Voltage-dependent K(+) (Kv) currents in macrophages are mainly mediated by Kv1.3, but biophysical properties indicate that the channel composition could be different from that of T-lymphocytes. K(+) currents in mouse bone marrow-derived and Raw-264.7 macrophages are sensitive to Kv1.3 blockers, but unlike T-cells, macrophages express Kv1.5. Because Shaker subunits (Kv1) may form heterotetrameric complexes, we investigated whether Kv1.5 has a function in Kv currents in macrophages. Kv1.3 and Kv1.5 co-localize at the membrane, and half-activation voltages and pharmacology indicate that K(+) currents may be accounted for by various Kv complexes in macrophages. Co-expression of Kv1.3 and Kv1.5 in human embryonic kidney 293 cells showed that the...
[eng] Voltage dependent potassium channels are a group of plasma membrane ion channels with a key ro...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
Surface expression of voltage‐dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Voltage-dependent potassium (K(v)) channels play a pivotal role in the modulation of macrophage phys...
Voltage-dependent potassium (K(v)) channels play a pivotal role in the modulation of macrophage phys...
Voltage-dependent K+ channels (VDPC) are expressed in most mammalian cells and involved in the proli...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
Kv1.3 activity is determined by raft association. In addition to Kv1.3, leukocytes also express Kv1....
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 (...
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
[eng] Voltage dependent potassium channels are a group of plasma membrane ion channels with a key ro...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
Surface expression of voltage‐dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
Voltage-dependent potassium (K(v)) channels play a pivotal role in the modulation of macrophage phys...
Voltage-dependent potassium (K(v)) channels play a pivotal role in the modulation of macrophage phys...
Voltage-dependent K+ channels (VDPC) are expressed in most mammalian cells and involved in the proli...
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
Kv1.3 activity is determined by raft association. In addition to Kv1.3, leukocytes also express Kv1....
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 (...
Surface expression of voltage-dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....
For the last 20 years, knowledge of the physiological role of voltage-dependent potassium channels (...
[eng] Voltage dependent potassium channels are a group of plasma membrane ion channels with a key ro...
Voltage dependent potassium channels are a group of plasma membrane ion channels with a key role in ...
Surface expression of voltage‐dependent K+ channels (Kv) has a pivotal role in leukocyte physiology....