The Journal of Organic Chemistry · 2004 · 87 citations · 26 references
Bioorganic ChemistryNatural Arborescidine CBiochemistryEngineeringNatural SciencesEnantioselective Total Syntheses-Arborescidine BOrganic ChemistryStereoselective SynthesisChemistryNatural Product SynthesisAsymmetric CatalysisSynthetic ArborescidinesSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
Described are the first enantioselective total syntheses of (+)-arborescidine A ((+)-1), (-)-arborescidine B ((-)-2), and (-)-arborescidine C ((-)-3), via routes that proceeded in five steps and 50% overall yield, eight steps and 61% overall yield, and nine steps and 51% overall yield, respectively, from 6-bromotryptamine (7). The syntheses feature the use of the Noyori catalytic asymmetric hydrogen-transfer reaction to introduce chirality in dihydro-beta-carbolines 6 and 8. On the basis of an ample precedent from Noyori's work, the reduction produces dihydro-beta-carbolines, and ultimately the natural products, possessing the R absolute configuration. The synthetic arborescidines displayed optical rotations that were opposite in sign those of the natural products, thereby supporting the S configuration for natural arborescidines A (1) and B (2) and the (3S,17S) configuration for natural arborescidine C (3). Our results are in agreement with the initial stereochemical assignment by Païs and co-workers, and are counter to their recently revised assignment.
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Karl‐Josef Haack, Shohei Hashiguchi, Akio Fujii et al. · Angewandte Chemie International Edition in English · 1997 · 1K citations
X-ray Crystallography, Chemical Engineering, Engineering +14
Masashi Yamakawa, Hisashi Itô, Ryōji Noyori · Journal of the American Chemical Society · 2000 · 813 citations
J.B. Jones · Tetrahedron · 1986 · 651 citations