Surface expression of voltage-dependent K(+) channels (Kv) has a pivotal role in leukocyte physiology. Although little is known about the physiological role of lipid rafts, these microdomains concentrate signaling molecules and their ion channel substrates. Kv1.3 associates with Kv1.5 to form functional channels in macrophages. Different isoform stoichiometries lead to distinct heteromeric channels which may be further modulated by targeting the complex to different membrane surface microdomains. Kv1.3 targets to lipid rafts, whereas Kv1.5 localization is under debate. With this in mind, we wanted to study whether heterotetrameric Kv1.5-containing channels target to lipid rafts. While in transfected HEK-293 cells, homo- and heterotetrameric...
The voltage-dependent potassium (Kv) channel Kvβ family was the first identified group of modulators...
Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the inner ...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
Surface expression of voltage-dependent K(+) channels (Kv) has a pivotal role in leukocyte physiolog...
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage‐dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Kv1.3 activity is determined by raft association. In addition to Kv1.3, leukocytes also express Kv1....
[eng] The Kv1.3 voltage-dependent potassium channel plays a crucial role in the immune response part...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The voltage-dependent potassium (Kv) channel Kvβ family was the first identified group of modulators...
Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the inner ...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
Surface expression of voltage-dependent K(+) channels (Kv) has a pivotal role in leukocyte physiolog...
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage‐dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Kv1.3 activity is determined by raft association. In addition to Kv1.3, leukocytes also express Kv1....
[eng] The Kv1.3 voltage-dependent potassium channel plays a crucial role in the immune response part...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The spatial localization of ion channels at the cell surface is crucial for their functional role. M...
The voltage-dependent potassium (Kv) channel Kvβ family was the first identified group of modulators...
Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the inner ...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...