Berman H A, Decker M M
J Biol Chem. 1986 Aug 15;261(23):10646-52.
The mechanism of dealkylation ("aging") of branched-alkyl organophosphonyl conjugates of acetylcholinesterase and the consequence of this reaction on enzyme conformation were examined by employing kinetic, equilibrium, and spectroscopic techniques. Aging of cycloheptyl methylphosphono-acetylcholinesterase proceeded as a unimolecular reaction in which the enzyme became refractory to oxime reactivation and was accelerated with increases in temperature and decreases in pH and ionic strength of the medium. While aging occurred in a manner invariant with the nature of the salt in buffers containing Na+, K+, Rb+, Cs+, Cl-, CH3COO-, SO2-(4), and PO3-(4), the influence of ionic strength on aging was opposite to that predicted for a mechanism requiring charge separation during formation of the polar transition state. Examination of the equilibrium enzyme conformation with decidium, a fluorescent active center-selective ligand, revealed marked alterations in ligand association and a greater ionic strength dependence for binding after aging. The explanation for this behavior focuses on the high net negative surface charge of the enzyme and proposes that acetylcholinesterase topography is governed by the strength of electrostatic interactions between charged, contiguous, mobile protein regions within the subunit. As such, these studies reveal a reciprocal relationship between acetylcholinesterase topography, surface charge, and ionic strength of the medium.
采用动力学、平衡和光谱技术,研究了乙酰胆碱酯酶的支链烷基有机膦酰共轭物的脱烷基化(“老化”)机制以及该反应对酶构象的影响。环庚基甲基膦酰 - 乙酰胆碱酯酶的老化以单分子反应进行,在此过程中酶对肟再活化变得不敏感,并且随着温度升高、介质pH值降低和离子强度降低而加速。虽然老化的发生方式与含有Na +、K +、Rb +、Cs +、Cl -、CH3COO -、SO2-(4)和PO3-(4)的缓冲液中盐的性质无关,但离子强度对老化的影响与在极性过渡态形成过程中需要电荷分离的机制所预测的相反。用decidium(一种荧光活性中心选择性配体)检查平衡酶构象,发现老化后配体结合有明显变化,且结合对离子强度的依赖性更大。对此行为的解释集中在酶的高净负表面电荷上,并提出乙酰胆碱酯酶的拓扑结构受亚基内带电荷、相邻、可移动蛋白质区域之间静电相互作用强度的支配。因此,这些研究揭示了乙酰胆碱酯酶拓扑结构、表面电荷和介质离子强度之间的相互关系。