Structural Basis of Saccharin Derivative Inhibition of Carbonic Anhydrase IX

Author:

Leitans Janis1ORCID,Kazaks Andris1ORCID,Bogans Janis1,Supuran Claudiu T.2ORCID,Akopjana Inara1,Ivanova Jekaterina3ORCID,Zalubovskis Raivis34ORCID,Tars Kaspars15ORCID

Affiliation:

1. Latvian Biomedical Research and Study Center Ratsupites 1 1067 Riga Latvia

2. NEUROFARBA Department Sezione di Scienze Farmaceutiche University of Florence Via Ugo Schiff 6 50019 Sesto Fiorentino Florence Italy

3. Latvian Institute of Organic Synthesis Aizkraukles 21 1006 Riga Latvia

4. Institute of Technology of Organic Chemistry Faculty of Materials Science and Applied Chemistry Riga Technical University P. Valdena iela 3 1048 Riga Latvia

5. Faculty of Biology University of Latvia Jelgavas 1, Riga 1004 Riga Latvia

Abstract

AbstractThis study explores the binding mechanisms of saccharin derivatives with human carbonic anhydrase IX (hCA IX), an antitumor drug target, with the aim of facilitating the design of potent and selective inhibitors. Through the use of crystallographic analysis, we investigate the structures of hCA IX‐saccharin derivative complexes, unveiling their unique binding modes that exhibit both similarities to sulfonamides and distinct orientations of the ligand tail. Our comprehensive structural insights provide information regarding the crucial interactions between the ligands and the protein, shedding light on interactions that dictate inhibitor binding and selectivity. Through a comparative analysis of the binding modes observed in hCA II and hCA IX, isoform‐specific interactions are identified, offering promising strategies for the development of isoform‐selective inhibitors that specifically target tumor‐associated hCA IX. The findings of this study significantly deepen our understanding of the binding mechanisms of hCA inhibitors, laying a solid foundation for the rational design of more effective inhibitors.

Funder

European Regional Development Fund

Publisher

Wiley

Subject

Organic Chemistry,General Pharmacology, Toxicology and Pharmaceutics,Molecular Medicine,Drug Discovery,Biochemistry,Pharmacology

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