Heteromultimerization between different inwardly rectifying (Kir) potassium channel subunits is an important mechanism for the generation of functional diversity. However, little is known about the mechanisms that control this process and that prevent promiscuous interactions in cells that express many different Kir subunits. In this study, we have examined the heteromeric assembly of Kir5.1 with other Kir subunits and have shown that this subunit exhibits a highly selective interaction with members of the Kir4.0 subfamily and does not physically associate with other Kir subunits such as Kir1.1, Kir2.1, and Kir6.2. Furthermore, we have identified regions within the Kir4.1 subunit that appear to govern the specificity of this interaction. Th...
AbstractThe ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characteriz...
AbstractInwardly rectifying potassium channels (Kir), comprising four subunits each with two transme...
Ion channels and pumps help in maintaining different ion gradients across this membrane, thereby cre...
Heteromultimerization between different potassium channel subunits can generate channels with novel ...
The amino-terminal and carboxyl-terminal domains of inwardly rectifying potassium (Kir) channel subu...
Inwardly rectifying K+ channel subunits may form homomeric or heteromeric channels with distinct fun...
Heteromultimerization between different potassium channel subunits can generate channels with novel ...
AbstractThe amino-terminal and carboxy-terminal domains of inwardly rectifying potassium channel (Ki...
The amino-terminal and carboxy-terminal domains of inwardly rectifying potassium channel (Kir) subun...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
The 2TM domain family of K channels are also known as the inward-rectifier K channel family. This fa...
Kir3.1 and Kir3.2 associate to form G-protein-activated, inwardly rectifying K+ channels. To identif...
AbstractWe have identified several cDNAs for the human Kir5.1 subunit of inwardly rectifying K+ chan...
This study investigated cytoplasmic inter-subunit interactions between the Kir6.2 and SUR2A subunits...
AbstractThe ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characteriz...
AbstractInwardly rectifying potassium channels (Kir), comprising four subunits each with two transme...
Ion channels and pumps help in maintaining different ion gradients across this membrane, thereby cre...
Heteromultimerization between different potassium channel subunits can generate channels with novel ...
The amino-terminal and carboxyl-terminal domains of inwardly rectifying potassium (Kir) channel subu...
Inwardly rectifying K+ channel subunits may form homomeric or heteromeric channels with distinct fun...
Heteromultimerization between different potassium channel subunits can generate channels with novel ...
AbstractThe amino-terminal and carboxy-terminal domains of inwardly rectifying potassium channel (Ki...
The amino-terminal and carboxy-terminal domains of inwardly rectifying potassium channel (Kir) subun...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
The 2TM domain family of K channels are also known as the inward-rectifier K channel family. This fa...
Kir3.1 and Kir3.2 associate to form G-protein-activated, inwardly rectifying K+ channels. To identif...
AbstractWe have identified several cDNAs for the human Kir5.1 subunit of inwardly rectifying K+ chan...
This study investigated cytoplasmic inter-subunit interactions between the Kir6.2 and SUR2A subunits...
AbstractThe ROMK1 (Kir 1.1a) channel is formed by a tetrameric complex of subunits, each characteriz...
AbstractInwardly rectifying potassium channels (Kir), comprising four subunits each with two transme...
Ion channels and pumps help in maintaining different ion gradients across this membrane, thereby cre...