4.7 Article

Synthesis and optimization of an original V-shaped collection of 4-7-disubstituted Pyrido[3,2-d]pyrimidines as CDK5 and DYRK1A inhibitors

Journal

EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Volume 80, Issue -, Pages 352-363

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2014.04.055

Keywords

Pyridopyrimidine; CDK5; DYRK1A; Synthesis; SAR; Molecular modelling

Funding

  1. PHC (Hubert Curien Program) Volubilis program
  2. Ligue contre le Cancer (Comites du Grand Ouest)
  3. Canceropole Grand Ouest Strand Valorisation des produits de la mer
  4. Fonds Unique Interministeriel (FUI) PHARMASEA project
  5. European Union 7th Framework Program (FP7) Micro-Therapy project
  6. Association France-Alzheimer (Finistere)

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We here report the synthesis and biological evaluation of an original collection of 4,7-disubstituted pyrido[3,2-d]pyrimidines designed as potential kinase inhibitors. The collection was generated from a single starting material, 4,7-dichloropyrido[3,2-d]pyrimidine, which afforded the final compounds after two steps: a sequential or one-pot sequence including selective cross coupling reactions in C-4, followed by the second cross-coupling in C-7. In position C-4, a Suzuki-Miyaura type reaction led to monosubstituted derivatives whereas in position C-7, synthesis was achieved via a Suzuki or a Buchwald type reaction using commercially available or undescribed boron derivatives. The biological activity of the V-shaped family was measured in protein kinase assays. The structure activity relationship (SAR) revealed that some compounds selectively inhibited DYRK1A and CDK5 without affecting GSK3. Docking studies furnished possible explanations that correlate with the SAR data. The most active compound on the two biological targets was 27 which exhibited the following IC50: 110 nM for CDK5, 24 nM for DYRK1A and only 1.2 mu M for GSK3. In the C-7 amino subfamily, the best derivative was indubitably compound 48 which led to a near selective action on DYRK1A and a remarkable IC50 of 60 nM. (C) 2014 Elsevier Masson SAS. All rights reserved.

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