The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating in activation and proliferation of leukocytes as well as promoting apoptosis in several types of tumor cells. Therefore, Kv1.3 is considered a potential pharmacological target for immunodeficiency and cancer. Different cellular locations of Kv1.3, at the plasma membrane or the mitochondria, could be responsible for such duality. While plasma membrane Kv1.3 facilitates proliferation, the mitochondrial channel modulates apoptotic signaling. Several molecular determinants of Kv1.3 drive the channel to the cell surface, but no information is available about its mitochondrial targeting. Caveolins, which are able to modulate cell survival, partici...
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-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the inner ...
[eng] Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the ...
AbstractMitochondria have been shown to play a pivotal role in apoptotic signalling in various cell ...
The voltage-dependent K+ channel Kv1.3 participates in many physiological events like proliferation ...
The voltage-dependent K+ channel Kv1.3 participates in many physiological events like proliferation ...
AbstractRecent evidence points to the crucial involvement of voltage-gated potassium channels (Kv) i...
Mitochondria have been shown to play a pivotal role in apoptotic signalling in various cell types. W...
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-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating...
Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the inner ...
[eng] Kv1.3 is a voltage-gated potassium channel mainly expressed at the plasma membrane and at the ...
AbstractMitochondria have been shown to play a pivotal role in apoptotic signalling in various cell ...
The voltage-dependent K+ channel Kv1.3 participates in many physiological events like proliferation ...
The voltage-dependent K+ channel Kv1.3 participates in many physiological events like proliferation ...
AbstractRecent evidence points to the crucial involvement of voltage-gated potassium channels (Kv) i...
Mitochondria have been shown to play a pivotal role in apoptotic signalling in various cell types. W...
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...