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烯炔[4+2]环加成反应的开发及其在卷柏素 A 全合成中的应用。

Development of an Allenyne-Alkyne [4+2] Cycloaddition and its Application to Total Synthesis of Selaginpulvilin A.

机构信息

Department of Chemistry, University of Illinois Chicago, 845 West Taylor Street, 60607, Chicago, Illinois, USA.

College of Chemistry and Materials Engineering, Wenzhou University, 325035, Wenzhou, Zhejiang Province, P. R. China.

出版信息

Chemistry. 2022 Oct 7;28(56):e202202015. doi: 10.1002/chem.202202015. Epub 2022 Aug 3.

Abstract

A new [4+2] cycloaddition of allenyne-alkyne is developed. The reaction is believed to proceed with forming an α,3-dehydrotoluene intermediate. This species behaves as a σπ-diradical to react with a hydrogen atom donor, whereas it displays a zwitterionic reactivity toward weak nucleophiles. The efficiency of trapping α,3-dehydrotoluene depends not only on its substituents but also the trapping agents. Notable features of the reaction are the activating role of the extra alkyne of the 1,3-diyne that reacts with the allenyne moiety and the opposite mode of trapping with oxygen and nitrogen nucleophiles. Oxygen nucleophiles result in the oxygen-end incorporation at the benzylic position of the α,3-dehydrotoluene, whereas with amine nucleophiles the nitrogen-end is incorporated into the aromatic core. Relying on the allenyne-alkyne cycloaddition as an enabling strategy, a concise total synthesis of phosphodiesterase-4 inhibitory selaginpulvilin A is realized.

摘要

开发了一种新型的[4+2]环加成反应,涉及烯炔-炔烃的反应。据信,该反应通过形成α,3-去氢甲苯中间体进行。该中间体表现为σπ-双自由基,与氢原子供体反应,而对弱亲核试剂则表现出两性离子反应性。捕获α,3-去氢甲苯的效率不仅取决于其取代基,还取决于捕获剂。该反应的显著特点是 1,3-二炔中的额外炔烃与烯炔部分反应的激活作用,以及与氧和氮亲核试剂的相反捕获模式。氧亲核试剂导致α,3-去氢甲苯的苄基位置上的氧端结合,而与胺亲核试剂结合时,氮端则结合到芳核中。基于烯炔-炔烃环加成作为一种支持策略,实现了磷酸二酯酶-4 抑制剂塞拉金普利林 A 的简洁全合成。

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