| Literature DB >> 27340486 |
Gastón Silveira-Dorta1, Sergio J Álvarez-Méndez1, Víctor S Martín1, José M Padrón1.
Abstract
An improved protocol for the synthesis of enantiomerically pure allylic amines is reported. N-Protected α-amino esters derived from natural amino acids were submitted to a one-pot tandem reduction-olefination process. The sequential reduction with DIBAL-H at -78 °C and subsequent in situ addition of organophosphorus reagents yielded the corresponding allylic amines without the need to isolate the intermediate aldehyde. This circumvents the problem of instability of the aldehydes. The method tolerates well both Wittig and Horner-Wadsworth-Emmons organophosphorus reagents. A better Z-(dia)stereoselectivity was observed when compared to the previous one-pot method. The (dia)stereoselectivity of the process was affected neither by the reaction solvent nor by the amount of DIBAL-H employed. The method is compatible with the presence of free hydroxy groups as shown with serine and threonine derivatives.Entities:
Keywords: Wittig reactions; amino acids; olefination; protecting group free; synthetic methods
Year: 2016 PMID: 27340486 PMCID: PMC4902051 DOI: 10.3762/bjoc.12.94
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Strategies for the synthesis of N-protected allylic amines. [Red], reduction; [Ox], oxidation; [Olef], olefination; [Pg], protecting group.
Screening of the reaction conditions for the one-pot tandem reduction–olefination.
| Entry | Solvent | DIBAL-H (equiv) | Yield (%) | |
| 1 | Et2O | 1.4 | >20:1 | 5b |
| 2 | Et2O | 1 | >20:1 | 21 |
| 3 | THF | 1.4 | –b | |
| 4 | THF | 1 | >20:1 | 20 |
| 5 | toluene | 1.4 | –b | |
| 6 | toluene | 1 | >20:1 | 71 |
| 7 | toluene | 0.5 | >20:1 | 40 |
aThe E/Z ratio was determined by 1H NMR analysis of the crude product 2a. bOver reduction to alcohol.
Influence of the organophosphorus reagent in the outcome of the one-pot tandem reduction–olefination.
| Entry | Organophosphorus reagent | Product | Yield (%) | |
| 1 | Ph3P=CHPh | 1:1.3 | 60 | |
| 2 | Ph3P=CH(CH2)13Me | >1:20 | 40 | |
| 3 | Ph3P=CHCN | 5:1 | 72 | |
| 4 | Ph3P=C(Me)CO2Et | >20:1 | 71 | |
| 5 | (MeO)2P(O)CH2CO2Me | >20:1 | 68 | |
| 6 | (CF3CH2O)2P(O)CH2CO2Et | 1:1.6 | 78 | |
aThe E/Z ratio was determined by 1H NMR analysis of the crude product.
Screening of the reaction conditions for the one-pot tandem reduction–olefination of free hydroxyserine derivatives.
| Entry | Reduction time (h) | DIBAL-H (equiv) | Yield (%) | |
| 1 | 2 | 1 | >20:1 | 7 |
| 2 | 2 | 1.4 | >20:1 | 36 |
| 3 | 2 | 2 | >20:1 | 58 |
| 4 | i) 1 | i) 1.4b | >20:1 | 65 |
aThe E/Z ratio was determined by 1H NMR analysis of the crude product. bDIBAL-H was added in two portions.
One-pot tandem reduction–olefination of free hydroxyserine and threonine derivatives.
| Entry | Organophosphorus reagent | Product | Yield (%) | |
| 1 | (MeO)2P(O)CH2CO2Me | >20:1 | 50 | |
| 2 | Ph3P=CH(CH2)13Me | 37:63 | 60b | |
| 3 | Ph3P=CHCO2Et | >20:1 | 40 | |
| 4 | Ph3P=C(Me)CO2Et | >20:1 | 39 | |
aThe E/Z ratio was determined by 1H NMR analysis of the crude product. bInseparable E/Z mixture.