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Structure basis of CFTR folding, function and pharmacology

Authors :
Tzyh-Chang Hwang
Ineke Braakman
Peter van der Sluijs
Isabelle Callebaut
Institute of Pharmacology, School of Medicine, National Yang Ming Chiao Tung University, Taiwan
Cellular Protein Chemistry, Bijvoet Centre for Biomolecular Research, Utrecht University
Institut de minéralogie, de physique des matériaux et de cosmochimie (IMPMC)
Muséum national d'Histoire naturelle (MNHN)-Institut de recherche pour le développement [IRD] : UR206-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)
Source :
Journal of Cystic Fibrosis, Journal of Cystic Fibrosis, 2022, ⟨10.1016/j.jcf.2022.09.010⟩
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

International audience; The root cause of cystic fibrosis (CF), the most common life-shortening genetic disease in the Caucasian population, is the loss of function of the CFTR protein, which serves as a phosphorylation-activated, ATP-gated anion channel in numerous epithelia-lining tissues. In the past decade, high-throughput drug screening has made a significant stride in developing highly effective CFTR modulators for the treatment of CF. Meanwhile, structural-biology studies have succeeded in solving the high-resolution structure of CFTR in different conformations. Here, we provide a brief overview of some striking features of CFTR folding, function and pharmacology, in light of its specific structural features within the ABC-transporter superfamily. A particular focus is given to CFTR's first nucleotide-binding domain (NBD1), because folding of NBD1 constitutes a bottleneck in the CFTR protein biogenesis pathway, and ATP binding to this domain plays a unique role in the functional stability of CFTR. Unraveling the molecular basis of CFTR folding, function, and pharmacology would inspire the development of next-generation mutation-specific CFTR modulators.

Details

ISSN :
15691993
Volume :
22
Database :
OpenAIRE
Journal :
Journal of Cystic Fibrosis
Accession number :
edsair.doi.dedup.....3cc78ad332251c42349e84b7d391c71a