The cytoplamsic auxiliary KChIPs modulate surface expression and gating properties of Kv4 channels. Recent co-crystal structure of Kv4.3 N-terminus and KChIP1 reveals a clamping action of the complex in which a single KChIP1 molecule laterally binds two neighboring Kv4.3 N-termini at different locations, thus forming two contact interfaces involved in the protein-protein interaction. In the second interface, it functions to stabilize the tetrameric assembly, but the role it plays in channel trafficking remains elusive. In this study, we examined the effects of KChIP1 on Kv4 protein trafficking in COS-7 cells expressing EGFP-tagged Kv4.3 channels using confocal microscopy. Mutations either in KChIP1 (KChIP1 L39E-Y57A-K61A) or Kv4.3 (Kv4.3 E7...
The Kv1 subfamily of voltage-gated potassium channels (Kv1.1-Kv1.6) is involved in repolarizing the ...
Brain IA and cardiac Ito currents arise from complexes containing Kv4 voltage-gated potassium channe...
Voltage-gated potassium (Kv) channels play important roles in regulating the excitability of myocyte...
KChIP4a shows a high homology with other members of the family of Kv channel-interacting proteins (K...
AbstractKChIP4a shows a high homology with other members of the family of Kv channel-interacting pro...
KChIPs coassemble with pore-forming Kv4 alpha subunits to form a native complex in the brain and hea...
KChIPs coassemble with pore-forming Kv4 α subunits to form a native complex in the brain and heart a...
AbstractKChIP4a shows a high homology with other members of the family of Kv channel-interacting pro...
AbstractFour Kv channel-interacting proteins (KChIP1 through KChIP4) interact directly with the N-te...
The voltage-gated potassium channel Kv4.3 plays a vital role in shaping the timing, frequency, and b...
The rapidly inactivating (A-type) potassium channels regulate membrane excitability that defines the...
AbstractThe family of calcium binding proteins called KChIPs associates with Kv4 family K+ channels ...
AbstractFour Kv channel-interacting proteins (KChIP1 through KChIP4) interact directly with the N-te...
Auxiliary Kv channel-interacting proteins 1-4 (KChIPs1-4) coassemble with pore-forming Kv4 alpha-sub...
The rapidly inactivating (A-type) potassium channels regulate membrane excitability that defines the...
The Kv1 subfamily of voltage-gated potassium channels (Kv1.1-Kv1.6) is involved in repolarizing the ...
Brain IA and cardiac Ito currents arise from complexes containing Kv4 voltage-gated potassium channe...
Voltage-gated potassium (Kv) channels play important roles in regulating the excitability of myocyte...
KChIP4a shows a high homology with other members of the family of Kv channel-interacting proteins (K...
AbstractKChIP4a shows a high homology with other members of the family of Kv channel-interacting pro...
KChIPs coassemble with pore-forming Kv4 alpha subunits to form a native complex in the brain and hea...
KChIPs coassemble with pore-forming Kv4 α subunits to form a native complex in the brain and heart a...
AbstractKChIP4a shows a high homology with other members of the family of Kv channel-interacting pro...
AbstractFour Kv channel-interacting proteins (KChIP1 through KChIP4) interact directly with the N-te...
The voltage-gated potassium channel Kv4.3 plays a vital role in shaping the timing, frequency, and b...
The rapidly inactivating (A-type) potassium channels regulate membrane excitability that defines the...
AbstractThe family of calcium binding proteins called KChIPs associates with Kv4 family K+ channels ...
AbstractFour Kv channel-interacting proteins (KChIP1 through KChIP4) interact directly with the N-te...
Auxiliary Kv channel-interacting proteins 1-4 (KChIPs1-4) coassemble with pore-forming Kv4 alpha-sub...
The rapidly inactivating (A-type) potassium channels regulate membrane excitability that defines the...
The Kv1 subfamily of voltage-gated potassium channels (Kv1.1-Kv1.6) is involved in repolarizing the ...
Brain IA and cardiac Ito currents arise from complexes containing Kv4 voltage-gated potassium channe...
Voltage-gated potassium (Kv) channels play important roles in regulating the excitability of myocyte...