Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
J Am Chem Soc. 2022 Jul 6;144(26):11870-11877. doi: 10.1021/jacs.2c04743. Epub 2022 Jun 22.
Radical-mediated transformations have emerged as powerful methods for the synthesis of rare and unnatural branched, deoxygenated, and isomeric sugars. Here, we describe a radical-mediated axial-to-equatorial alcohol epimerization method to transform abundant glycans into rare isomers. The method delivers highly predictable and selective reaction outcomes that are complementary to other sugar isomerization methods. The synthetic utility of isomer interconversion is showcased through expedient glycan synthesis, including one-step glycodiversification. Mechanistic studies reveal that both site- and diastereoselectivities are achieved by highly selective H atom abstraction of equatorially disposed α-hydroxy C-H bonds.
自由基介导的转化已成为合成稀有和非天然支化、去氧和异构糖的有力方法。在这里,我们描述了一种自由基介导的轴向到赤道醇差向异构化方法,可将丰富的聚糖转化为罕见的异构体。该方法提供了高度可预测和选择性的反应结果,与其他糖异构体方法互补。异构体相互转化的合成实用性通过快速的聚糖合成得到展示,包括一步糖多样化。机理研究表明,通过对赤道α-羟基 C-H 键的高度选择性 H 原子提取,实现了位点和非对映选择性。