Cheng Cheng, Yu Yang, Gao Yuhong, Li Yi-Pan, Han Xiang-Lei, Luo Jisheng, Deng Li
Department of Chemistry, Zhejiang University, Hangzhou, 310027, China.
Key Laboratory of Precise Synthesis of Functional Molecules of Zhejiang Province, Department of Chemistry, School of Science and Research Center for Industries of the Future, Westlake University, 600 Dunyu Road, Hangzhou 310030, Zhejiang Province China.
J Am Chem Soc. 2024 Apr 3;146(13):9356-9364. doi: 10.1021/jacs.4c01671. Epub 2024 Mar 19.
Pharmaceuticals and biologically active natural products usually contain multiple stereocenters. The development of catalytic asymmetric reactions for the direct construction of complex motifs containing three nonadjacent stereocenters is a particularly important and formidable challenge. In this paper, we report an unprecedented method for the direct asymmetric construction of complex chiral amines with 1,3,5- or 1,3,4-stereocenters from readily available achiral and racemic starting materials. The reaction was made possible by the development of highly efficient chiral ammonium catalysts that serve three distinct functions: promoting efficient kinetic resolution by chiral recognition of racemic electrophiles, promoting asymmetric C-C bond forming reactions by recognizing enantiotropic faces of achiral nucleophiles, and mediating a highly stereoselective protonation of carbanions. Using these trifunctional catalysts, the reaction of imines and tulipane derivatives proceeded in a highly regio-, chemo-, and stereoselective manner to produce synthetically useful yields of complex chiral amines. We believe that trifunctional catalysis can be applied in a variety of asymmetric transformations for the streamlined asymmetric synthesis of complex chiral molecules with multiple stereocenters.
药物和生物活性天然产物通常含有多个立体中心。直接构建含有三个不相邻立体中心的复杂基序的催化不对称反应的发展是一项特别重要且艰巨的挑战。在本文中,我们报道了一种前所未有的方法,可从容易获得的非手性和外消旋起始原料直接不对称构建具有1,3,5 - 或1,3,4 - 立体中心的复杂手性胺。通过开发高效的手性铵催化剂使该反应成为可能,这些催化剂具有三种不同功能:通过对手性亲电试剂的手性识别促进高效动力学拆分,通过识别非手性亲核试剂的对映面促进不对称C - C键形成反应,以及介导碳负离子的高度立体选择性质子化。使用这些三功能催化剂,亚胺与郁金香烷衍生物的反应以高度区域选择性、化学选择性和立体选择性方式进行,以合成有用的产率生成复杂的手性胺。我们相信三功能催化可应用于各种不对称转化,用于高效不对称合成具有多个立体中心的复杂手性分子。