Singh Ravi P, Gout Delphine, Mao James X, Kroll Peter, Lovely Carl J
Department of Chemistry and Biochemistry, University of Texas at Arlington, Arlington, TX 76016, USA.
High Performance Research Computing (HPRC), Texas A&M University, College Station, TX 77843, USA.
Molecules. 2025 Mar 3;30(5):1143. doi: 10.3390/molecules30051143.
Spirocalcaridines A and B are among the most challenging members of the marine invertebrate-derived alkaloids. Approaches to the construction and elaboration of the highly compact spirocyclic core are described. The synthesis of tricyclic guanidine via tandem oxidative amination dearomatizing spirocyclization (TOADS) using hypervalent iodine set the stage for total synthesis via the migration of the C4/C8 double bond to the C4/C5 position, followed by oxidation. The undesired but not surprising propensity of the spirocyclic cyclohexadienone to undergo rearrangement to the phenol hindered the desired olefin migration. Furthermore, initial efforts to install the oxidation sequentially, first at C5 and then at C4 in the complete carbon skeleton, were fraught with unforeseen challenges and unusual outcomes. In addition, the scope and limitations of hypervalent iodine-mediated tandem oxidative dearomatizing spirocyclization on various substrates were explored. Urethanes and thiourethanes underwent spirocyclization with an excellent yield, whereas the reaction with allylic substrates and species lacking the -methoxy substituent did not proceed. Attempts to prepare other guanidine precursors are briefly discussed.
螺旋卡尔啶A和B是海洋无脊椎动物衍生生物碱中最具挑战性的成员之一。本文描述了构建和修饰高度紧凑的螺环核心的方法。使用高价碘通过串联氧化胺化脱芳构化螺环化反应(TOADS)合成三环胍,为通过将C4/C8双键迁移至C4/C5位置然后氧化进行全合成奠定了基础。螺环环己二烯酮发生重排生成苯酚的不期望但并不意外的倾向阻碍了所需的烯烃迁移。此外,最初尝试在完整碳骨架中依次在C5和C4处进行氧化时,充满了不可预见的挑战和异常结果。此外,还探索了高价碘介导的串联氧化脱芳构化螺环化反应在各种底物上的适用范围和局限性。氨基甲酸酯和硫代氨基甲酸酯进行螺环化反应的产率很高,而与烯丙基底物和缺乏甲氧基取代基的物种的反应则未进行。文中还简要讨论了制备其他胍前体的尝试。