Limbach Michael
Laboratorium für Organische Chemie, Department Chemie und Angewandte Biowissenschaften, Eidgenössische Technische Hochschule, ETH Hönggerberg, HCI, Wolfgang-Pauli-Strasse 10, CH-8093 Zürich.
Chem Biodivers. 2005 Jul;2(7):825-36. doi: 10.1002/cbdv.200590061.
Asymmetric catalysis with the simple amino acid proline (so called 'enamine catalysis') arrested big attention in the last few years since the re-discovery of the Hajos-Parrish-Eder-Sauer-Wiechert reaction. After basic mechanistic studies, probing scope and limitations of the catalyst and the corresponding reactions, this concept has now emerged to a state where it is applied to the assembly of up to five stereogenic centers of carbohydrates, not really 'at one stroke', but in only two simple synthetic operations. Beyond, it is not only possible to build up complicated natural products elegantly, but also to address selectively the similar functional groups of carbohydrates by small peptidic catalysts. This short review covers the recent developments of organocatalysis in both fields, with special emphasis on the asymmetric assembly and selective derivatization of carbohydrates.
自从哈约什-帕里什-埃德尔-绍尔-维歇特反应被重新发现以来,使用简单氨基酸脯氨酸的不对称催化(即所谓的“烯胺催化”)在过去几年中引起了极大关注。在进行了基础机理研究、探究了催化剂及相应反应的适用范围和局限性之后,这一概念如今已发展到可应用于碳水化合物多达五个手性中心的构建,虽并非真正“一蹴而就”,但仅通过两个简单的合成操作即可实现。此外,不仅能够巧妙地构建复杂的天然产物,还能用小型肽催化剂选择性地处理碳水化合物的相似官能团。本简短综述涵盖了这两个领域有机催化的最新进展,特别着重于碳水化合物的不对称构建和选择性衍生化。