1. The involvement of the cytoplasmic and core regions of K+ channel Kir3.1 and Kir3.2 subunits in determining the cell surface expression and G protein-gated activity of homomeric and heteromeric channel complexes was investigated by heterologous expression of chimeric and wild-type subunits together with the m2 muscarinic receptor in Xenopus oocytes. 2. Co-expression of Kir3.1 and Kir3.2 subunits yielded currents severalfold larger than those elicited by the individual expression of these subunits. Immunofluorescence labelling indicated that Kir3.2 homomeric channels and Kir3.1-Kir3.2 heteromeric channels were expressed at high levels at the cell surface whereas Kir3.1 homomeric complexes were not expressed at the cell surface. Chimeric s...
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
Understanding the mechanisms which regulate trafficking and surface expression of membrane-associate...
The voltage-, time-, and K^+-dependent properties of a G protein-activated inwardly rectifying K^+ c...
Coexpression in Xenopus oocytes of the cloned cardiac inward rectifier subunits Kir 3.1 and Kir 3.4 ...
AbstractCardiac m2 muscarinic acetylcholine receptors reduce heart rate by coupling to heterotrimeri...
Kir3.1 and Kir3.2 associate to form G-protein-activated, inwardly rectifying K+ channels. To identif...
The cytoplasmic domain of inward rectifier K+ (Kir) channels associates with cytoplasmic ligands and...
AbstractG protein-activated inwardly rectifying K+ channel subunits GIRK1 (Kir 3.1), GIRK2 (Kir 3.2)...
AbstractCardiac m2 muscarinic acetylcholine receptors reduce heart rate by coupling to heterotrimeri...
AbstractXenopus oocytes injected with GIRK1 mRNA express inwardly rectifying K+ channels resembling ...
Inwardly rectifying K+ channel subunits may form homomeric or heteromeric channels with distinct fun...
<p>A. Receptors and channels are expressed in <i>Xenopus laevis</i> oocytes by mRNA micro-injection....
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
We have investigated aspects of ion selectivity in K⁺ channels by functional expression of wild-type...
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
Understanding the mechanisms which regulate trafficking and surface expression of membrane-associate...
The voltage-, time-, and K^+-dependent properties of a G protein-activated inwardly rectifying K^+ c...
Coexpression in Xenopus oocytes of the cloned cardiac inward rectifier subunits Kir 3.1 and Kir 3.4 ...
AbstractCardiac m2 muscarinic acetylcholine receptors reduce heart rate by coupling to heterotrimeri...
Kir3.1 and Kir3.2 associate to form G-protein-activated, inwardly rectifying K+ channels. To identif...
The cytoplasmic domain of inward rectifier K+ (Kir) channels associates with cytoplasmic ligands and...
AbstractG protein-activated inwardly rectifying K+ channel subunits GIRK1 (Kir 3.1), GIRK2 (Kir 3.2)...
AbstractCardiac m2 muscarinic acetylcholine receptors reduce heart rate by coupling to heterotrimeri...
AbstractXenopus oocytes injected with GIRK1 mRNA express inwardly rectifying K+ channels resembling ...
Inwardly rectifying K+ channel subunits may form homomeric or heteromeric channels with distinct fun...
<p>A. Receptors and channels are expressed in <i>Xenopus laevis</i> oocytes by mRNA micro-injection....
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
We have investigated aspects of ion selectivity in K⁺ channels by functional expression of wild-type...
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
Second messenger regulation of IRK1 (Kir2.1) inward rectifier K+ channels was investigated in giant ...
Understanding the mechanisms which regulate trafficking and surface expression of membrane-associate...
The voltage-, time-, and K^+-dependent properties of a G protein-activated inwardly rectifying K^+ c...