Shirley Harry J, Koyioni Maria, Muncan Filip, Donohoe Timothy J
Department of Chemistry , University of Oxford , Chemistry Research Laboratory , Mansfield Road , Oxford , OX1 3TA , UK . Email:
Chem Sci. 2019 Mar 19;10(15):4334-4338. doi: 10.1039/c8sc05678a. eCollection 2019 Apr 21.
Pyruvic acid and other α-keto acids are frequently encountered as intermediates in metabolic pathways, yet their application in total synthesis has met with limited success. In this work, we present a bioinspired strategy that utilizes highly functionalized OBO (oxabicyclo[2.2.2]octyl) orthoester masked α-ketoacids as key intermediates for the construction of both type I and II lamellarin alkaloids. Lamellarin D was synthesized, a key 1,4-dicarbonyl, in 7 steps and 22% yield from pyruvic acid. Key steps in the synthesis involve one-pot double enolate functionalisation of followed by double annulation to form the target pyrrole/-vinyl pyrrole core and late-stage direct C-H arylation. Lastly, a novel OBO-masked β-cyano ketone, synthesized from , proved to be a valuable intermediate for construction of the type II lamellarin core HBr-mediated cyclisation. In this way, lamellarin Q was synthesized in 7 steps and 20% yield from pyruvic acid.
丙酮酸和其他α-酮酸在代谢途径中经常作为中间体出现,然而它们在全合成中的应用取得的成功有限。在这项工作中,我们提出了一种受生物启发的策略,该策略利用高度官能化的OBO(氧杂双环[2.2.2]辛基)原酸酯掩蔽的α-酮酸作为构建I型和II型片螺素生物碱的关键中间体。从丙酮酸出发,经过7步反应,以22%的产率合成了关键的1,4-二羰基化合物片螺素D。合成中的关键步骤包括一锅法对[具体反应物]进行双烯醇化物官能化,然后进行双环化以形成目标吡咯/乙烯基吡咯核心以及后期直接C-H芳基化。最后,由[具体反应物]合成的一种新型OBO掩蔽的β-氰基酮,被证明是通过HBr介导的环化构建II型片螺素核心的有价值中间体。通过这种方式,从丙酮酸出发,经过7步反应,以20%的产率合成了片螺素Q。