For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (Kv) in the immune system has grown exponentially. Leukocytes express a limited repertoire of Kv channels, which contribute to the membrane potential. These proteins are involved in the immune response and are therefore considered good pharmacological targets. Although there is a clear consensus about the physiological relevance of Kv1.3, the expression and the role of Kv1.5 are controversial. However, recent reports indicate that certain heteromeric Kv1.3/Kv1.5 associations may provide insight on Kv1.5. Here, we summarize what is known about this issue and highlight the role of Kv1.5 partnership interactions that could be responsible for this...
The voltage-dependent potassium channel Kv1.3 plays essential roles in the immune system, participat...
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 physiolog...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
[eng] Voltage dependent potassium channels are a group of plasma membrane ion channels with a key ro...
Voltage-dependent K(+) (Kv) currents in macrophages are mainly mediated by Kv1.3, but biophysical pr...
[eng] Voltage-gated potassium channels are proteins that allow the flux of potassium ions across th...
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...
Voltage-gated potassium channels are proteins that allow the flux of potassium ions across the plasm...
The voltage-dependent potassium channel Kv1.3 plays essential roles in the immune system, participat...
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 physiolog...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
[eng] Voltage dependent potassium channels are a group of plasma membrane ion channels with a key ro...
Voltage-dependent K(+) (Kv) currents in macrophages are mainly mediated by Kv1.3, but biophysical pr...
[eng] Voltage-gated potassium channels are proteins that allow the flux of potassium ions across th...
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...
Voltage-gated potassium channels are proteins that allow the flux of potassium ions across the plasm...
The voltage-dependent potassium channel Kv1.3 plays essential roles in the immune system, participat...
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 physiolog...