Inhibition studies on a panel of human carbonic anhydrases with N1-substituted secondary sulfonamides incorporating thiazolinone or imidazolone-indole tails

Fadi M. Awadallah, Silvia Bua, Walaa R. Mahmoud, Hossam H. Nada, Alessio Nocentini, Claudiu T. Supuran

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43 Scopus citations

Abstract

Being the primary sulfonamide among the most efficient zinc binding group (ZBG) to design inhibitors for the metallo-enzymes carbonic anhydrases (CA, EC 4.2.1.1), herein, we propose an investigation on four physiologically important human (h) CAs (hCA I, II, IV, and IX) with N1-substituted secondary sulfonamides incorporating thiazolinone or imidazolone-indole tails. The effect of the functionalisation of the sulfonamide group with five different substitution patterns, namely acetyl, pyridine, thiazole, pyrimidine, and carbamimidoyl, was evaluated in relation to the inhibition profile of the corresponding primary sulfonamide analogues. With most of these latter being nanomolar inhibitors of all four considered isoforms, a totally counterproductive effect on the inhibition potency can be ascribed to N1-functionalisations of the ZBG primary sulfonamide structure with pyridine, thiazole, and pyrimidine moieties. On the other hand, incorporation of less hindered groups, such as sulfonylacetamides and sulfonylguanidines, maintained a certain degree of activity dependent on the tailing moiety, with KIs spanning in the low micromolar range.

Original languageEnglish
Pages (from-to)629-638
Number of pages10
JournalJournal of Enzyme Inhibition and Medicinal Chemistry
Volume33
Issue number1
DOIs
StatePublished - 1 Jan 2018

Keywords

  • Carbonic anhydrase
  • indole
  • inhibitor
  • sulfonamides
  • zinc binding-group

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