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Transformations of the 2,7-<i>Seco Aspidosperma</i> Alkaloid Leuconolam, Structure Revision of <i>epi</i>-Leuconolam, and Partial Syntheses of Leuconoxine and Leuconodines A and F
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Citations
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References
2014
Year
Bioorganic ChemistrySecondary MetaboliteChemical BiologyBiosynthesisBiochemical TaxonomyNatural Product BiosynthesisLeuconodines AStereoselective SynthesisX-ray Diffraction AnalysisPartial SynthesesStructure RevisionBiochemistryPharmacologyNatural Product SynthesisEnantioselective SynthesisMolecular BromineNatural SciencesPhytochemistryNew Leuconoxine-type Alkaloids
Several transformations of the seco Aspidosperma alkaloid leuconolam were carried out. The based-induced reaction resulted in cyclization to yield two epimers, the major product corresponding to the optical antipode of a (+)-meloscine derivative. The structures and relative configuration of the products were confirmed by X-ray diffraction analysis. Reaction of leuconolam and epi-leuconolam with various acids, molecular bromine, and hydrogen gave results that indicated that the structure of the alkaloid, previously assigned as epi-leuconolam, was incorrect. This was confirmed by an X-ray diffraction analysis, which revealed that epi-leuconolam is in fact 6,7-dehydroleuconoxine. Short partial syntheses of the diazaspiro indole alkaloid leuconoxine and the new leuconoxine-type alkaloids leuconodines A and F were carried out.
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