Maier Martin S, Shemet Andrej, Trauner Dirk
Department of Chemistry, Ludwig Maximilian University of Munich 81377 Munich Germany.
Department of Chemistry, New York University New York New York 10003 USA
Chem Sci. 2022 Jul 5;13(28):8395-8400. doi: 10.1039/d2sc01366e. eCollection 2022 Jul 20.
The 2'-phosphodiesterase inhibitor A-74528, which combines an intriguing biosynthesis with unusual biological activity, is one of the most complex type II polyketides. As a synthetic target, it represents a significant challenge due to its size but also due to a unique carbon skeleton that features a hexacarbocyclic core with an appended pyrone. Here we report our efforts toward the synthesis of A-74528, which culminated in the construction of the full carbon skeleton and the correct installation of all but one stereocenter. Our strategy employs a molybdenum-catalyzed branched allylation to establish the central quaternary carbon and relies on establishing the remaining stereocenters in a substrate-controlled manner. Carbocycles were established using a spiro epoxide annulation, a 1,3-dipolar cycloaddition, followed by an aldol condensation, and a gold-catalyzed hydroarylation. The pyrone was appended to an aldehyde branching off the quaternary stereocenter by a one-carbon homologation and Mukaiyama aldol addition.
2'-磷酸二酯酶抑制剂A-74528具有引人入胜的生物合成过程和独特的生物活性,是最复杂的II型聚酮化合物之一。作为一个合成目标,它不仅因其分子大小,还因其独特的碳骨架而极具挑战性,该碳骨架以一个带有附加吡喃酮的六碳环为核心。在此,我们报告了我们合成A-74528的工作,最终完成了全碳骨架的构建,并正确安装了除一个立体中心外的所有立体中心。我们的策略采用钼催化的支链烯丙基化反应来构建中心季碳,并依靠底物控制的方式来构建其余的立体中心。通过螺环环氧化合物环化、1,3-偶极环加成反应,随后进行羟醛缩合反应以及金催化的氢芳基化反应来构建碳环。通过一步碳同系化反应和向山羟醛加成反应,将吡喃酮连接到从季立体中心分支出来的醛上。