Abstract
The cystic fibrosis transmembrane conductance regulator (CFTR) is a chloride ion channel, but its relationship to the primary clinical manifestation of CF, chronic Pseudomonas aeruginosa pulmonary infection, is unclear. We report that CFTR is a cellular receptor for binding, endocytosing, and clearing P. aeruginosa from the normal lung. Murine cells expressing recombinant human wild-type CFTR ingested 30-100 times as many P. aeruginosa as cells lacking CFTR or expressing mutant DeltaF508 CFTR protein. Purified CFTR inhibited ingestion of P. aeruginosa by human airway epithelial cells. The first extracellular domain of CFTR specifically bound to P. aeruginosa and a synthetic peptide of this region inhibited P. aeruginosa internalization in vivo, leading to increased bacterial lung burdens. CFTR clears P. aeruginosa from the lung, indicating a direct connection between mutations in CFTR and the clinical consequences of CF.
MeSH Terms
Animals
Cells, Cultured
Cystic Fibrosis Transmembrane Conductance Regulator/genetics,metabolism
Endocytosis/drug effects
Epithelial Cells/microbiology
Humans
Lung/cytology
Lung Diseases/microbiology
Mice
Peptide Fragments/pharmacology
Protein Binding
Pseudomonas Infections/microbiology
Receptors, Cell Surface/genetics,metabolism
Chemicals
CFTR protein, human
Peptide Fragments
Receptors, Cell Surface
Cystic Fibrosis Transmembrane Conductance Regulator
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Pier G B
Channing Laboratory, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115-5804, USA.
[email protected]
Grout M
Zaidi T S
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