Pastor Arnaud, Prinsloo Rohen, Burford Kristen N, Macdonald Andrew R, Parvez Masood, Gendy Chris, Back Thomas G
Department of Chemistry, University of Calgary, 2500 University Drive N.W., Calgary, Alberta, Canada T2N 1N4.
J Org Chem. 2023 Oct 6;88(19):13813-13824. doi: 10.1021/acs.joc.3c01467. Epub 2023 Sep 18.
A new approach to the marine alkaloid cylindricine C afforded its previously unreported (±)-2,13-di- stereoisomer as the major product along with a minor amount of the racemic parent alkaloid. Key steps included a stereoselective dianion alkylation of a monoester of 1,2-cyclohexanedicarboxylic acid and an annulation based on the tandem conjugate addition of a primary amine to an acetylenic sulfone, followed by intramolecular acylation of the resulting sulfone-stabilized carbanion. The -azadecalin moiety thus formed, comprising the cyclohexane A-ring and enaminone B-ring of the products, was further elaborated by the selenenyl chloride-induced cyclofunctionalization of a pendant butenyl substituent with the enaminone moiety, followed by a seleno-Pummerer reaction. Desulfonylation and enaminone reduction afforded the final products. Molecular modeling and X-ray crystallography provided further insight into these processes.
一种合成海洋生物碱圆柱海绵素C的新方法,以其之前未报道的(±)-2,13-二立体异构体作为主要产物,同时还生成少量外消旋母体生物碱。关键步骤包括1,2-环己烷二甲酸单酯的立体选择性双负离子烷基化反应,以及基于伯胺与炔基砜的串联共轭加成反应的环化反应,随后是所得砜稳定碳负离子的分子内酰化反应。由此形成的氮杂十氢化萘部分,包括产物的环己烷A环和烯胺酮B环,通过硒酰氯诱导的侧链丁烯基取代基与烯胺酮部分的环官能化反应进一步修饰,随后进行硒-Pummerer反应。脱砜基和烯胺酮还原反应得到最终产物。分子建模和X射线晶体学为这些过程提供了进一步的见解。