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Switching the Inhibitor-Enzyme Recognition Profile via Chimeric Carbonic Anhydrase XII.
Smirnoviene, Joana; Smirnov, Alexey; Zaksauskas, Audrius; Zubriene, Asta; Petrauskas, Vytautas; Mickeviciute, Aurelija; Michailoviene, Vilma; Capkauskaite, Edita; Manakova, Elena; Grazulis, Saulius; Baranauskiene, Lina; Chen, Wen-Yih; Ladbury, John E; Matulis, Daumantas.
Affiliation
  • Smirnoviene J; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Smirnov A; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Zaksauskas A; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Zubriene A; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Petrauskas V; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Mickeviciute A; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Michailoviene V; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Capkauskaite E; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Manakova E; Department of Protein-DNA Interactions, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Grazulis S; Department of Protein-DNA Interactions, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Baranauskiene L; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
  • Chen WY; Department of Chemical and Materials Engineering, Institute of Systems Biology and Bioinformatics, National Central University, Taiwan.
  • Ladbury JE; School of Molecular and Cellular Biology, University of Leeds, LC Miall Building, Leeds, LS2 9JT, UK.
  • Matulis D; Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio 7, Vilnius, 10257, Lithuania.
ChemistryOpen ; 10(5): 567-580, 2021 05.
Article in En | MEDLINE | ID: mdl-33945229
A key part of the optimization of small molecules in pharmaceutical inhibitor development is to vary the molecular design to enhance complementarity of chemical features of the compound with the positioning of amino acids in the active site of a target enzyme. Typically this involves iterations of synthesis, to modify the compound, and biophysical assay, to assess the outcomes. Selective targeting of the anti-cancer carbonic anhydrase isoform XII (CA XII), this process is challenging because the overall fold is very similar across the twelve CA isoforms. To enhance drug development for CA XII we used a reverse engineering approach where mutation of the key six amino acids in the active site of human CA XII into the CA II isoform was performed to provide a protein chimera (chCA XII) which is amenable to structure-based compound optimization. Through determination of structural detail and affinity measurement of the interaction with over 60 compounds we observed that the compounds that bound CA XII more strongly than CA II, switched their preference and bound more strongly to the engineered chimera, chCA XII, based on CA II, but containing the 6 key amino acids from CA XII, behaved as CA XII in its compound recognition profile. The structures of the compounds in the chimeric active site also resembled those determined for complexes with CA XII, hence validating this protein engineering approach in the development of new inhibitors.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Sulfonamides / Carbonic Anhydrase Inhibitors / Chimera / Carbonic Anhydrases Limits: Humans Language: En Journal: ChemistryOpen Year: 2021 Document type: Article Affiliation country: Lithuania Country of publication: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Sulfonamides / Carbonic Anhydrase Inhibitors / Chimera / Carbonic Anhydrases Limits: Humans Language: En Journal: ChemistryOpen Year: 2021 Document type: Article Affiliation country: Lithuania Country of publication: Germany