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首页> 外文期刊>Archives of Toxicology >The relevance of inhibitor-substrate interactions when measuring neuropathy target esterase inhibition.
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The relevance of inhibitor-substrate interactions when measuring neuropathy target esterase inhibition.

机译:在测量神经病靶标酯酶抑制作用时抑制剂与底物相互作用的相关性。

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摘要

Neuropathy target esterase (NTE), thought to be the target for organophosphate polyneuropathy, is operationally defined as that neural phenyl valerate esterase resistant to paraoxon (40 microM) and sensitive to mipafox (50 microM; 20 min, pH 8.0, 37 degrees C). The time course of inhibition of particulate paraoxon pretreated esterases by mipafox showed that the lines indicating the rate of inhibition did not pass through the log 100% activity when extrapolated at zero time. Slopes of inhibition of NTE were not linearly related to the concentration of mipafox. Kinetic parameters derived from Wilkinson type plots were: Ka = 49-199 microM, k(+2) = 0.24-0.64 min(-1) and k(a) = 3.1-5.0 mM(-1) m(-1). When mipafox was removed (either by dilution or centrifugation) before the addition of phenyl valerate intercepts below 100% disappeared. We confirm that the formation of Michaelis complex between NTE and mipafox is not prevented by phenyl valerate and that inhibition proceeds after addition of phenyl valerate. We compared inhibitions obtained with experiments by using the traditional method (sequential incubation with inhibitors and phenyl valerate) to those obtained with a method where mipafox is removed before the addition of substrate. When calculating fixed-time 50% inhibitory concentrations (IC50s) of some inhibitors for NTE, the longer the hydrolysis time, the lower were the IC50s. Therefore, the inhibitory potency of certain NTE inhibitors, is accurately assessed only when calculating second-order rate constants (k(a)).
机译:神经病性目标酯酶(NTE)被认为是有机磷酸酯多神经病的靶标,在操作上被定义为对对氧磷(40 microM)有抵抗力且对mipafox(50 microM; 20 min,pH 8.0,37摄氏度)敏感的神经性戊酸苯基酯酶。 。 mipafox抑制颗粒状对氧磷预处理的酯酶的时间过程表明,指示抑制率的谱线在零时外推时未通过对数100%活性。 NTE抑制的斜率与mipafox的浓度没有线性关系。从Wilkinson类型图得出的动力学参数为:Ka = 49-199 microM,k(+2)= 0.24-0.64 min(-1)和k(a)= 3.1-5.0 mM(-1)m(-1)。在添加戊酸苯酯(通过稀释或离心)之前将mipafox除去后,低于100%的截距消失了。我们证实戊酸苯基酯不会阻止NTE和mipafox之间的Michaelis络合物的形成,并且戊酸苯基酯添加后会继续抑制作用。我们将通过使用传统方法(与抑制剂和戊酸苯基酯的顺序孵育)实验获得的抑制作用与通过在添加底物之前先去除mipafox的方法获得的抑制作用进行了比较。当计算某些NTE抑制剂的固定时间50%抑制浓度(IC50s)时,水解时间越长,IC50越低。因此,某些NTE抑制剂的抑制能力只有在计算二级速率常数(k(a))时才能准确评估。

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