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PMID: 9922375 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S. Review

Structure and function of the CFTR chloride channel.

Physiological reviews ·Vol. 79 ·No. 1 Suppl ·1999-01-00 ·Pages S23-45

Sheppard DN, Welsh MJ

Abstract

Structure and Function of the CFTR Chloride Channel. Physiol. Rev. 79, Suppl.: S23-S45, 1999. - The cystic fibrosis transmembrane conductance regulator (CFTR) is a unique member of the ABC transporter family that forms a novel Cl- channel. It is located predominantly in the apical membrane of epithelia where it mediates transepithelial salt and liquid movement. Dysfunction of CFTR causes the genetic disease cystic fibrosis. The CFTR is composed of five domains: two membrane-spanning domains (MSDs), two nucleotide-binding domains (NBDs), and a regulatory (R) domain. Here we review the structure and function of this unique channel, with a focus on how the various domains contribute to channel function. The MSDs form the channel pore, phosphorylation of the R domain determines channel activity, and ATP hydrolysis by the NBDs controls channel gating. Current knowledge of CFTR structure and function may help us understand better its mechanism of action, its role in electrolyte transport, its dysfunction in cystic fibrosis, and its relationship to other ABC transporters.

MeSH Terms
ATP-Binding Cassette Transporters/metabolism Adenosine Triphosphate/metabolism Amino Acid Sequence Animals Cystic Fibrosis Transmembrane Conductance Regulator/chemistry,metabolism Humans Hydrolysis Ion Channel Gating Phosphorylation Structure-Activity Relationship
Chemicals
ATP-Binding Cassette Transporters CFTR protein, human Cystic Fibrosis Transmembrane Conductance Regulator Adenosine Triphosphate
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sheppard D N
Human Genetics Unit, Department of Medicine, University of Edinburgh, Molecular Medicine Centre, Western General Hospital, Edinburgh, United Kingdom.
Welsh M J
Article Info
Journal
Physiological reviews
Abbr.
Physiol Rev
ISSN
0031-9333
Published
1999-01-00
Pages
S23-45
Language
English
Region
United States
NLM ID
0231714
Subset
IM
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