Lynch-Colameta Tessa, Greta Sarah, Snyder Scott A
Department of Chemistry, University of Chicago 5735 S. Ellis Avenue Chicago IL 60637 USA
Chem Sci. 2021 Mar 16;12(17):6181-6187. doi: 10.1039/d1sc00882j.
Despite the array of advances that have been made in Pictet-Spengler chemistry, particularly as it relates to the synthesis of β-carboline derivatives of both natural and designed origin, the ability to use such reactions to generate aza-quaternary centers remains limited. Herein, we report a simple procedure that enables the synthesis of a variety of such products by harnessing the distinct reactivity profiles of ketonitrones as activated by commercially available acyl chlorides. Notably, the reaction process is mild, fast, and high-yielding (54-97%) for a diverse collection of substrates, including some typically challenging ones, such as indole cores with electron-deficient substituents. In addition, by deploying an acyl bromide in combination with a thiourea promoter, a catalytic, asymmetric version has been established, leading to good levels of enantioselectivity (up to 83% ee) for several ketonitrones. Finally, the resultant N-O bonds within the products can also be functionalized in several unique ways, affording valuable complementarity to existing Pictet-Spengler variants based on the use of imines.
尽管在 Pictet-Spengler 化学领域已经取得了一系列进展,特别是在天然和设计来源的 β-咔啉衍生物的合成方面,但利用此类反应生成氮杂季中心的能力仍然有限。在此,我们报告了一种简单的方法,通过利用市售酰氯活化的酮硝酮的不同反应活性,能够合成多种此类产物。值得注意的是,对于各种底物,包括一些通常具有挑战性的底物,如带有缺电子取代基的吲哚核心,反应过程温和、快速且产率高(54-97%)。此外,通过将酰溴与硫脲促进剂结合使用,建立了一种催化不对称版本,对几种酮硝酮实现了良好的对映选择性(高达 83% ee)。最后,产物中的 N-O 键也可以通过几种独特的方式进行官能化,为基于亚胺使用的现有 Pictet-Spengler 变体提供了有价值的互补性。