Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which may underlie heterogeneity are the expression of multiple K+ channel subunit genes, alternative splicing and the formation of heteromultimers from different subunits. To examine the molecular basis of regional and cell-specific K+ channel expression in rat brain in situ hybridization techniques were used. The transcript distribution patterns of 11 cloned mammalian K+ channel genes encoding both slow- and fast-inactivating K+ channels from four different gene families were examined at different stages of development. The results show that each subunit-specific messenger RNA (mRNA) is independently expressed and is characterized by an individual ...
We have isolated and characterized a human cDNA (HBK2) that is homologous to novel member (RCK2) of ...
Sixteen different K+ channel subtypes have been cloned from mammalian tissue. Considering their sequ...
Sixteen different K+ channel subtypes have been cloned from mammalian tissue. Considering their sequ...
Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which ma...
An important step towards understanding the molecular basis of the functional diversity of voltage-g...
An important step towards understanding the molecular basis of the functional diversity of voltage-g...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
Previously, we characterized a Shaker-related family of voltage-gated potassium channels (RCK) in ra...
Previously, we characterized a Shaker-related family of voltage-gated potassium channels (RCK) in ra...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
We have isolated and characterized a human cDNA (HBK2) that is homologous to novel member (RCK2) of ...
We have isolated and characterized a human cDNA (HBK2) that is homologous to novel member (RCK2) of ...
Sixteen different K+ channel subtypes have been cloned from mammalian tissue. Considering their sequ...
Sixteen different K+ channel subtypes have been cloned from mammalian tissue. Considering their sequ...
Voltage-gated K+ channels in the mammalian brain are functionally heterogeneous. Mechanisms which ma...
An important step towards understanding the molecular basis of the functional diversity of voltage-g...
An important step towards understanding the molecular basis of the functional diversity of voltage-g...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
Previously, we characterized a Shaker-related family of voltage-gated potassium channels (RCK) in ra...
Previously, we characterized a Shaker-related family of voltage-gated potassium channels (RCK) in ra...
Cloning and sequencing of cDNAs isolated from a rat cortex cDNA library reveals that a gene family e...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
AbstractMammalian central neurons regulate a diverse set of functions by changes in spatial and temp...
We have isolated and characterized a human cDNA (HBK2) that is homologous to novel member (RCK2) of ...
We have isolated and characterized a human cDNA (HBK2) that is homologous to novel member (RCK2) of ...
Sixteen different K+ channel subtypes have been cloned from mammalian tissue. Considering their sequ...
Sixteen different K+ channel subtypes have been cloned from mammalian tissue. Considering their sequ...