Maizel' E B, Rozengart E V, Khakimov Iu P, Abduvakhabov A A, Aslanov Kh A
Biokhimiia. 1978 Jul;43(7):1150-6.
25 iodomethylates of acetic, propionic, butyric, isobutyric and valeric esters of N-(beta-hydroxyethyl)-derivatives of ephedrine (I) pseudo-ephedrine (II), salsoline (III), salsolidine (IV) and cytisine (V) are studied as substrates and inhibitors of acetylcholine esterase (EC 3.1.1.8) from human erythrocytes and butyrylcholine esterase (EC 3.1.1.8) from horse serum. Butyrylcholine esterase found to increase the hydrolysis rate of all the alkaloid esters studied with the increase of acyl radical either to valerates (for ephedrine and pseudo-ephedrine derivatives), or to butyrates (for the rest alkaloids) and then it did not considerably change under further elongation of carbon chain up to valerate. Isobutyrates were observed to be similar to propionates in their hydrolysis rates. Acetylcholine esterase hydrolyzed acetates with the highest rate, while butyrates of ephedrine and pseudoephedrine derivatives were hydrolyzed by the enzyme 2,5-3-fold as slow as acetates. The rate of choline esterase hydrolysis decreased in the row: ephedrine--salsoline--cytisine with the volumetric increase of the cationic group. The decrease was almost 10-fold for butyrylcholine esterase, while a transition from "poor" substrates to reversible inhibitors was observed for acetylcholine esterase (3 of 5 cytisine esters were reversible inhibitors of the enzyme). The data obtained are compared with literary data on other cyclic choline esterase substrates; they are discussed from the viewpoint of unproductive binding hypothesis and on the basis of the structure of active centres of acetyl- and butyrylcholine esterases.
研究了麻黄碱(I)、伪麻黄碱(II)、去甲猪毛菜碱(III)、去甲猪毛菜定(IV)和金雀花碱(V)的N - (β - 羟乙基)衍生物的乙酸、丙酸、丁酸、异丁酸和戊酸酯的25种碘甲基化产物作为人红细胞乙酰胆碱酯酶(EC 3.1.1.8)和马血清丁酰胆碱酯酶(EC 3.1.1.8)的底物和抑制剂的情况。发现丁酰胆碱酯酶随着酰基从乙酸根增加到戊酸根(对于麻黄碱和伪麻黄碱衍生物)或丁酸根(对于其余生物碱),所研究的所有生物碱酯的水解速率增加,然后在碳链进一步延长至戊酸根时水解速率没有显著变化。观察到异丁酸酯的水解速率与丙酸酯相似。乙酰胆碱酯酶水解乙酸酯的速率最高,而麻黄碱和伪麻黄碱衍生物的丁酸酯被该酶水解的速率比乙酸酯慢2.5 - 3倍。随着阳离子基团体积的增加,胆碱酯酶的水解速率在麻黄碱 - 去甲猪毛菜碱 - 金雀花碱序列中降低。丁酰胆碱酯酶的降低几乎是10倍,而对于乙酰胆碱酯酶则观察到从“不良”底物向可逆抑制剂的转变(5种金雀花碱酯中有3种是该酶的可逆抑制剂)。将所获得的数据与关于其他环状胆碱酯酶底物的文献数据进行比较;从非生产性结合假说的角度并基于乙酰胆碱酯酶和丁酰胆碱酯酶活性中心的结构对这些数据进行了讨论。