Background/Aims: The voltage-gated potassium channel KV11.1 has been originally cloned from the brain and is expressed in a variety of tissues. The role of phosphorylation for channel function is a matter of debate. In this study, we aimed to elucidate the extent and role of protein kinase D mediated phosphorylation. Methods: We employed mass spectrometry, whole-cell patch clamp electrophysiology, confocal microscopy, site-directed mutagenesis, and western blotting. Results: Using brain tissue from rat and mouse, we mapped several phosphorylated KV11.1 residues by LC-MS mass spectrometry and identified protein kinase D (PKD1) as possible regulatory kinase. Co-expression of KV11.1 with PKD1 reduced current amplitudes without altering protein...
AbstractKV10.1 potassium channels are implicated in a variety of cellular processes including cell p...
Protein kinase C (PKC) is an important regulator of phospholipase D1 (PLD1). Currently there is some...
Caspase activity during apoptosis is inhibited by physiological concentrations of intracellular K+. ...
<b><i>Background/Aims:</i></b> The voltage-gated potassium channel K<sub>V</sub>11.1 has been origin...
Protein kinase D (PKD) is a serine/threonine kinase regulated by diacylglycerol signaling pathways w...
Phosphorylation is the most common and abundant posttranslational modification to eukaryotic protein...
Background: The voltage gated K+ channels Kv1.3 and Kv1.5 contribute to the orchestration of cell pr...
Protein kinase D (PKD) is an evolutionarily-conserved family of protein kinases. It has structural, ...
© 2021 by the authors.KV1.5 channel function is modified by different regulatory subunits. KVβ1.3 su...
AbstractProtein kinase D (PKD) regulates the activity of the L-type calcium channel in rat ventricul...
The two-pore domain potassium channel (K2P-channel) THIK-1 has several predicted protein kinase A (P...
1. Kv1.5 is a delayed rectifier-type potassium channel. We have examined the localization of the cha...
Caspase activity during apoptosis is inhibited by physiological concentrations of intracellu-lar K+....
Voltage-gated potassium (Kv) channels regulate membrane excitability and are therefore critical dete...
[eng] Voltage-gated K channels (Kv) is large family of channels that are expressed in both excitabl...
AbstractKV10.1 potassium channels are implicated in a variety of cellular processes including cell p...
Protein kinase C (PKC) is an important regulator of phospholipase D1 (PLD1). Currently there is some...
Caspase activity during apoptosis is inhibited by physiological concentrations of intracellular K+. ...
<b><i>Background/Aims:</i></b> The voltage-gated potassium channel K<sub>V</sub>11.1 has been origin...
Protein kinase D (PKD) is a serine/threonine kinase regulated by diacylglycerol signaling pathways w...
Phosphorylation is the most common and abundant posttranslational modification to eukaryotic protein...
Background: The voltage gated K+ channels Kv1.3 and Kv1.5 contribute to the orchestration of cell pr...
Protein kinase D (PKD) is an evolutionarily-conserved family of protein kinases. It has structural, ...
© 2021 by the authors.KV1.5 channel function is modified by different regulatory subunits. KVβ1.3 su...
AbstractProtein kinase D (PKD) regulates the activity of the L-type calcium channel in rat ventricul...
The two-pore domain potassium channel (K2P-channel) THIK-1 has several predicted protein kinase A (P...
1. Kv1.5 is a delayed rectifier-type potassium channel. We have examined the localization of the cha...
Caspase activity during apoptosis is inhibited by physiological concentrations of intracellu-lar K+....
Voltage-gated potassium (Kv) channels regulate membrane excitability and are therefore critical dete...
[eng] Voltage-gated K channels (Kv) is large family of channels that are expressed in both excitabl...
AbstractKV10.1 potassium channels are implicated in a variety of cellular processes including cell p...
Protein kinase C (PKC) is an important regulator of phospholipase D1 (PLD1). Currently there is some...
Caspase activity during apoptosis is inhibited by physiological concentrations of intracellular K+. ...