Hainke Sven, Arndt Sebastian, Seitz Oliver
Humboldt-Universität zu Berlin, Institut für Chemie, Brook-Taylor Str. 2, D-12489, Berlin, Germany.
Org Biomol Chem. 2005 Dec 7;3(23):4233-8. doi: 10.1039/b509846g. Epub 2005 Oct 20.
A fast and simplified synthesis of 1',2'-dideoxy-1'-pyrenyl-riboside and several other C-nucleosides is shown. Shelf-stable 1-O-methyl-3,5-di-O-toluoyl-2-deoxyribose is demonstrated to serve as a versatile glycosyl donor in Lewis acid promoted Friedel-Crafts alkylations of unsubstituted pyrene and other inexpensive arenes such as fluorene and methylnaphthalene. The reaction conditions favour the formation of beta-configurated C-nucleosides which renders additional epimerisation steps unnecessary. As a result, protected beta-aryl-C-nucleosides are available directly from non-substituted arenes in three steps overall.
展示了1',2'-二脱氧-1'-芘基核糖苷及其他几种C-核苷的快速和简化合成方法。已证明货架稳定的1-O-甲基-3,5-二-O-甲苯甲酰基-2-脱氧核糖在路易斯酸促进的未取代芘及其他廉价芳烃(如芴和甲基萘)的傅克烷基化反应中可作为通用的糖基供体。反应条件有利于β构型C-核苷的形成,无需额外的差向异构化步骤。因此,受保护的β-芳基-C-核苷可通过三步反应直接从未取代的芳烃制备得到。