| Literature DB >> 29305297 |
Edita Čapkauskaitė1, Audrius Zakšauskas1, Virginijus Ruibys2, Vaida Linkuvienė1, Vaida Paketurytė1, Marius Gedgaudas1, Visvaldas Kairys3, Daumantas Matulis4.
Abstract
The similarity of human carbonic anhydrase (CA) active sites makes it difficult to design selective inhibitors for one or several CA isoforms that are drug targets. Here we synthesize a series of compounds that are based on 5-[2-(benzimidazol-1-yl)acetyl]-2-chloro-benzenesulfonamide (1a) which demonstrated picomolar binding affinity and significant selectivity for CA isoform five A (VA), and explain the structural influence of inhibitor functional groups to the binding affinity and selectivity. A series of chloro-substituted benzenesulfonamides bearing a heterocyclic tail, together with molecular docking, was used to build inhibitors that explore substituent influence on the binding affinity to the CA VA isoform.Entities:
Keywords: 3,4-Dihydro-2H-quinoline; CA inhibitor; Carbonic anhydrase isozyme I, II, III, IV, VA, VB, VI, VII, IX, XII, XIII, and XIV; Docking; Fluorescent thermal shift assay; Imidazole; Indoline; N-Alkylated benzimidazole; Sulfonamide; ThermoFluor®
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Year: 2017 PMID: 29305297 DOI: 10.1016/j.bmc.2017.12.035
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641