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阳离子促进剂对乙酰胆碱酯酶甲磺酰化的加速作用是一种静电效应。

The acceleration of methanesulfonylation of acetylcholinesterase with cationic accelerators as an electrostatic effect.

作者信息

Pavlic M R, Zorko M

出版信息

Biochim Biophys Acta. 1978 Jun 9;524(2):340-8. doi: 10.1016/0005-2744(78)90170-5.

Abstract
  1. In order to check our hypothesis of the electrostatic nature of the acceleration of methanesulfonylation of acetylcholinesterase (acetylcholine hydrolase, EC 3.1.1.7) with cationic accelerators, equations were solved for methane-sulfonylation with two accelerators and the reaction was studied in the presence of some single accelerators, including the sodium cation, and in the presence of two acclerators simultaneously. 2. The second-order rate constants for methanesulfonylation of the complexes between the enzyme and accelerators decamethonium, tetraethylammonium and tetramethylammonium are 90, 88 and 17 1 - mol-1 - s-1, respectively, which corresponds to a maximal acceleration of 29, 28 and 5.5 times, respectively. The dissociation constants for the binding of these accelerators to the enzyme, obtained from our acceleration experiments, are 3.7 - 10(-6), 3.2 - 10(-4) and 1.4 - 10(-3) M, respectively. These values are in good agreement with the dissociation constants of these ligands as inhibitors of acetylcholinesterase. It is interesting to note that the sodium cation also accelerates the methane-sulfonylation up to around three times, the corresponding second-order rate constant and the dissociation constant being 10 1 - mol-1 - s-1 and 1.3 M, respectively. 3. All tested cations compete in the acceleration with each other; they seem to accelerate the reaction in the same way and from the same site, the catalytic anionic site. 4. These findings confirm the hypothesis of the electrostatic nature of acceleration.
摘要
  1. 为检验我们关于阳离子促进剂对乙酰胆碱酯酶(乙酰胆碱水解酶,EC 3.1.1.7)甲磺酰化加速作用的静电性质的假设,求解了两种促进剂存在时甲磺酰化的方程,并在一些单一促进剂(包括钠离子)存在以及两种促进剂同时存在的情况下研究了该反应。2. 酶与促进剂十烃季铵、四乙铵和四甲铵形成的复合物甲磺酰化的二级速率常数分别为90、88和17 l·mol⁻¹·s⁻¹,分别对应最大加速倍数为29、28和5.5倍。从我们的加速实验得到的这些促进剂与酶结合的解离常数分别为3.7×10⁻⁶、3.2×10⁻⁴和1.4×10⁻³ M。这些值与这些配体作为乙酰胆碱酯酶抑制剂的解离常数非常吻合。有趣的是,钠离子也能将甲磺酰化加速约3倍,相应的二级速率常数和解离常数分别为10 l·mol⁻¹·s⁻¹和1.3 M。3. 所有测试的阳离子在加速作用中相互竞争;它们似乎以相同的方式且从相同的位点(催化阴离子位点)加速反应。4. 这些发现证实了加速作用的静电性质这一假设。

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