| Literature DB >> 33652850 |
Virginia Spanò1, Marilia Barreca1, Vincenzo Cilibrasi1, Michele Genovese2, Mario Renda2, Alessandra Montalbano1, Luis Juan Vicente Galietta2,3, Paola Barraja1.
Abstract
Cystic fibrosis (CF) is a genetic disease caused by mutations that impair the function of the CFTR chloride channel. The most frequent mutation, F508del, causes misfolding and premature degradation of CFTR protein. This defect can be overcome with pharmacological agents named "correctors". So far, at least three different classes of correctors have been identified based on the additive/synergistic effects that are obtained when compounds of different classes are combined together. The development of class 2 correctors has lagged behind that of compounds belonging to the other classes. It was shown that the efficacy of the prototypical class 2 corrector, the bithiazole corr-4a, could be improved by generating conformationally-locked bithiazoles. In the present study, we investigated the effect of tricyclic pyrrolothiazoles as analogues of constrained bithiazoles. Thirty-five compounds were tested using the functional assay based on the halide-sensitive yellow fluorescent protein (HS-YFP) that measured CFTR activity. One compound, having a six atom carbocyle central ring in the tricyclic pyrrolothiazole system and bearing a pivalamide group at the thiazole moiety and a 5-chloro-2-methoxyphenyl carboxamide at the pyrrole ring, significantly increased F508del-CFTR activity. This compound could lead to the synthesis of a novel class of CFTR correctors.Entities:
Keywords: CFTR; CFTR corrector; CFTR potentiator; F508del-CFTR; cystic fibrosis
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Year: 2021 PMID: 33652850 PMCID: PMC7956813 DOI: 10.3390/molecules26051275
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411