Cystic fibrosis transport regulator is a cAMP-dependent chloride channel protein. Normal (non cystic fibrosis) human epidermis stained positive for cystic fibrosis transport regulator as densely as did the eccrine sweat gland when three monoclonal antibodies for R (regulatory) and C (C-terminus) domains of cystic fibrosis transport regulator were used. All the layers of the epidermis took up staining uniformly. A peptide for C-epitope completely blocked the staining with monoclonal antibodies for C. Nested reverse transcription polymerase chain reaction of freshly isolated human epidermal fragments and the eccrine sweat glands amplified the cystic fibrosis transport regulator mRNA sequence derived from exons 13 and 14 to comparable extents....
Because the defect in Cl- secretion exhibited by cystic fibrosis (CF) epithelia reflects regulatory ...
Recent human clinical trials results demonstrated successful treatment for certain genetic forms of ...
AbstractStudies on CFTR protein expression and localization in native tissues or in primary cultures...
Cystic fibrosis transport regulator is a cAMP-dependent chloride channel protein. Normal (non cystic...
Previous studies in native tissues have produced conflicting data on the localization and metabolic ...
Previous studies in native tissues have produced conflicting data on the localization and metabolic ...
Affinity-purified polyclonal antibodies, raised against two synthetic peptides corresponding to the ...
International audienceBackground: A high proportion of patients with Cystic Fibrosis (CF) also prese...
Salt and fluid absorption and secretion are two processes that are fundamental to epithelial functio...
The cystic fibrosis conductance regulator CFTR gene is found on chromosome 7 (Kerem et al., 1989; Ri...
Cystic fibrosis transmembrane conductance regulator (CFTR) is a protein associated with the lethal g...
The isolation of the gene responsible for the Cl- ion transport defect in cystic fibrosis (CF) has p...
Salt and fluid absorption is a shared function of many of the body’s epithelia, but its use is highl...
We developed an epithelium-specific, inducible cystic fibrosis transmembrane conductance regulator (...
Because the defect in Cl- secretion exhibited by cystic fibrosis (CF) epithelia reflects the regulat...
Because the defect in Cl- secretion exhibited by cystic fibrosis (CF) epithelia reflects regulatory ...
Recent human clinical trials results demonstrated successful treatment for certain genetic forms of ...
AbstractStudies on CFTR protein expression and localization in native tissues or in primary cultures...
Cystic fibrosis transport regulator is a cAMP-dependent chloride channel protein. Normal (non cystic...
Previous studies in native tissues have produced conflicting data on the localization and metabolic ...
Previous studies in native tissues have produced conflicting data on the localization and metabolic ...
Affinity-purified polyclonal antibodies, raised against two synthetic peptides corresponding to the ...
International audienceBackground: A high proportion of patients with Cystic Fibrosis (CF) also prese...
Salt and fluid absorption and secretion are two processes that are fundamental to epithelial functio...
The cystic fibrosis conductance regulator CFTR gene is found on chromosome 7 (Kerem et al., 1989; Ri...
Cystic fibrosis transmembrane conductance regulator (CFTR) is a protein associated with the lethal g...
The isolation of the gene responsible for the Cl- ion transport defect in cystic fibrosis (CF) has p...
Salt and fluid absorption is a shared function of many of the body’s epithelia, but its use is highl...
We developed an epithelium-specific, inducible cystic fibrosis transmembrane conductance regulator (...
Because the defect in Cl- secretion exhibited by cystic fibrosis (CF) epithelia reflects the regulat...
Because the defect in Cl- secretion exhibited by cystic fibrosis (CF) epithelia reflects regulatory ...
Recent human clinical trials results demonstrated successful treatment for certain genetic forms of ...
AbstractStudies on CFTR protein expression and localization in native tissues or in primary cultures...