The Kv2 family of voltage-gated potassium channel α subunits, comprising Kv2.1 and Kv2.2, mediate the bulk of the neuronal delayed rectifier K(+) current in many mammalian central neurons. Kv2.1 exhibits robust expression across many neuron types and is unique in its conditional role in modulating intrinsic excitability through changes in its phosphorylation state, which affect Kv2.1 expression, localization, and function. Much less is known of the highly related Kv2.2 subunit, especially in forebrain neurons. Here, through combined use of cortical layer markers and transgenic mouse lines, we show that Kv2.1 and Kv2.2 are localized to functionally distinct cortical cell types. Kv2.1 expression is consistently high throughout all cortical la...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...
International audienceThe CA1 region of the hippocampus plays a critical role in spatial and context...
International audienceThe CA1 region of the hippocampus plays a critical role in spatial and context...
The CA1 region of the hippocampus plays a critical role in spatial and contextual memory, and has we...
Kv3.1 and Kv3.2 K+ channel proteins form similar voltage-gated K+ channels with unusual properties, ...
Kv3.1 and Kv3.2 K(+) channel proteins form similar voltage-gated K(+) channels with unusual properti...
open access articleDiverse classes of voltage-gated potassium channels (Kv) are integral to the vari...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
The rapidly activating and inactivating voltage-gated K(+) (Kv) current, I(A), is broadly expressed ...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...
International audienceThe CA1 region of the hippocampus plays a critical role in spatial and context...
International audienceThe CA1 region of the hippocampus plays a critical role in spatial and context...
The CA1 region of the hippocampus plays a critical role in spatial and contextual memory, and has we...
Kv3.1 and Kv3.2 K+ channel proteins form similar voltage-gated K+ channels with unusual properties, ...
Kv3.1 and Kv3.2 K(+) channel proteins form similar voltage-gated K(+) channels with unusual properti...
open access articleDiverse classes of voltage-gated potassium channels (Kv) are integral to the vari...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
Dendritic excitability is modulated by the highly variable spatial and temporal expression pattern o...
The rapidly activating and inactivating voltage-gated K(+) (Kv) current, I(A), is broadly expressed ...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
The Kv2.1 delayed rectifier potassium channel exhibits high-level expression in both principal and i...
Kv2.1 channel subunits are widely expressed in the mammalian CNS. These channels underlie delayed re...