Background Mistrafficking of CFTR protein caused by F508del, the most frequent mutation in cystic fibrosis (CF), can be corrected by cell incubation at low temperature, an effect that may be mediated by altered expression of proteostasis genes. Methods To identify small molecules mimicking low temperature, we compared gene expression profiles of cells kept at 27 °C with those previously generated from more than 1300 compounds. The resulting candidates were tested with a functional assay on a bronchial epithelial cell line. Results We found that anti-inflammatory glucocorticoids, such as mometasone, budesonide, and fluticasone, increased mutant CFTR function. However, this activity was not confirmed in primary bronchial epithelial cells. Actually, glucocorticoids enhanced Na+ absorption, an effect that could further impair mucociliary clearance in CF airways. Conclusions Our results suggest that rescue of F508del-CFTR by low temperature cannot be easily mimicked by small molecules and that compounds with closer transcriptional and functional effects need to be found.

Evaluation of a systems biology approach to identify pharmacological correctors of the mutant CFTR chloride channel

Napolitano F.;
2016-01-01

Abstract

Background Mistrafficking of CFTR protein caused by F508del, the most frequent mutation in cystic fibrosis (CF), can be corrected by cell incubation at low temperature, an effect that may be mediated by altered expression of proteostasis genes. Methods To identify small molecules mimicking low temperature, we compared gene expression profiles of cells kept at 27 °C with those previously generated from more than 1300 compounds. The resulting candidates were tested with a functional assay on a bronchial epithelial cell line. Results We found that anti-inflammatory glucocorticoids, such as mometasone, budesonide, and fluticasone, increased mutant CFTR function. However, this activity was not confirmed in primary bronchial epithelial cells. Actually, glucocorticoids enhanced Na+ absorption, an effect that could further impair mucociliary clearance in CF airways. Conclusions Our results suggest that rescue of F508del-CFTR by low temperature cannot be easily mimicked by small molecules and that compounds with closer transcriptional and functional effects need to be found.
2016
CFTR
Chloride channel
Corrector
F508del
Systems biology
Bronchi
Chloride Channel Agonists
Chloride Channels
Drug Repositioning
Epithelial Cells
Humans
Mucociliary Clearance
Mutant Proteins
Mutation
Systems Biology
Transcriptome
Cold Temperature
Cystic Fibrosis
Cystic Fibrosis Transmembrane Conductance Regulator
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12070/53587
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