Development of Versatile cis- and trans-Dicarbon-Substituted Chiral Cyclopropane Units: Synthesis of (1S,2R)- and (1R,2R)-2-Aminomethyl-1-(1H-imidazol-4-yl)cyclopropanes and Their Enantiomers as Conformationally Restricted Analogues of Histamine
- 1 February 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in The Journal of Organic Chemistry
- Vol. 67 (5) , 1669-1677
- https://doi.org/10.1021/jo010852x
Abstract
The cyclopropane ring can be used effectively in restricting the conformation of biologically active compounds to improve activity and also to investigate bioactive conformations. We designed (1S,2R)- and (1R,2R)-2-aminomethyl-1-(1H-imidazol-4-yl)cyclopropanes (1 and 2, respectively) and their enantiomers (ent-1 and ent-2) as conformationally restricted analogues of histamine. The four types of chiral cyclopropanes bearing two differentially functionalized carbon substituents in a cis or trans relationship on a cyclopropane ring, (1S,2R)-2-(tert-butyldiphenylsilyloxy)methyl-1-formylcyclopropane (7) and (1R,2R)-2-(tert-butyldiphenylsilyloxy)methyl-1-formylcyclopropane (8) and their enantiomers (ent-7 and ent-8), were developed as the key intermediates for synthesizing 1, 2, ent-1, and ent-2. The reaction between (R)-epichlorohydrin [(R)-12] and phenylsulfonylacetonitrile (13a) in the presence of NaOEt in EtOH followed by treatment with acid gave the chiral cyclopropane lactone 11a with 98% ee in 82% yield. Compound 11a was converted into both the cis- and trans-chiral cyclopropane units 7 and 8, respectively, via reductive desulfonylation with Mg/MeOH as the key step. The corresponding enantiomers, the cis-substituted ent-7 and the trans-substituted ent-8, were also prepared starting from (S)-epichlorohydrin [(S)-12]. The four conformationally restricted target histamine analogues 1, 2, ent-1, and ent-2 were successfully synthesized from 7, 8, ent-7, and ent-8, respectively. The chiral cyclopropane units 7, 8, ent-7, and ent-8 should be useful as versatile intermediates for synthesizing various compounds having an asymmetric cyclopropane structure.Keywords
This publication has 8 references indexed in Scilit:
- (1S,2R)-1-Phenyl-2-[(S)-1-aminopropyl]-N,N-diethylcyclopropane-carboxamide (PPDC), a New Class of NMDA-Receptor Antagonist: Molecular Design by a Novel Conformational Restriction StrategyThe Japanese Journal of Pharmacology, 2001
- Highly stereoselective addition of Grignard reagents to C-cyclopropylnitrone via the bisected s-trans conformation. An efficient synthesis of PEDC, a potent NMDA receptor antagonist having a cyclopropane structureTetrahedron Letters, 2000
- Selective ligands as tools to study histamine receptorsEuropean Journal of Medicinal Chemistry, 2000
- Synthesis of Conformationally Restricted Analogs of Baclofen, a Potent GABAB Receptor Agonist, by the Introduction of a Cyclopropane Ring.CHEMICAL & PHARMACEUTICAL BULLETIN, 1999
- Synthesis and Biological Activity of Conformationally Restricted Analogues of Milnacipran: (1S,2R)-1-Phenyl-2-[(R)-1-amino-2-propynyl]-N,N- diethylcyclopropanecarboxamide Is a Novel Class of NMDA Receptor Channel BlockerJournal of Medicinal Chemistry, 1998
- Conformational Restriction by Repulsion between Adjacent Substituents on a Cyclopropane Ring: Design and Enantioselective Synthesis of 1-Phenyl-2-(1-aminoalkyl)-N,N-diethylcyclopropanecarboxamides as Potent NMDA Receptor AntagonistsThe Journal of Organic Chemistry, 1996
- Cyclization of γ,δ-epoxy-α-cyanosulphones. A simple, diastereoselective route to cyclopropane carboxylic acids.Tetrahedron Letters, 1993
- Mode of nucleophilic addition to epichlorohydrin and related species: chiral aryloxymethyloxiranesJournal of the American Chemical Society, 1979