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The significance of low substrate concentration measurements for mechanistic interpretation in cholinesterases

机译:低底物浓度测量对胆碱酯酶机制解释的意义

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摘要

Cholinesterases do not follow the Michaelis-Menten kinetics. In the past, many reaction schemes were suggested to explain their complex interactions during the substrate turnover. Covalent catalysis was recognized very early and therefore, double intermediate traditional reaction scheme for the hydrolysis of good substrates at low concentrations was postulated. However, at intermediate and high substrate concentrations homotropic pseudocooperative effects take place in all cholinesterases, due to the nature of their buried active center. In this study, the significance and usefulness of experimental data obtained at low substrate concentrations, where only one substrate molecule accesses the active site at a time, are to be specified for the overall mechanistic evaluations. Indeed, different interpretations are expected when data are processed with equations derived from different reaction schemes. Consequently, the scheme with two substrate binding sites which comprises the structurally evidenced fully occupied active site as ultimate cause for substantially decreased cholinesterase activity at extremely high substrate concentrations is considered here. A special emphasis is put on butyrylcholinesterase, the enzyme with the largest active site among cholinesterases, where the pseudocooperative effects appear at much higher concentrations than in acetylcholinesterases.
机译:胆碱酯酶不遵循Michaelis-Menten动力学。过去,提出了许多反应方案来解释其在底物周转期间的复杂相互作用。共价催化很早就被认识到,因此,提出了在低浓度下水解良好底物的双重中间传统反应方案。然而,由于其掩埋的活性中心的性质,在中等和高底物浓度下,所有胆碱酯酶均发生同型假合作用。在这项研究中,应指定在低底物浓度下获得的实验数据的意义和实用性,在该底物浓度下,一次只有一个底物分子进入活性位点,用于整体机械评估。确实,当使用从不同反应方案得出的方程式处理数据时,期望得到不同的解释。因此,这里考虑具有两个底物结合位点的方案,其包括在结构上被证明完全占据的活性位点,作为在极高的底物浓度下胆碱酯酶活性显着降低的最终原因。特别强调的是丁酰胆碱酯酶,这是胆碱酯酶中具有最大活性位点的酶,其伪合作作用的浓度比乙酰胆碱酯酶高得多。

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