Ion transport is crucial for cell volume regulation by compensating variations in extracellular tonicity, playing an important role in maintaining the structural integrity and intracellular milieu in cells. These functions require a dynamic, spatio-temporally coordinated regulation of ion transport, which occurs in cells by two mechanisms: first, the amount of channel or cotransporter inserted into the plasma membrane (PM) from a pool of endosomal storage vesicles, and second, the ion transport activity regulated by post-translational modifications such as phosphorylation of channel or transporter proteins. Previous results from the host laboratory showed that phosphorylation by spleen tyrosine kinase (SYK) of Tyr512 in the NBD1 domain reg...
This review focuses on a newly discovered interaction between protein kinases involved in cellular e...
The regulatory domain (R domain) of the cystic fibrosis transmembrane conductance regulator (CFTR) i...
SummaryModulation of intracellular chloride concentration ([Cl−]i) plays a fundamental role in cell ...
Ion transport is crucial for cell volume regulation by compensating variations in extracellular toni...
Mutations in the CFTR gene cause the recessive genetic disease Cystic Fibrosis, where the chloride t...
Introduction: Cellular chloride transport has a fundamental role in cell volume regulation and memb...
Three disease-related chloride transport proteins, CFTR (in cystic fibrosis (CF) or chronic obstruc...
In a recent study we reported the regulation of the chloride channel CFTR (Cystic Fibrosis Transmemb...
Introduction: Tumor cells require cellular chloride and potassium transport to adapt to a changing m...
Arterial hypertension affects one third of the Western population and constitutes a remarkable risk ...
Protein kinase Syk was recently found to phosphorylate a specific tyrosine residue in three distinc...
A considerable body of evidence indicates that the intracellular chloride concentration ([Cl-](i)) i...
Members of the WNK (with-no-lysine [K]) subfamily of protein kinases regulate various ion channels i...
Members of the WNK (with-no-lysine [K]) subfamily of protein kinases regulate various ion channels i...
Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) is a member of the ATP binding cassette (...
This review focuses on a newly discovered interaction between protein kinases involved in cellular e...
The regulatory domain (R domain) of the cystic fibrosis transmembrane conductance regulator (CFTR) i...
SummaryModulation of intracellular chloride concentration ([Cl−]i) plays a fundamental role in cell ...
Ion transport is crucial for cell volume regulation by compensating variations in extracellular toni...
Mutations in the CFTR gene cause the recessive genetic disease Cystic Fibrosis, where the chloride t...
Introduction: Cellular chloride transport has a fundamental role in cell volume regulation and memb...
Three disease-related chloride transport proteins, CFTR (in cystic fibrosis (CF) or chronic obstruc...
In a recent study we reported the regulation of the chloride channel CFTR (Cystic Fibrosis Transmemb...
Introduction: Tumor cells require cellular chloride and potassium transport to adapt to a changing m...
Arterial hypertension affects one third of the Western population and constitutes a remarkable risk ...
Protein kinase Syk was recently found to phosphorylate a specific tyrosine residue in three distinc...
A considerable body of evidence indicates that the intracellular chloride concentration ([Cl-](i)) i...
Members of the WNK (with-no-lysine [K]) subfamily of protein kinases regulate various ion channels i...
Members of the WNK (with-no-lysine [K]) subfamily of protein kinases regulate various ion channels i...
Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) is a member of the ATP binding cassette (...
This review focuses on a newly discovered interaction between protein kinases involved in cellular e...
The regulatory domain (R domain) of the cystic fibrosis transmembrane conductance regulator (CFTR) i...
SummaryModulation of intracellular chloride concentration ([Cl−]i) plays a fundamental role in cell ...