Burchiellaro Katherine, Mieczkowski Adam
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawinskiego 5a, 02-106, Warsaw, Poland.
Faculty of Chemistry, University of Warsaw, Pasteura 1, 02-093, Warsaw, Poland.
Mol Divers. 2024 Oct;28(5):3427-3443. doi: 10.1007/s11030-023-10740-5. Epub 2023 Oct 27.
Cyclonucleosides are a group of nucleoside derivatives which, in addition to the classical N-glycosidic bond, have an additional covalent bond (linker, bridge) in their structure, which connects the heterocyclic base and sugar ring. The majority of them have been discovered in the laboratory; however, few such compounds have also been found in natural sources, including metabolites of sponges or radical damage occurring in nucleic acids. Due to their structural properties-rigid, fixed conformation-they have found wide applications in medicinal chemistry and biochemistry as biocides as well as enzyme inhibitors and molecular probes. They have also found use as convenient synthetic tools for the preparation of new nucleoside analogues, enabling structural modifications of both the sugar ring and heterocyclic base. This review summarizes the recent progress in the synthesis of various purine and pyrimidine cyclonucleosides using diverse chemical approaches based on radical, "click", metal-mediated, and other types of reactions. It also presents recent reports concerning possible applications in medicinal chemistry, as well as their applications as valuable key intermediates in the synthesis of sugar- and base-modified nucleoside analogues and heterocyclic compounds.
环核苷是一类核苷衍生物,除了经典的N-糖苷键外,其结构中还有一个额外的共价键(连接基、桥),该共价键连接杂环碱基和糖环。它们中的大多数是在实验室中发现的;然而,在天然来源中也发现了少数此类化合物,包括海绵的代谢产物或核酸中发生的自由基损伤。由于其结构特性——刚性、固定构象——它们在药物化学和生物化学中作为杀生物剂以及酶抑制剂和分子探针得到了广泛应用。它们还被用作制备新核苷类似物的便捷合成工具,能够对糖环和杂环碱基进行结构修饰。本综述总结了基于自由基、“点击”、金属介导和其他类型反应的各种化学方法在合成各种嘌呤和嘧啶环核苷方面的最新进展。它还介绍了有关在药物化学中可能应用的最新报道,以及它们作为糖基和碱基修饰核苷类似物及杂环化合物合成中有价值的关键中间体的应用。