4.8 Article

Total Synthesis of Lycopodium Alkaloids Palhinine A and Palhinine D

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 139, 期 12, 页码 4282-4285

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jacs.6b13401

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资金

  1. NSFC [21572083, 21322201, 21290180]
  2. FRFCU [lzujbky-2015-48, lzujbky-2016-ct02, lzujb17-2016-ct07]
  3. PCSIRT [IRT_15R28]
  4. 111 Project of MOE [111-2-17]
  5. Chang Jiang Scholars Program

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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-azabicydo [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 beta-diketone secured the availability of our, target molecules.

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