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镁离子在锤头状核酶催化机制中的重要性:核酶活性与镁离子浓度之间的严格线性关系。

Importance of magnesium ions in the mechanism of catalysis by a hammerhead ribozyme: strictly linear relationship between the ribozyme activity and the concentration of magnesium ions.

作者信息

Inoue Atsushi, Takagi Yasuomi, Taira Kazunari

机构信息

Gene Function Research Center, National Institute of Advanced Industrial Science and Technology, 1-1-1 Higashi, Tsukuba Science City, Ibaraki 305-8562, Japan.

出版信息

Magnes Res. 2003 Sep;16(3):210-7.

Abstract

Analysis, based on kinetic solvent isotope effects, demonstrated that no proton transfer occurs in reactions catalyzed by a 32-mer hammerhead ribozyme (R32) in the presence of magnesium ions, whereas proton transfer occurs in reactions catalyzed by R32 in the presence of high concentrations of monovalent NH4+ ions without metal ions, demonstrating that the detailed mechanism of action of the hammerhead ribozyme might change depending on the environment. Importantly, when the concentration of magnesium ions was gradually increased from 1 mM to up to 800 mM, the R32 ribozyme activity increased linearly without reaching a plateau value. This phenomenon can be explained by a model in which a catalytic magnesium ion with a very low affinity (dissociation constant, Kd > 800 mM) exists and/or the predominant inactive complex converts to a minor active complex before the cleavage reaction.

摘要

基于动力学溶剂同位素效应的分析表明,在镁离子存在的情况下,由32聚体锤头状核酶(R32)催化的反应中不会发生质子转移,而在没有金属离子的高浓度单价NH4+离子存在的情况下,由R32催化的反应中会发生质子转移,这表明锤头状核酶的详细作用机制可能会因环境而异。重要的是,当镁离子浓度从1 mM逐渐增加到800 mM时,R32核酶活性呈线性增加,未达到平台值。这种现象可以用一个模型来解释,即存在一个亲和力非常低(解离常数,Kd > 800 mM)的催化镁离子,和/或在切割反应之前,主要的无活性复合物转化为次要的活性复合物。

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