Yang Feng, Oladokun Amira, Porco John A
Department of Chemistry and Center for Molecular Discovery (BU-CMD), Boston University, 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States.
J Org Chem. 2024 Sep 6;89(17):11891-11908. doi: 10.1021/acs.joc.4c01116. Epub 2024 Aug 12.
DMOA-derived spiromeroterpenoids are a group of natural products with complex structures and varied biological activities. Recently, we reported the first enantioselective total synthesis of five spiromeroterpenoids based on a fragment coupling strategy. This full account describes details of a strategy evolution that culminated in successful syntheses of the targeted natural products. Although our alkylative dearomatization methodology was unable to deliver the desired spirocyclic products in our first-generation approach, our second-generation approach based on oxidative [3 + 2] cycloaddition produced the asnovolin H core along with several complex dimers. Challenges with the dearomatization approach finally led us to develop a third generation, non-dearomatization approach based on a fragment coupling strategy to construct the conserved, sterically hindered -neopentyl linkage of the spiromeroterpenoids through 1,2-addition. To enable scalable access of the natural products, a refined, multigram-scale synthesis of the coupling partners was developed. A series of stereoselective transformations were developed through judicious choice of reagents and conditions. Finally, modular spirocycle construction logic was demonstrated through the synthesis of a small library of spiromeroterpenoid analogues.
源自二甲基辛二酸(DMOA)的螺环萜类化合物是一类结构复杂且具有多种生物活性的天然产物。最近,我们报道了基于片段偶联策略首次对五种螺环萜类化合物进行对映选择性全合成。本全面报告描述了一种策略演变的细节,该演变最终成功合成了目标天然产物。尽管我们的烷基化去芳构化方法在第一代方法中无法得到所需的螺环产物,但我们基于氧化[3 + 2]环加成的第二代方法生成了阿斯诺沃林H核心以及几种复杂的二聚体。去芳构化方法面临的挑战最终促使我们开发了第三代非去芳构化方法,该方法基于片段偶联策略,通过1,2-加成构建螺环萜类化合物保守的、空间位阻较大的新戊基连接。为了能够规模化获取天然产物,我们开发了一种经过改进的、多克规模的偶联伙伴合成方法。通过明智地选择试剂和条件,开发了一系列立体选择性转化反应。最后,通过合成一个小型螺环萜类类似物库展示了模块化螺环构建逻辑。