Department of Chemistry, University of Turku, FI-20014 University of, Turku.
Chem Rec. 2022 Nov;22(11):e202200141. doi: 10.1002/tcr.202200141. Epub 2022 Jul 13.
The cleavage of RNA phosphodiester bonds by RNase A and hammerhead ribozyme at neutral pH fundamentally differs from the spontaneous reactions of these bonds under the same conditions. While the predominant spontaneous reaction is isomerization of the 3',5'-phosphodiester linkages to their 2',5'-counterparts, this reaction has never been reported to compete with the enzymatic cleavage reaction, not even as a minor side reaction. Comparative kinetic measurements with structurally modified di-nucleoside monophosphates and oligomeric phosphodiesters have played an important role in clarification of mechanistic details of the buffer-independent and buffer-catalyzed reactions. More recently, heavy atom isotope effects and theoretical calculations have refined the picture. The primary aim of all these studies has been to form a solid basis for mechanistic analyses of the action of more complicated catalytic machineries. In other words, to contribute to conception of a plausible unified picture of RNA cleavage by biocatalysts, such as RNAse A, hammerhead ribozyme and DNAzymes. In addition, structurally modified trinucleoside monophosphates as transition state models for Group I and II introns have clarified some features of the action of large ribozymes.
在中性 pH 条件下,RNA 磷酸二酯键的断裂由 RNase A 和锤头核酶催化,这与这些键在相同条件下的自发反应从根本上不同。虽然主要的自发反应是 3',5'-磷酸二酯键异构化为它们的 2',5'-对应物,但从未有报道称这种反应与酶促裂解反应竞争,即使是作为次要的副反应。结构修饰的二核苷酸单磷酸和寡聚磷酸二酯的比较动力学测量在阐明缓冲非依赖和缓冲催化反应的机制细节方面发挥了重要作用。最近,重原子同位素效应和理论计算进一步完善了这一图景。所有这些研究的主要目的都是为更复杂的催化机制的作用机制分析奠定坚实的基础。换句话说,为 RNA 切割的生物催化剂,如 RNase A、锤头核酶和 DNA 酶的合理统一的作用机制提供了一些依据。此外,作为 I 类和 II 类内含子的过渡态模型的结构修饰的三核苷酸单磷酸进一步阐明了大核酶的一些作用特征。