4.6 Article

Synthesis and Cytotoxic and Antiviral Activity Profiling of All-Four Isomeric Series of Pyrido-Fused 7-Deazapurine Ribonucleosides

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 26, Issue 57, Pages 13002-13015

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202001124

Keywords

antitumor agents; antiviral agents; drug discovery; phosphorylation; ribonucleosides

Funding

  1. Academy of Sciences of the Czech Republic [RVO 61388963]
  2. Academy of Sciences of the Czech Republic (Praemium Academiae award)
  3. Czech Science Foundation [19-08124S]
  4. Czech Health Research Council [15-31984A]
  5. Gilead Sciences, Inc.
  6. Czech Ministry of Education, Youth and Sports [LM2015064, CZ.02.1.01/0.0/0.0/16_019/0000868]

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All four isomeric series of novel 4-substituted pyrido-fused 7-deazapurine ribonucleosides possessing the pyridine nitrogen atom at different positions were designed and synthesized. The total synthesis of each isomeric fused heterocycle through multistep heterocyclization was followed by glycosylation and derivatization at position 4 by cross-coupling reactions or nucleophilic substitutions. All compounds were tested for cytostatic and antiviral activity. The most active were pyrido[4 ',3 ':4,5]pyrimidine nucleosides bearing MeO, NH2, MeS, or CH(3)groups at position 4, which showed submicromolar cytotoxic effects and good selectivity for cancer cells. The mechanism involved activation by phosphorylation and incorporation to DNA where the presence of the modified ribonucleosides causes double-strand breaks and apoptosis.

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