| Literature DB >> 28252292 |
Fang-Xin Wang1, Ji-Yuan Du1, Hui-Bin Wang1, Peng-Lin Zhang1, Guo-Biao Zhang1, Ke-Yin Yu1, Xiang-Zhi Zhang1, Xian-Tao An1, Ye-Xing Cao1, Chun-An Fan1,2.
Abstract
The first total syntheses of Lycopodium alkaloids palhinine A, palhinine D, and their C3-epimers have been divergently achieved through the use of a connective transform to access a pivotal hexacyclic isoxazolidine precursor. A microwave-assisted regio- and stereoselective intramolecular nitrone-alkene cycloaddition was tactically orchestrated as a key step to install the crucial 10-oxa-1-azabicyclo[5.2.1]decane moiety embedded in the conformationally rigid isotwistane framework, demonstrating the feasibility of constructing the highly strained medium-sized ring by introduction of an oxygen bridging linker to relieve the transannular strain in the polycyclic scaffold. Subsequent N-O bond cleavage provided the synthetically challenging nine-membered azonane ring system bearing the requisite C3 hydroxyl group. Late-stage transformations featuring a chemo- and stereoselective reduction of the pentacyclic β-diketone secured the availability of our target molecules.Entities:
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Year: 2017 PMID: 28252292 DOI: 10.1021/jacs.6b13401
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419