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1,3-氧硫杂环戊烷核苷类似物的合成策略。

Synthetic strategies toward 1,3-oxathiolane nucleoside analogues.

作者信息

Aher Umesh P, Srivastava Dhananjai, Singh Girij P, S Jayashree B

机构信息

Chemical Research Department, Lupin Research Park, Lupin Limited, 46A/47A, Village Nande, Taluka Mulshi, Pune-412115, Maharashtra, India.

Department of Pharmaceutical Chemistry, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal-576104, Karnataka, India.

出版信息

Beilstein J Org Chem. 2021 Nov 4;17:2680-2715. doi: 10.3762/bjoc.17.182. eCollection 2021.

Abstract

Sugar-modified nucleosides have gained considerable attention in the scientific community, either for use as molecular probes or as therapeutic agents. When the methylene group of the ribose ring is replaced with a sulfur atom at the 3'-position, these compounds have proved to be structurally potent nucleoside analogues, and the best example is BCH-189. The majority of methods traditionally involves the chemical modification of nucleoside structures. It requires the creation of artificial sugars, which is accompanied by coupling nucleobases via N-glycosylation. However, over the last three decades, efforts were made for the synthesis of 1,3-oxathiolane nucleosides by selective N-glycosylation of carbohydrate precursors at C-1, and this approach has emerged as a strong alternative that allows simple modification. This review aims to provide a comprehensive overview on the reported methods in the literature to access 1,3-oxathiolane nucleosides. The first focus of this review is the construction of the 1,3-oxathiolane ring from different starting materials. The second focus involves the coupling of the 1,3-oxathiolane ring with different nucleobases in a way that only one isomer is produced in a stereoselective manner via N-glycosylation. An emphasis has been placed on the C-N-glycosidic bond constructed during the formation of the nucleoside analogue. The third focus is on the separation of enantiomers of 1,3-oxathiolane nucleosides via resolution methods. The chemical as well as enzymatic procedures are reviewed and segregated in this review for effective synthesis of 1,3-oxathiolane nucleoside analogues.

摘要

糖修饰的核苷在科学界备受关注,既可用作分子探针,也可用作治疗剂。当核糖环的亚甲基在3'-位被硫原子取代时,这些化合物已被证明是结构上有效的核苷类似物,其中最好的例子是BCH-189。传统上,大多数方法涉及核苷结构的化学修饰。这需要制备人工糖,并通过N-糖基化连接核苷碱基。然而,在过去三十年中,人们致力于通过在C-1位对碳水化合物前体进行选择性N-糖基化来合成1,3-氧硫杂环戊烷核苷,这种方法已成为一种强大的替代方法,允许进行简单的修饰。本综述旨在全面概述文献中报道的制备1,3-氧硫杂环戊烷核苷的方法。本综述的第一个重点是由不同起始原料构建1,3-氧硫杂环戊烷环。第二个重点涉及将1,3-氧硫杂环戊烷环与不同的核苷碱基进行偶联,使得通过N-糖基化以立体选择性方式仅产生一种异构体。重点关注核苷类似物形成过程中构建的C-N-糖苷键。第三个重点是通过拆分方法分离1,3-氧硫杂环戊烷核苷的对映体。本综述对化学和酶促方法进行了综述和分类,以有效合成1,3-氧硫杂环戊烷核苷类似物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccc5/8576827/cac2c02cfe81/Beilstein_J_Org_Chem-17-2680-g002.jpg

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