Literature DB >> 10447949

Chiral resolution and stereospecificity of 6-phenyl-4-phenylethynyl- 1,4-dihydropyridines as selective A(3) adenosine receptor antagonists.

J Jiang1, A H Li, S Y Jang, L Chang, N Melman, S Moro, X Ji, E B Lobkovsky, J C Clardy, K A Jacobson.   

Abstract

Racemic 6-phenyl-4-phenylethynyl-1,4-dihydropyridine derivatives have been shown to be highly selective A(3) adenosine receptor antagonists (Jiang et al. J. Med. Chem. 1997, 40, 2596-2608). Methods for resolving the optical isomers at the C4 position, involving selective crystallization or chromatographic separation of diastereomeric ester derivatives, have been developed. Optically pure glycerol and threitol derivatives were used as chiral auxiliary groups for ester formation at the 3-position, resulting in diastereomeric mixtures of dihydropyridines. Esterification of a 6-phenyl-4-phenylethynyl-1,4-dihydropyridine derivative at the 3-position with a chiral, protected glycerol moiety, (S)-(+)-2, 2-dimethyl-1,3-dioxolane-4-methanol, allowed the selective crystallization of a pure diastereomer, 9. The (1)H NMR spectrum of 9 using the lanthanide shift reagent Eu(fod)(3) indicated optical purity, and the (4S,2'R)-configuration was assigned using X-ray crystallography. The noncrystalline (4R,2'R)-isomer 10 was also isolated and shown to be 3-fold more potent than the (4S,2'R)-isomer in binding to A(3) receptors. The 2,2-dimethyl-1,3-dioxolane moiety also served as a protected form of a diol, which showed selective reactivity versus a 5-ethyl ester in basic transesterification reactions. A racemic 5-carboxylic acid derivative could not be resolved through crystallization of diastereomeric salts. Enantiomers of 5-benzyl 3-ethyl 2-methyl-6-phenyl-4-phenylethynyl-1, 4-dihydropyridine-3,5-dicarboxylate (2) were obtained via an ester derived from (4R,5R)-(-)-2,3-O-isopropylidene-D-threitol at the 3-position, which was resolved using HPLC, and each diastereomer was subsequently deprotected in acidic conditions. The resulting diols were exchanged for ethyl ester groups by base-catalyzed transesterification. The binding of pure enantiomers of 2 at A(3) adenosine receptors indicated a 35-fold stereoselectivity for the (4S)-isomer 21. A receptor docking hypothesis, using a previously derived human A(3) receptor model, shows the bulkier of the two ester groups (5-Bn) of 21 oriented toward the exofacial side and the 4-position phenylethynyl group situated between transmembrane helical domain TM6 and TM7.

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Year:  1999        PMID: 10447949     DOI: 10.1021/jm980688e

Source DB:  PubMed          Journal:  J Med Chem        ISSN: 0022-2623            Impact factor:   7.446


  12 in total

1.  Enantiomeric Recognition of d- and l-Lactate by CEST with the Aid of a Paramagnetic Shift Reagent.

Authors:  Lei Zhang; André F Martins; Piyu Zhao; Michael Tieu; David Esteban-Gómez; Gregory T McCandless; Carlos Platas-Iglesias; A Dean Sherry
Journal:  J Am Chem Soc       Date:  2017-11-17       Impact factor: 15.419

2.  Application of electron conformational-genetic algorithm approach to 1,4-dihydropyridines as calcium channel antagonists: pharmacophore identification and bioactivity prediction.

Authors:  Nazmiye Geçen; Emin Sarıpınar; Ersin Yanmaz; Kader Sahin
Journal:  J Mol Model       Date:  2011-03-31       Impact factor: 1.810

3.  Enantiomeric impurities in chiral synthons, catalysts, and auxiliaries. Part 3.

Authors:  Ke Huang; Zachary S Breitbach; Daniel W Armstrong
Journal:  Tetrahedron Asymmetry       Date:  2006-10-27

4.  Dimeric isoxazolyl-1,4-dihydropyridines have enhanced binding at the multi-drug resistance transporter.

Authors:  Scott A Steiger; Chun Li; Donald S Backos; Philip Reigan; N R Natale
Journal:  Bioorg Med Chem       Date:  2017-04-08       Impact factor: 3.641

5.  Pyran Template Approach to the Design of Novel A3 Adenosine Receptor Antagonists.

Authors:  An-Hu Li; Xiao-Duo Ji; Hak Sung Kim; Neli Melman; Kenneth A Jacobson
Journal:  Drug Dev Res       Date:  2000-02-11       Impact factor: 4.360

Review 6.  1,4-Dihydropyridines as calcium channel ligands and privileged structures.

Authors:  David J Triggle
Journal:  Cell Mol Neurobiol       Date:  2003-06       Impact factor: 5.046

7.  Studies on enantioselectivity of chiral 4-acetylamino-6-alkyloxy-2-alkylthiopyrimidines acting as antagonists of the human A3 adenosine receptor.

Authors:  Barbara Cosimelli; Giovanni Greco; Sonia Laneri; Ettore Novellino; Antonia Sacchi; Simona Collina; Daniela Rossi; Sandro Cosconati; Elisabetta Barresi; Sabrina Taliani; Maria Letizia Trincavelli; Claudia Martini
Journal:  Medchemcomm       Date:  2017-11-09       Impact factor: 3.597

Review 8.  Demystifying the three dimensional structure of G protein-coupled receptors (GPCRs) with the aid of molecular modeling.

Authors:  Stefano Moro; Francesca Deflorian; Giampiero Spalluto; Giorgia Pastorin; Barbara Cacciari; Soo-Kyung Kim; Kenneth A Jacobson
Journal:  Chem Commun (Camb)       Date:  2003-12-21       Impact factor: 6.065

9.  Synthesis and anticonvulsant activity of a new series of 1,4-dihydropyridine derivatives.

Authors:  R Surendra Kumar; A Idhayadhulla; A Jamal Abdul Nasser; S Kavimani; S Indumathy
Journal:  Indian J Pharm Sci       Date:  2010-11       Impact factor: 0.975

10.  Structural determinants of A(3) adenosine receptor activation: nucleoside ligands at the agonist/antagonist boundary.

Authors:  Zhan-Guo Gao; Soo-Kyung Kim; Thibaud Biadatti; Wangzhong Chen; Kyeong Lee; Dov Barak; Seong Gon Kim; Carl R Johnson; Kenneth A Jacobson
Journal:  J Med Chem       Date:  2002-09-26       Impact factor: 8.039

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