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Acetylcholinesterase. Two types of inhibition by an organophosphorus compound: one the formation of phosphorylated enzyme and the other analogous to inhibition by substrate

机译:乙酰胆碱酯酶。有机磷化合物的两种抑制作用:一种形成磷酸化酶,另一种类似于底物抑制

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摘要

1. The kinetics of the reaction of di-(2-chloroethyl) 3-chloro-4-methylcoumarin-7-yl phosphate (haloxon) and related compounds with acetylcholinesterase were studied and found to be unusual. 2. By a progressive reaction haloxon produces a di-(2-chloroethyl)phosphorylated enzyme. The influence of substrate on this reaction leading to a phosphorylated active centre was studied. From competition experiments between inhibitor and substrate values of Km for acetylcholine and acetylthiocholine of 0·79mm and 0·23mm respectively were derived. 3. Haloxon also combines with acetylcholinesterase by a non-progressive reaction, producing a complex that is reversible by dilution and by high concentrations of acetylcholine and acetylthiocholine. From this non-progressive reaction the competition between haloxon and substrate was studied, and it was shown that haloxon combines with a site involved in inhibition by substrate. From competition experiments the following dissociation constants were derived: for combination of haloxon and this site Ki is 4·9μm and for the combination of substrates with this site K88 values are 12mm and 3·3mm for acetylcholine and acetylthiocholine respectively. 4. The non-phosphorus-containing compound 3-chloro-7-hydroxy-4-methylcoumarin was shown to be a good reagent for the site involved in inhibition by substrate; its dissociation constant for the combination with this site is 30μm. 5. In order to interpret the experimental results, theoretical equations were derived for an enzyme with two binding sites to both of which substrate and inhibitor can combine. The equations correlate the activity of the enzyme with the concentration of substrate and inhibitor, for both progressive and non-progressive inhibition. These equations are applicable to reactions of acetylcholinesterase with organophosphorus compounds, carbamates etc. and may be applicable to other enzymes possessing two binding sites.
机译:1.研究了磷酸二(2-氯乙基)3-氯-4-甲基香豆素-7-基酯(卤代酮)与相关化合物与乙酰胆碱酯酶的反应动力学,发现异常。 2. Haloxon通过逐步反应产生了一种二(2-氯乙基)磷酸化酶。研究了底物对该反应导致磷酸化活性中心的影响。从Km抑制剂和底物Km的竞争实验中得出,乙酰胆碱和乙酰硫胆碱分别为0·79mm和0·23mm。 3. Haloxon还通过非进行性反应与乙酰胆碱酯酶结合,产生一种复合物,该复合物可通过稀释以及高浓度的乙酰胆碱和乙酰硫胆碱可逆。从这种非进行性反应中,研究了卤代酮与底物之间的竞争,结果表明卤代酮与参与底物抑制的位点结合。从竞争实验中得出以下解离常数:对于卤代酮的结合,该位点的Ki为4·9μm,对于具有该位点的底物的结合,乙酰胆碱和乙酰基硫代胆碱的K88值分别为12mm和3·3mm。 4.证明不含磷的化合物3-氯-7-羟基-4-甲基香豆素是涉及底物抑制位点的良好试剂。与该位点结合的解离常数为30μm。 5.为了解释实验结果,推导了具有两个结合位点的酶的理论方程式,两个结合位点可以结合底物和抑制剂。该方程式将酶的活性与进行性和非进行性抑制两者的底物和抑制剂的浓度相关联。这些方程式适用于乙酰胆碱酯酶与有机磷化合物,氨基甲酸酯等的反应,并且适用于具有两个结合位点的其他酶。

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