| Literature DB >> 35759645 |
Beatriz González-Saiz1, Israel Carreira-Barral1, Pablo Pertejo1, Javier Gómez-Ayuso1, Roberto Quesada1, María García-Valverde1.
Abstract
The diastereoselective synthesis of two families of pyrrolopiperazine-2,6-diones is presented. These compounds were prepared by one-pot Ugi/nucleophilic substitution/N-acylation/debenzoylation/(elimination) sequences. This novel route provides straightforward access to a wide variety of pyrrolopiperazine-2,6-diones with high chemical yields and complete diastereoselectivities. The proposed synthetic strategy poses a significant improvement compared to the syntheses of pyrrolopiperazine-2,6-diones previously described, as it allows introduction of different substituents to the C4 position and the diastereoselective generation of a new stereogenic center on the bridgehead carbon (C8a).Entities:
Mesh:
Substances:
Year: 2022 PMID: 35759645 PMCID: PMC9348836 DOI: 10.1021/acs.joc.2c00694
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.198
Scheme 1Synthesis of 2,6-Diketopiperazine–Pyrrolidinone-Fused Systems
Scheme 2Synthesis of Pyrrolidin-2-ones through a Ugi/Cyclization Sequence
Results for the Synthesis of Pyrrolidin-2-ones 6
| entry | dr | ||
|---|---|---|---|
| – | |||
| 51:49 | |||
| 50:50 |
Determined by 1H NMR spectroscopy in the reaction mixture.
Ugi adduct 5a was the only product observed after 24 h (78% yield).
Yield referred to the conversion of the Ugi adduct to the pyrrolidinone. Conversion is achieved by refluxing 5a in acetonitrile with a catalytic amount of cesium carbonate for 1 h.
Chemical yield of the major diastereomer after purification by column chromatography.
Chemical yield of the diastereomers mixture after purification by column chromatography.
Scheme 3Diastereoselective Synthesis of Pyrrolidinone-Fused Piperazine-2,6-diones 7 and X-ray Molecular Structure of Pyrrolopiperazine-2,6-dione 7c
The Olex2 plot is at the 30% probability level.
Results for the Synthesis of Pyrrolidinone-Fused Piperazine-2,6-diones 7 from Pyrrolidinones 6
| entry | dr | ||
|---|---|---|---|
| – | |||
| >95:5 | |||
| >95:5 |
Determined by 1H NMR spectroscopy in the reaction mixture.
Racemic mixture.
Scheme 4Proposed Mechanism for the Diastereoselective Synthesis of Pyrrolopiperazine-2,6-diones 7
Scheme 5One-Pot Two-Step Sequence for the Synthesis of Pyrrolidinone-Fused 2,6-Diketopiperazines 7
Results for the Synthesis of Pyrrolidinone-Fused 2,6-Diketopiperazines 7 by a One-Pot Two-Step Sequence
| entry | solvent | dr | |||
|---|---|---|---|---|---|
| MeOH | – | ||||
| MeOH | >95:5 | ||||
| MeOH | >95:5 | ||||
| ACN | >95:5 | ||||
| MeOH | >95:5 | ||||
| ACN | >95:5 | ||||
| MeOH | >95:5 | ||||
| MeOH | >95:5 | ||||
| MeOH | >95:5 | ||||
| MeOH | >95:5 |
Solvent employed in the first stage.
Chemical yield after purification.
Determined by 1H NMR spectroscopy in the reaction mixture.
Scheme 6One-Pot Two-Step Sequence for the Synthesis of α-Methylidene-γ-lactam-Fused 2,6-Diketopiperazines 8
Results for the Synthesis of α-Methylidene-γ-lactam-Fused 2,6-Diketopiperazines 8 by a One-Pot Two-Step Sequence
| entry | dr | ||
|---|---|---|---|
| – | |||
| >95:5 | |||
| >95:5 | |||
| >95:5 | |||
| >95:5 |
Chemical yield after purification.
Determined by 1H NMR spectroscopy in the reaction mixture.
Starting from 2-(bromomethyl)acrylic acid.
Starting from 3-bromo-2-(bromomethyl)propionic acid.