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首页> 外文期刊>Beilstein journal of organic chemistry. >Phosphodiester models for cleavage of nucleic acids
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Phosphodiester models for cleavage of nucleic acids

机译:用于切割核酸的磷酸二酯模型

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Nucleic acids that store and transfer biological information are polymeric diesters of phosphoric acid. Cleavage of the phosphodiester linkages by protein enzymes, nucleases, is one of the underlying biological processes. The remarkable catalytic efficiency of nucleases, together with the ability of ribonucleic acids to serve sometimes as nucleases, has made the cleavage of phosphodiesters a subject of intensive mechanistic studies. In addition to studies of nucleases by pH-rate dependency, X-ray crystallography, amino aciducleotide substitution and computational approaches, experimental and theoretical studies with small molecular model compounds still play a role. With small molecules, the importance of various elementary processes, such as proton transfer and metal ion binding, for stabilization of transition states may be elucidated and systematic variation of the basicity of the entering or departing nucleophile enables determination of the position of the transition state on the reaction coordinate. Such data is important on analyzing enzyme mechanisms based on synergistic participation of several catalytic entities. Many nucleases are metalloenzymes and small molecular models offer an excellent tool to construct models for their catalytic centers. The present review tends to be an up to date summary of what has been achieved by mechanistic studies with small molecular phosphodiesters.
机译:存储和传递生物学信息的核酸是磷酸的聚合二酯。蛋白质酶,核酸酶对磷酸二酯键的切割是潜在的生物学过程之一。核酸酶的显着催化效率,加上核糖核酸有时充当核酸酶的能力,使磷酸二酯的裂解成为深入的机理研究的主题。除了通过pH速率依赖性研究核酸酶,X射线晶体学,氨基酸/核苷酸取代和计算方法外,利用小分子模型化合物进行的实验和理论研究仍然发挥着作用。对于小分子,可以阐明各种基本过程(如质子转移和金属离子结合)对于稳定过渡态的重要性,并且系统性地改变进入或离开亲核试剂的碱度可以确定过渡态的位置。反应坐标。这样的数据对于基于几种催化实体的协同参与分析酶的机理很重要。许多核酸酶是金属酶,而小分子模型为构建其催化中心的模型提供了极好的工具。本综述趋向于对小分子磷酸二酯通过机械研究获得的最新进展。

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