Department of Chemistry, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
J Am Chem Soc. 2017 Dec 6;139(48):17590-17596. doi: 10.1021/jacs.7b09929. Epub 2017 Nov 20.
The enantioselective total synthesis of (-)-hodgkinsine, (-)-calycosidine, (-)-hodgkinsine B, (-)-quadrigemine C, and (-)-psycholeine through a diazene-directed assembly of cyclotryptamine fragments is described. Our synthetic strategy enables multiple and directed assembly of intact cyclotryptamine subunits for convergent synthesis of highly complex bis- and tris-diazene intermediates. Photoextrusion of dinitrogen from these intermediates enables completely stereoselective formation of all C3a-C3a' and C3a-C7' carbon-carbon bonds and all the associated quaternary stereogenic centers. In a representative example, photoextrusion of three dinitrogen molecules from an advanced intermediate in a single-step led to completely controlled introduction of four quaternary stereogenic centers and guided the assembly of four cyclotryptamine monomers en route to (-)-quadrigemine C. The synthesis of these complex diazenes was made possible through a new methodology for synthesis of aryl-alkyl diazenes using electronically attenuated hydrazine-nucleophiles for a silver-promoted addition to C3a-bromocyclotryptamines. The application of Rh- and Ir-catalyzed C-H amination reactions in complex settings were used to gain rapid access to C3a- and C7-functionalized cyclotryptamine monomers, respectively, used for diazene synthesis. This convergent and modular assembly of intact cyclotryptamines offers the first solution to access these alkaloids through completely stereoselective union of monomers at challenging linkages and the associated quaternary stereocenters as illustrated in our synthesis of five members of the oligocyclotryptamine family of alkaloids.
通过环色胺片段的重氮导向组装,描述了(-)-hodgkinsine、(-)-calycosidine、(-)-hodgkinsine B、(-)-quadrigemine C 和(-)-psycholeine 的对映选择性全合成。我们的合成策略使完整的环色胺亚基能够进行多次和定向组装,用于高度复杂的双和三重氮中间体的收敛合成。这些中间体中氮气的光致脱除能够完全立体选择性地形成所有 C3a-C3a' 和 C3a-C7' 碳-碳键以及所有相关的季立体中心。在一个代表性的例子中,从单个步骤中的一个高级中间体中光致脱除三个氮气分子,导致完全控制地引入四个季立体中心,并引导四个环色胺单体的组装,从而得到(-)-quadrigemine C。这些复杂重氮的合成是通过使用电子衰减肼亲核试剂合成芳基-烷基重氮的新方法实现的,该方法用于银促进的 C3a-溴环色胺的加成。Rh 和 Ir 催化的 C-H 氨化反应在复杂环境中的应用分别用于快速获得 C3a-和 C7 官能化的环色胺单体,分别用于重氮合成。这种完整环色胺的收敛和模块化组装提供了通过单体在具有挑战性的键和相关季立体中心处完全立体选择性结合来获得这些生物碱的第一个解决方案,如我们对五环色胺家族生物碱的五个成员的合成本身所示。