0.2)×10 -4 M /(1.6±0.1)×10 -4,(2.4±0.3)×10 -6 /(3.4±0.1)×10 -6 M和(3.2±0.3)×10 -6 M /(2.7±0.2)×10 -6 M分别从马拉硫磷,马拉松和异马拉硫磷诱导的抑制曲线获得。然而,由于光诱导降解而形成的产物,二硫代磷酸O,O,S-三甲酯和O,O-二甲基硫代磷酸酯并未显着影响酶活性,而马来酸二乙酯在浓度> 10 mM时抑制了AChE活性。在暴露于马拉硫磷及其抑制副产物的时间(从0到5分钟)内,乙酰胆碱酯酶的抑制作用会增加。通过将酶同时暴露于马拉松和异马拉硫磷中,可以实现较低浓度抑制剂的累加效应(在存在马拉松酮/异马拉硫磷的情况下浓度为2×10 -7 M / 2×10 -7 M,2×10- 7 M / 3×10 -7 M和2×10 -7 M / 4.5×10 -7 M),而所有更高浓度的抑制剂均具有拮抗作用。非抑制性降解产物(二硫代磷酸O,O,S-三甲酯)的存在不影响马拉硫磷副产物马拉松和异马拉硫磷的抑制效率。

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