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束丝菌素2与乙酰胆碱酯酶的外周位点结合,并通过减缓酶酰化过程中涉及质子转移的步骤来抑制底物水解。

Fasciculin 2 binds to the peripheral site on acetylcholinesterase and inhibits substrate hydrolysis by slowing a step involving proton transfer during enzyme acylation.

作者信息

Eastman J, Wilson E J, Cerveñansky C, Rosenberry T L

机构信息

Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44120-4965, USA.

出版信息

J Biol Chem. 1995 Aug 25;270(34):19694-701. doi: 10.1074/jbc.270.34.19694.

Abstract

The acetylcholinesterase active site consists of a gorge 20 A deep that is lined with aromatic residues. A serine residue near the base of the gorge defines an acylation site where an acyl enzyme intermediate is formed during the hydrolysis of ester substrates. Residues near the entrance to the gorge comprise a peripheral site where inhibitors like propidium and fasciculin 2, a snake neurotoxin, bind and interfere with catalysis. We report here the association and dissociation rate constants for fasciculin 2 interaction with the human enzyme in the presence of ligands that bind to either the peripheral site or the acylation site. These kinetic data confirmed that propidium is strictly competitive with fasciculin 2 for binding to the peripheral site. In contrast, edrophonium, N-methylacridinium, and butyrylthiocholine bound to the acylation site and formed ternary complexes with the fasciculin 2-bound enzyme in which their affinities were reduced by about an order of magnitude from their affinities in the free enzyme. Steady state analysis of the inhibition of substrate hydrolysis by fasciculin 2 revealed that the ternary complexes had residual activity. For acetylthiocholine and phenyl acetate, saturating amounts of the toxin reduced the first-order rate constant kcat to 0.5-2% and the second-order rate constant kcat/Kapp to 0.2-2% of their values with the uninhibited enzyme. To address whether fasciculin 2 inhibition primarily involved steric blockade of the active site or conformational interaction with the acylation site, deuterium oxide isotope effects on these kinetic parameters were measured. The isotope effect on kcat/Kapp increased for both substrates when fasciculin 2 was bound to the enzyme, indicating that fasciculin 2 acts predominantly by altering the conformation of the active site in the ternary complex so that steps involving proton transfer during enzyme acylation are slowed.

摘要

乙酰胆碱酯酶的活性位点由一个20埃深的峡谷构成,该峡谷内衬有芳香族残基。峡谷底部附近的一个丝氨酸残基定义了一个酰化位点,在酯底物水解过程中,酰基酶中间体在此形成。峡谷入口附近的残基构成一个外周位点,像碘化丙啶和扁尾蛇毒素2这样的抑制剂在此结合并干扰催化作用。我们在此报告了在存在与外周位点或酰化位点结合的配体的情况下,扁尾蛇毒素2与人源酶相互作用的缔合和解离速率常数。这些动力学数据证实,碘化丙啶与扁尾蛇毒素2在结合外周位点方面存在严格的竞争性。相比之下,依酚氯铵、N - 甲基吖啶鎓和丁酰硫代胆碱与酰化位点结合,并与结合了扁尾蛇毒素2的酶形成三元复合物,其中它们的亲和力比在游离酶中的亲和力降低了约一个数量级。对扁尾蛇毒素2抑制底物水解的稳态分析表明,三元复合物具有残余活性。对于乙酰硫代胆碱和苯乙酸,饱和量的毒素将一级速率常数kcat降低至未受抑制酶的0.5 - 2%,将二级速率常数kcat/Kapp降低至0.2 - 2%。为了探究扁尾蛇毒素2的抑制作用主要是涉及活性位点的空间位阻还是与酰化位点的构象相互作用,我们测量了氧化氘对这些动力学参数的同位素效应。当扁尾蛇毒素2与酶结合时,两种底物的kcat/Kapp的同位素效应均增加,这表明扁尾蛇毒素2主要通过改变三元复合物中活性位点的构象起作用,从而使酶酰化过程中涉及质子转移的步骤减慢。

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