학술논문

Total Synthesis of (+)-Nankakurines A and B and (±)-5-epi-Nankakurine A.
Document Type
Article
Source
Journal of Organic Chemistry. 11/19/2010, Vol. 75 Issue 22, p7519-7534. 16p. 18 Diagrams, 1 Chart, 1 Graph.
Subject
*MOIETIES (Chemistry)
*RING formation (Chemistry)
*DIELS-Alder reaction
*MENTHENONE
*HIPPOCAMPUS (Brain)
Language
ISSN
0022-3263
Abstract
The first total syntheses of the Lycopodium alkaloids (+)-nankakurine A (2), (+)-nankakurine B (3), and the originally purported structure 1 of nankakurine A were accomplished. The syntheses of 2 and 3 feature a demanding intramolecular azomethine imine cycloaddition as the key step for generating the octahydro-3,5-ethanoquinoline moiety and installing the correct relative configuration at the spiropiperidine ring juncture. The cyclization precursor was prepared from octahydronaphthalene ketone 50, which was assembled from enone (+)-9 and diene 48 by a cationic Diels-Alder reaction. The Diels-Alder reactants were synthesized from 5-hexyn-l-ol (16) and (+)-pulegone (49), respectively. The tetracyclic ring system of 1 was generated using an unprecedented nitrogen-terminated aza-Prins cyclization cascade. The enantioselective total syntheses of (+)-nankakurine A (2) and (+)- nankakurine B (3) establish the relative and absolute configuration of these alkaloids and are sufficiently concise that substantial quantities of 2 and 3 were prepared for biological studies. (+)- Nankakurine A and (+)-nankakurine B showed no effect on neurite outgrowth in rat hippocampal H-19 cells over a concentration range of 0.3-μ M. [ABSTRACT FROM AUTHOR]