| Literature DB >> 35011332 |
Kazuhiro Higuchi1, Kazunori Matsumura1, Takafumi Arai1, Motoki Ito1, Shigeo Sugiyama1.
Abstract
Propellanes are polycyclic compounds in which tricyclic systems share one carbon-carbon single bond. Propellane frameworks that consist of larger sized rings are found in a variety of natural products. As an approach to the stereoselective synthesis of the propellane framework, one of the efficient methods is forming several rings in a single operation. Lapidilectine B (1) is composed of a propellane framework and was synthesized through the oxidative cyclization of trisubstituted alkenes. When the alkene with an ester moiety was treated with N-iodosuccinimide (NIS), iodocyclization proceeded to give the cyclic carbamate. On the other hand, when PhI(OAc)2 was allowed to react in the carboxyl form, a furoindolin-2-one structure corresponding to the A-B-C ring of lapidilectine B (1) was produced. Furthermore, when Pd(OAc)2 catalyst was used for cyclization under oxidative conditions, the product yield was improved.Entities:
Keywords: furoindolin-2-one; lapidilectine B; oxidative cyclization
Year: 2021 PMID: 35011332 PMCID: PMC8746550 DOI: 10.3390/molecules27010102
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Lapidilectine B (1).
Scheme 1Oxidative cyclization of alkenes.
Scheme 2Syntheses of trisubstituted alkenes.
Scheme 3Iodocyclization of alkene 6.
Oxidative cyclization of alkene 2a.
| Entry | Oxidant | Equiv. | Solvent | Temp. | Time | Yield |
|---|---|---|---|---|---|---|
| 1 | NIS | 1.5 | MeCN/MeOH (20/1) | −45 | 5 | n.a. 1 |
| 2 | NCS | 1.5 | MeCN/MeOH (20/1) | −40 to r.t. | 24 | n.r. 2 |
| 3 | CAN | 1.0 | MeCN | 0 to r.t. | 24 | trace |
| 4 | PhI(OAc)2 | 1.0 | MeCN | 0 to reflux | 24 | 43 |
| 5 | PhI(OCOCF3)2 | 1.0 | MeCN | 0 to r.t. | 24 | trace |
| 6 | PhI(OH)OTs | 1.0 | MeCN | 0 to r.t. | 24 | 4 |
| 7 | PhIO | 1.0 | MeCN | 0 to r.t. | 24 | trace |
1 Not available. 2 No reaction.
Scheme 4Plausible reaction mechanism.
Palladium catalyzed cyclization of alkenes 2.
| Entry | 2 | R | Pd (Equiv.) | Solvent | Temp | Time | Yield (%) |
|---|---|---|---|---|---|---|---|
| 1 |
| Me | PdCl2 (1.0) | DMF | r.t. | 20 min | 19 |
| 2 |
| Me | Pd(OCOCF3)2 (1.0) | DMF | r.t. | 20 min | 29 |
| 3 |
| Me | Pd(OAc)2 (1.0) | DMF | r.t. | 20 min | 58 |
| 4 |
| Me | Pd(OAc)2 (1.0) | MeCN | r.t. | 20 min | 50 |
| 5 |
| Me | Pd(OAc)2 (0.2) | DMF | r.t. | 24 h | 14 |
| 6 |
| Me | Pd(OAc)2 (0.2) | MeCN | r.t. | 24 h | 51 |
| 7 |
| Me | Pd(OAc)2 (0.2) | MeCN | reflux | 6 h | 78 |
| 8 |
| Me | Pd(OAc)2 (0.1) | MeCN | reflux | 24 h | 47 |
| 9 |
| Et | Pd(OAc)2 (0.2) | MeCN | reflux | 6 h | 56 |
| 10 |
| Pd(OAc)2 (0.2) | MeCN | reflux | 6 h | 38 | |
| 11 |
| Bn | Pd(OAc)2 (0.2) | MeCN | reflux | 6 h | 33 |
| 12 |
| Allyl | Pd(OAc)2 (0.2) | MeCN | reflux | 6 h | 29 |
Scheme 5Plausible reaction mechanism.