Deardorff Donald R, Niman Scott W, Paulsen Mark I, Sookezian Anasheh, Whalen Meghan E, Finlayson Christopher J, Frivold Collrane, Brown Hilary C, Cannon Jeffrey S
Department of Chemistry, Occidental College, 1600 Campus Rd. M-5, Los Angeles, California 90041, United States.
ACS Omega. 2020 Jan 23;5(4):2005-2014. doi: 10.1021/acsomega.9b03990. eCollection 2020 Feb 4.
The enantioselective syntheses of (-)-coniine, DAB-1, and nectrisine have been developed, utilizing a complementary strategy of enzyme- and transition metal-catalyzed reactions. The initial stereocenter was set with >99% enantioselectivity via an enzyme-catalyzed hydrocyanation reaction. Substrate incompatibilities with the natural enzyme were overcome by tactical utilization of ruthenium-catalyzed olefin metathesis to functionalize an enzyme-derived ()-allylic fragment. The piperidine and pyrrolidine alkaloid natural products were obtained by a route that leveraged regio- and stereoselective palladium-catalyzed 1,3-substitutive reactions.
利用酶催化反应和过渡金属催化反应的互补策略,已开发出(-)-coniine、DAB-1和nectrisine的对映选择性合成方法。通过酶催化的氢氰化反应以>99%的对映选择性构建了初始立体中心。通过策略性地利用钌催化的烯烃复分解反应使酶衍生的()-烯丙基片段官能化,克服了底物与天然酶的不相容性。哌啶和吡咯烷生物碱天然产物是通过利用区域和立体选择性钯催化的1,3-取代反应的路线获得的。