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Chemical models for ribozyme action

机译:核酶作用的化学模型

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Mechanistic studies of the action of catalytic ribonucleic acids, ribozymes, are highly challenging, because even a slight structural change can dramatically affect the chain folding. This, in turn, alters the binding properties of the catalytic core, making identification of the real origin of the observed influence on rate difficult. Unambiguous structure-reactivity correlations based on studies with structurally simplified chemical models may help to distinguish between alternative mechanistic interpretations. The results of such model studies are reviewed. The topics include intramolecular cleavage of RNA phosphodiester bonds by solvent-derived species, general acids/bases and metal ions, effect of molecular environment on their hydrolytic stability and trinucleoside monophosphates as models for large ribozymes.
机译:催化核糖核酸(核酶)作用的机理研究极具挑战性,因为即使微小的结构变化也可以显着影响链折叠。反过来,这改变了催化核的结合特性,使得难以确定所观察到的影响速率的真正原因。基于具有结构简化的化学模型的研究的明确的结构-反应性相关性可能有助于区分替代性的机理解释。审查了这些模型研究的结果。主题包括溶剂衍生的物种,通用酸/碱和金属离子的分子内RNA磷酸二酯键的分子内切割,分子环境对其水解稳定性的影响以及三核苷单磷酸酯作为大型核酶的模型。

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