Chemnitius J M, Chemnitius G C, Haselmeyer K H, Kreuzer H, Zech R
Department of Cardiology, Georg-August-Universität, Göttingen, Germany.
Biochem Pharmacol. 1992 Feb 18;43(4):823-9. doi: 10.1016/0006-2952(92)90249-i.
Cholinesterases of porcine left ventricular heart muscle were characterized with respect to substrate specificity and inhibition kinetics with organophosphorus inhibitors N,N'-di-isopropyl-phosphorodiamidic fluoride (Mipafox), di-isopropylphosphorofluoridate (DFP), and diethyl p-nitro-phenyl phosphate (Paraoxon). Total myocardial choline ester hydrolysing activity (234 nmol/min/g wet wt with 1.5 mM acetylthiocholine, ASCh; 216 nmol/min/g with 30 mM butyrylthiocholine, BSCh) was irreversibly and covalently inhibited by a wide range of inhibitor concentrations and, using weighted least-squares non-linear curve fitting, residual activities as determined with four different substrates in each case were fitted to a sum of up to four exponential functions. Quality of curve fitting as assessed by the sum of squares reached its optimum on the basis of a three component model, thus, indicating the presence of three different enzymes taking part in choline ester hydrolysis. Final classification of heart muscle cholinesterases was obtained according to both substrate hydrolysis patterns with ASCh, BSCh, acetyl-beta-methylthiocholine and propionylthiocholine, and second-order rate constants for the reaction with organophosphorus inhibitors Mipafox, DFP, and Paraoxon. One choline ester-hydrolysing enzyme was identified as acetylcholinesterase (EC 3.1.1.7), and one as butyrylcholinesterase (EC 3.1.1.8). The third enzyme with relative resistance to organophosphorus inhibition was classified as atypical cholinesterase.
针对猪左心室心肌胆碱酯酶,研究了其底物特异性以及与有机磷抑制剂N,N'-二异丙基磷二酰胺氟化物(米帕明)、二异丙基氟磷酸酯(DFP)和对氧磷的抑制动力学。心肌胆碱酯水解总活性(1.5 mM乙酰硫代胆碱,ASCh时为234 nmol/min/g湿重;30 mM丁酰硫代胆碱,BSCh时为216 nmol/min/g)在广泛的抑制剂浓度下受到不可逆和共价抑制,并且使用加权最小二乘非线性曲线拟合,每种情况下用四种不同底物测定的残余活性拟合为多达四个指数函数的总和。通过平方和评估的曲线拟合质量在三组分模型的基础上达到最佳,因此表明存在三种不同的酶参与胆碱酯水解。根据ASCh、BSCh、乙酰-β-甲基硫代胆碱和丙酰硫代胆碱的底物水解模式以及与有机磷抑制剂米帕明、DFP和对氧磷反应的二级速率常数,对心肌胆碱酯酶进行了最终分类。一种胆碱酯水解酶被鉴定为乙酰胆碱酯酶(EC 3.1.1.7),另一种为丁酰胆碱酯酶(EC 3.1.1.8)。对有机磷抑制具有相对抗性的第三种酶被归类为非典型胆碱酯酶。