Chiou Wen-Hua, Mizutani Nobihiro, Ojima Iwao
Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400, USA.
J Org Chem. 2007 Mar 16;72(6):1871-82. doi: 10.1021/jo061692y.
A highly efficient method for the synthesis of 1-azabicyclo[x.y.0]alkane amino acid derivatives and their congeners by means of extremely regioselective cyclohydrocarbonylation (CHC) is described. The CHC reactions are catalyzed by Rh-BIPHEPHOS complex under mild conditions. These CHC reaction processes involve (i) an extremely linear-selective hydroformylation of the terminal alkene moiety of a dehydrodipeptide substrate, (ii) intramolecular condensation to form cyclic N-acyliminium key intermediate, and (iii) the second cyclization through intramolecular nucleophilic addition of a heteoatom nucleophile to the cyclic N-acyliminium moiety to afford the corresponding 1-azabicyclo[x.y.0] system. This consecutive double cyclization process proceeds with extremely high diastereoselectivity in most cases. This method has been successfully applied to the syntheses of 1-azabicyclo[4.4.0], -[5.4.0], and -[4.3.0] systems. The mechanisms of the reactions and the rationale for the observed extremely high diastereoselectivity are presented. This Rh-catalyzed CHC process would serve as a highly efficient and versatile method for the syntheses of a variety of conformationally restrained dipeptides, peptidomimetics, alkaloids, and other biologically active natural or unnatural products.
描述了一种通过极其区域选择性的环氢甲酰化(CHC)合成1-氮杂双环[x.y.0]烷氨基酸衍生物及其类似物的高效方法。CHC反应在温和条件下由Rh-BIPHEPHOS配合物催化。这些CHC反应过程包括:(i)脱氢二肽底物末端烯烃部分的极其线性选择性氢甲酰化;(ii)分子内缩合形成环状N-酰基亚胺鎓关键中间体;(iii)通过杂原子亲核试剂对环状N-酰基亚胺鎓部分进行分子内亲核加成进行第二次环化,得到相应的1-氮杂双环[x.y.0]体系。在大多数情况下,这种连续的双环化过程以极高的非对映选择性进行。该方法已成功应用于1-氮杂双环[4.4.0]、-[5.4.0]和-[4.3.0]体系的合成。文中介绍了反应机理以及观察到的极高非对映选择性的原理。这种Rh催化的CHC过程将成为合成各种构象受限二肽、肽模拟物、生物碱以及其他生物活性天然或非天然产物的高效且通用的方法。