Hofer P, Fringeli U P
Biophys Struct Mech. 1981;8(1-2):45-59. doi: 10.1007/BF01047105.
Three mechanisms have been suggested to describe the inhibition of acetylcholinesterase (EC. 3.1.1.7) by an excess of acetylcholine. (i) Substrate inhibition occurs through the reaction of acetylcholine with acetylated enzyme. The deacetylation of this ternary complex is supposed to be completely inhibited. (ii) A ternary complex is formed as in (i). However, the deacetylation is not completely inhibited. (iii) A two-site-mechanism is discussed. Acetylcholine binds either to the active site or to the modifier site. Binding to the latter changes the activity of the active site. Steady state treatment was applied to (i)-(iii). A least squares fit led to catalytic parameters. It is demonstrated that mechanism (ii) is the most simple one which can describe satisfactorily the experimental data. Limits for a set rate constants are derived from the catalytic parameters. A numerical integration shows that the steady state approximation may be used even when the mechanisms are rather complex.
已有三种机制被提出来描述过量乙酰胆碱对乙酰胆碱酯酶(EC. 3.1.1.7)的抑制作用。(i)底物抑制是通过乙酰胆碱与乙酰化酶的反应发生的。这种三元复合物的去乙酰化被认为完全受到抑制。(ii)如(i)中所述形成三元复合物。然而,去乙酰化并未完全受到抑制。(iii)讨论了一种双位点机制。乙酰胆碱要么结合到活性位点,要么结合到修饰位点。与后者结合会改变活性位点的活性。对(i) - (iii)应用了稳态处理。最小二乘法拟合得出催化参数。结果表明机制(ii)是最能令人满意地描述实验数据的最简单机制。一组速率常数的极限值由催化参数推导得出。数值积分表明,即使机制相当复杂,也可使用稳态近似。