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Methyl 2-halo-4-substituted-5-sulfamoyl-benzoates as high affinity and selective inhibitors of carbonic anhydrase ix

  • Audrius Zakšauskas
  • , Edita Čapkauskaitė
  • , Vaida Paketurytė-Latvė
  • , Alexey Smirnov
  • , Janis Leitans
  • , Andris Kazaks
  • , Elviss Dvinskis
  • , Laimonas Stančaitis
  • , Aurelija Mickevičiūtė
  • , Jelena Jachno
  • , Linas Jezepčikas
  • , Vaida Linkuvienė
  • , Andrius Sakalauskas
  • , Elena Manakova
  • , Saulius Gražulis
  • , Jurgita Matulienė
  • , Kaspars Tars
  • , Daumantas Matulis*
  • *Corresponding author for this work
  • Vilnius University
  • Latvian Biomedical Research and Study Centre

Research output: Contribution to journalArticlepeer-review

16 Citations (Scopus)

Abstract

Among the twelve catalytically active carbonic anhydrase isozymes present in the human body, the CAIX is highly overexpressed in various solid tumors. The enzyme acidifies the tumor microenvironment enabling invasion and metastatic processes. Therefore, many attempts have been made to design chemical compounds that would exhibit high affinity and selective binding to CAIX over the remaining eleven catalytically active CA isozymes to limit undesired side effects. It has been postulated that such drugs may have anticancer properties and could be used in tumor treatment. Here we have designed a series of compounds, methyl 5-sulfamoyl-benzoates, which bear a primary sulfonamide group, a well-known marker of CA inhibitors, and determined their affinities for all twelve CA isozymes. Variations of substituents on the benzenesulfonamide ring led to compound 4b, which exhibited an extremely high observed binding affinity to CAIX; the Kd was 0.12 nM. The intrinsic dissociation constant, where the binding-linked protonation reactions have been subtracted, reached 0.08 pM. The compound also exhibited more than 100-fold selectivity over the remaining CA isozymes. The X-ray crystallographic structure of compound 3b bound to CAIX showed the structural position, while several structures of compounds bound to other CA isozymes showed structural reasons for compound selectivity towards CAIX. Since this series of compounds possess physicochemical properties suitable for drugs, they may be developed for anticancer therapeutic purposes.

Original languageEnglish
Article number130
JournalInternational Journal of Molecular Sciences
Volume23
Issue number1
DOIs
Publication statusPublished - 1 Jan 2022
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Enzyme inhibitor
  • Fluorescent thermal shift assay
  • Human carbonic anhydrase
  • Intrinsic binding thermodynamics
  • Methyl 5-sulfamoyl-benzoate
  • X-ray crystallography

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