| Literature DB >> 31476557 |
Stanislav Kalinin1, Alessio Nocentini2, Alexander Kovalenko1, Vladimir Sharoyko1, Alessandro Bonardi2, Andrea Angeli3, Paola Gratteri2, Tatiana B Tennikova1, Claudiu T Supuran4, Mikhail Krasavin5.
Abstract
By exploiting the power of multicomponent chemistry, a relatively small, diverse set of primary sulfonamides was synthesized and screened against a panel of human carbonic anhydrases to reveal a low-nanomolar, albeit non-selective hCA IV lead inhibitor. Investigation of the docking poses of this compound identified a hydrophilic pocket unique to hCA IV and conveniently positioned near the carboxylate functionality of the initial lead. Various residues capable of forming hydrogen bonds as well as salt bridges were placed in this pocket via a carboxamides linkage, which led to drastic improvement of potency and selectivity towards hCA IV. This improvement of the desired inhibitory profile was rationalized by the new contacts as had been envisioned. These new tool compounds were shown to possess selective, dose-dependent cytotoxicity against human glioma T98G cell line. The latter showed a substantially increased hCA IV mRNA expression under hypoxic conditions.Entities:
Keywords: Cancer cells; Carbonic anhydrase; Castagnoli-cushman reaction; Hypoxic environment; In silico docking; Isoform-selective inhibitors; Periphery groups; Primary sulfonamides; Scaffold; Seed SAR; Subnanomolar inhibition
Year: 2019 PMID: 31476557 DOI: 10.1016/j.ejmech.2019.111642
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514