AbstractWe have investigated the interactions of prototypical PDZ domains with both the C- and N-termini of Kv1.5 and other Kv channels. A combination of in vitro binding and yeast two-hybrid assays unexpectedly showed that PDZ domains derived from PSD95 bind both the C- and N-termini of the channels with comparable avidity. From doubly transfected HEK293 cells, Kv1.5 was found to co-immunoprecipitate with the PDZ protein, irrespective of the presence of the canonical C-terminal PDZ-binding motif in Kv1.5. Imaging analysis of the same HEK cell lines demonstrated that co-localization of Kv1.5 with PSD95 at the cell surface is similarly independent of the canonical PDZ-binding motif. Deletion analysis localized the N-terminal PDZ-binding site...
AbstractIon channels and associated signal transduction cascades are clustered at excitatory synapse...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
Abstract We have investigated the interactions of prototypical PDZ domains with both the C- and N-te...
AbstractThe functional interaction of the voltage-gated potassium channel hKv1.5 with the PDZ domain...
Ion channel synthesis, trafficking and localization within the plasma membrane are highly regulated...
ABSTRACT: Control of surface expression of inwardly rectifying potassium (Kir) channels is important...
AbstractVoltage-gated K+ (Kv) channels are particularly important in the physiology of excitable cel...
AbstractIon channels and PSD-95 are colocalized in specific neuronal subcellular locations by an unk...
AbstractPDZ domains can dimerize or bind to the carboxyl termini of unrelated proteins. Crystallogra...
AbstractThe C-terminal domain of the voltage-gated potassium channel Kv2.1 is shown to have a role i...
ABSTRACT: PDZ domains are modular protein-protein interaction domains that bind to specific C-termin...
SummaryVoltage-activated potassium (Kv) channels contain a central pore domain that is partially sur...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
Voltage-gated potassium channels are primary determinants of cellular excitability in the mammalian ...
AbstractIon channels and associated signal transduction cascades are clustered at excitatory synapse...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
Abstract We have investigated the interactions of prototypical PDZ domains with both the C- and N-te...
AbstractThe functional interaction of the voltage-gated potassium channel hKv1.5 with the PDZ domain...
Ion channel synthesis, trafficking and localization within the plasma membrane are highly regulated...
ABSTRACT: Control of surface expression of inwardly rectifying potassium (Kir) channels is important...
AbstractVoltage-gated K+ (Kv) channels are particularly important in the physiology of excitable cel...
AbstractIon channels and PSD-95 are colocalized in specific neuronal subcellular locations by an unk...
AbstractPDZ domains can dimerize or bind to the carboxyl termini of unrelated proteins. Crystallogra...
AbstractThe C-terminal domain of the voltage-gated potassium channel Kv2.1 is shown to have a role i...
ABSTRACT: PDZ domains are modular protein-protein interaction domains that bind to specific C-termin...
SummaryVoltage-activated potassium (Kv) channels contain a central pore domain that is partially sur...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
Voltage-gated potassium channels are primary determinants of cellular excitability in the mammalian ...
AbstractIon channels and associated signal transduction cascades are clustered at excitatory synapse...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...
The complex anatomy of neurons demands a high degree of functional organization. Therefore, membrane...