Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, United States.
J Am Chem Soc. 2021 Mar 17;143(10):4043-4054. doi: 10.1021/jacs.1c01100. Epub 2021 Mar 8.
Solid-state photodecarbonylation is an attractive but underutilized methodology to forge hindered C-C bonds in complex molecules. This study discloses the use of this reaction to assemble the vicinal quaternary stereocenter motif present in bis(cyclotryptamine) alkaloids. Our strategy was enabled by experimental and computational investigations of the role of substrate conformation on the success or failure of the solid-state photodecarbonylation reaction. This informed a crystal engineering strategy to optimize the key step of the total synthesis. Ultimately, this endeavor culminated in the successful synthesis of the bis(cyclotryptamine) alkaloid "psychotriadine," which features the elusive piperidinoindoline framework. Psychotriadine, a previously unknown compound, was identified in the extracts of the flower , suggesting it is a naturally occurring metabolite.
固态光脱羰是一种很有吸引力但未被充分利用的方法,可以在复杂分子中构建受阻的 C-C 键。本研究揭示了该反应在组装双环色胺生物碱中存在的偕季碳立体中心模体的用途。我们的策略是通过对底物构象在固态光脱羰反应成败中的作用的实验和计算研究来实现的。这为优化总合成的关键步骤提供了晶体工程策略。最终,这项努力成功合成了双环色胺生物碱“psychotriadine”,它具有难以捉摸的哌啶基吲哚啉骨架。Psychotriadine 是一种以前未知的化合物,在花的提取物中被鉴定出来,这表明它是一种天然存在的代谢物。