Kan Jian, Chen Zhangpei, Qiu Zihang, Lv Leiyang, Li Chenchen, Li Chao-Jun
Department of Chemistry and FRQNT Center for Green Chemistry and Catalysis, McGill University, 801 Sherbrooke Street West, Montreal, Quebec H3A 0B8, Canada.
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, P. R. China.
Sci Adv. 2022 Mar 11;8(10):eabm6840. doi: 10.1126/sciadv.abm6840. Epub 2022 Mar 9.
Mother Nature has its own arts to build a vast number of carbohydrates; however, there is still a lack of tools for selective functionalization of native carbohydrates through C─C bond formation. Such a long-standing challenge for the synthetic community lies into the intrinsic problems related to the innate properties of carbohydrates, e.g., the ease to oligomerization or polymerization, the difficulty of chemoselectivity control in the presence of multiple hydroxyl groups, the great challenge to retain the multiple chiral centers during the transformation, etc. Here, by applying an umpolung strategy of carbohydrate carbonyls, we report a direct deoxygenative allylation and olefination of carbohydrates to tackle the abovementioned issues. The reaction is compatible with a wide range of natural carbohydrates, providing a direct synthetic method to use carbohydrates as multiple C-centered chiral synthons to achieve C─C bond cross-coupling reactions. Furthermore, the synthetic applicability is demonstrated by late-stage modifications of natural products and pharmaceutical derivatives.
大自然有其独特的方式来构建大量的碳水化合物;然而,通过碳-碳键形成对天然碳水化合物进行选择性官能化的工具仍然匮乏。合成领域长期面临的这一挑战源于与碳水化合物固有特性相关的内在问题,例如易于低聚或聚合、在多个羟基存在下难以控制化学选择性、在转化过程中保留多个手性中心面临的巨大挑战等等。在此,通过应用碳水化合物羰基的极性翻转策略,我们报道了一种碳水化合物的直接脱氧烯丙基化和烯化反应,以解决上述问题。该反应与多种天然碳水化合物兼容,提供了一种直接的合成方法,可将碳水化合物用作多个以碳为中心的手性合成子来实现碳-碳键交叉偶联反应。此外,天然产物和药物衍生物的后期修饰证明了该合成方法的适用性。