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Using neutron crystallography to elucidate the basis of selective inhibition of carbonic anhydrase by saccharin and a derivative
Authors:Katarina Koruza  Brian P. Mahon  Matthew P. Blakeley  Andreas Ostermann  Tobias E. Schrader  Robert McKenna  Wolfgang Knecht  S. Zoë Fisher
Affiliation:1. Lund Protein Production Platform (LP3) & Department of Biology, Lund University, 223 62 Lund, Sweden;2. Department of Molecular Biology, Princeton University, 08544 Princeton, NJ, United States;3. Large-Scale Structures Group, Institut Laue-Langevin, 38042 Grenoble, France;4. Heinz Maier-Leibnitz Zentrum (MLZ), Technische Universität München, 85748 Garching, Germany;5. Forschungszentrum Jülich GmbH, Jülich Centre for Neutron Science (JCNS) at Heinz Maier-Leibnitz Zentrum (MLZ), 85747 Garching, Germany;6. Department of Biochemistry and Molecular Biology, College of Medicine, University of Florida, 32610 Gainesville, United States;7. Scientific Activities Division, European Spallation Source ERIC (ESS), 221 00 Lund, Sweden
Abstract:
Up-regulation of carbonic anhydrase IX (CA IX) expression is an indicator of metastasis and associated with poor cancer patient prognosis. CA IX has emerged as a cancer drug target but development of isoform-specific inhibitors is challenging due to other highly conserved CA isoforms. In this study, a CA IXmimic construct was used (CA II with seven point mutations introduced, to mimic CA IX active site) while maintaining CA II solubility that make it amenable to crystallography. The structures of CA IXmimic unbound and in complex with saccharin (SAC) and a saccharin-glucose conjugate (SGC) were determined using joint X-ray and neutron protein crystallography. Previously, SAC and SGC have been shown to display CA isoform inhibitor selectivity in assays and X-ray crystal structures failed to reveal the basis of this selectivity. Joint X-ray and neutron crystallographic studies have shown active site residues, solvent, and H-bonding re-organization upon SAC and SGC binding. These observations highlighted the importance of residues 67 (Asn in CA II, Gln in CA IX) and 130 (Asp in CA II, Arg in CA IX) in selective CA inhibitor targeting.
Keywords:Joint X-ray neutron refinement  Crystallography  Hydrogen atoms  H/D exchange  Ligand protein interactions
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