| Literature DB >> 24506430 |
Ahmad A Ibrahim1, Alexander N Golonka, Alberto M Lopez, Jennifer L Stockdill.
Abstract
A streamlined approach to the tertiary amine-containing core of the calyciphylline A and daphnicyclidin A-type Daphniphyllum alkaloids is presented. A known carvone derivative is converted into the core structure in only four synthetic operations, and it is well poised for further elaboration. The key enabling methodology is a radical cyclization cascade beginning with addition of a secondary, neutral aminyl radical to the β-position of an enone, followed by trapping with a pendant alkyne.Entities:
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Year: 2014 PMID: 24506430 PMCID: PMC3954529 DOI: 10.1021/ol4034868
Source DB: PubMed Journal: Org Lett ISSN: 1523-7052 Impact factor: 6.005
Scheme 1Targeted Daphniphyllum Alkaloids
Scheme 2Synthesis of Radical Cyclization Substrate
Scheme 3Strategy for Facilitating Tandem Cyclization of Aminyl Radical To Access Core Structure
Scheme 4Known Cyclizations of Neutral Secondary Aminyl Radicals onto Polarized Olefins
Optimization of the Tandem NCR Cyclizationa
| temp (°C) | solvent | addition time (h) | % yield (isolated) |
|---|---|---|---|
| 80 | Ph-Me | 0 | 40–50 |
| 21 (sunlamp) | Ph-Me | 0 | 17 |
| 80 | Ph-CF3 | 0 | 27 |
| 80 | Ph-Me | 1 | 61 (+Cl· transfer pdt.) |
| 80 | Ph-H | 1 | 21 |
All reactions were performed using 0.5 equiv of AIBN, 2 equiv of Bu3SnH, at 0.01 M. Addition over 1 h indicates a solution of AIBN and Bu3SnH was added dropwise over 1 h to a heated solution of the substrate in the indicated solvent.
Scheme 5Failed Cyclization of Allylic Alcohol Substrate