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金属离子对核酶活性的调控。

Controlling ribozyme activity by metal ions.

机构信息

Institute of Inorganic Chemistry, University of Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.

出版信息

Curr Opin Chem Biol. 2010 Apr;14(2):269-75. doi: 10.1016/j.cbpa.2009.11.024. Epub 2010 Jan 4.

Abstract

The observed rates of ribozyme cleavage reactions are strongly dependent on the nature of the metal ion present. Metal ions can thereby exhibit a stronger inhibiting or accelerating effect compared to Mg(2+), which is usually considered the natural cofactor. Alkaline, alkaline earth, transition, d(10), and other metal ions are applied either to gain a spectroscopic handle on the metal center, and/or to elucidate the catalytic mechanism. Here we shortly review some of the most recent publications on the influence of different metal ions on catalysis of the hammerhead, hepatitis delta virus, and group II intron ribozymes. Comparison of the observed cleavage rates of hammerhead ribozymes with the metal ion affinities of different ligands reveals that these rates correlate perfectly with the intrinsic phosphate affinities of the metal ions involved.

摘要

观察到的核酶切割反应速率强烈依赖于存在的金属离子的性质。与通常被认为是天然辅因子的 Mg(2+)相比,金属离子可以表现出更强的抑制或促进作用。碱性、碱土金属、过渡金属、d(10)和其他金属离子被应用于获得对金属中心的光谱学处理,和/或阐明催化机制。在这里,我们简要回顾了一些关于不同金属离子对锤头、丙型肝炎 delta 病毒和 II 组内含子核酶催化影响的最新出版物。将观察到的锤头核酶的切割速率与不同配体的金属离子亲和力进行比较表明,这些速率与所涉及的金属离子的内在磷酸根亲和力完全相关。

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