AbstractThe ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characterized by cytoplasmic N- and C-termini and a core region of two transmembrane helices flanking a pore-forming segment. To delineate the general regions mediating the assembly of ROMK1 subunits we constructed epitope-tagged N-terminal, C-terminal, and transmembrane segment deletion mutants. Nonfunctional subunits with N-terminal, core region, and C-terminal deletions had dominant negative effects when coexpressed with wild-type ROMK1 subunits in Xenopus oocytes. In contrast, coexpression of these nonfunctional subunits with Kv 2.1 (DRK1) did not suppress Kv 2.1 currents in control oocytes. Interactions between epitope-tagged mutant and wild-type R...
AbstractKv2.1 is a voltage-gated potassium (Kv) channel that generates delayed rectifier currents in...
Functional heterogeneity of ROMK mutations linked to hyperprostaglandin E syndrome.BackgroundThe ren...
We have investigated aspects of ion selectivity in K⁺ channels by functional expression of wild-type...
AbstractThe ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characteriz...
AbstractPossible heteromultimer formation between Kv- and Kir-type K+ channels was investigated, in ...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
Inwardly rectifying K+ channel subunits may form homomeric or heteromeric channels with distinct fun...
The cytoplasmic domain of inward rectifier K^+ (Kir) channels associates with cytoplasmic ligands an...
1. The involvement of the cytoplasmic and core regions of K+ channel Kir3.1 and Kir3.2 subunits in d...
K+ channel function is regulated through the assembly of channel subunit isoforms into either homo- ...
Heteromultimerization between different inwardly rectifying (Kir) potassium channel subunits is an i...
Kir3.1 and Kir3.2 associate to form G-protein-activated, inwardly rectifying K+ channels. To identif...
AbstractWe have cloned the human genes encoding the inwardly rectifying K+ (Kir) channel subunits, K...
The cytoplasmic domain of inward rectifier K+ (Kir) channels associates with cytoplasmic ligands and...
AbstractInwardly rectifying potassium channels (Kir), comprising four subunits each with two transme...
AbstractKv2.1 is a voltage-gated potassium (Kv) channel that generates delayed rectifier currents in...
Functional heterogeneity of ROMK mutations linked to hyperprostaglandin E syndrome.BackgroundThe ren...
We have investigated aspects of ion selectivity in K⁺ channels by functional expression of wild-type...
AbstractThe ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characteriz...
AbstractPossible heteromultimer formation between Kv- and Kir-type K+ channels was investigated, in ...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
Inwardly rectifying K+ channel subunits may form homomeric or heteromeric channels with distinct fun...
The cytoplasmic domain of inward rectifier K^+ (Kir) channels associates with cytoplasmic ligands an...
1. The involvement of the cytoplasmic and core regions of K+ channel Kir3.1 and Kir3.2 subunits in d...
K+ channel function is regulated through the assembly of channel subunit isoforms into either homo- ...
Heteromultimerization between different inwardly rectifying (Kir) potassium channel subunits is an i...
Kir3.1 and Kir3.2 associate to form G-protein-activated, inwardly rectifying K+ channels. To identif...
AbstractWe have cloned the human genes encoding the inwardly rectifying K+ (Kir) channel subunits, K...
The cytoplasmic domain of inward rectifier K+ (Kir) channels associates with cytoplasmic ligands and...
AbstractInwardly rectifying potassium channels (Kir), comprising four subunits each with two transme...
AbstractKv2.1 is a voltage-gated potassium (Kv) channel that generates delayed rectifier currents in...
Functional heterogeneity of ROMK mutations linked to hyperprostaglandin E syndrome.BackgroundThe ren...
We have investigated aspects of ion selectivity in K⁺ channels by functional expression of wild-type...