AbstractAlternative splicing of the Shaker (Sh) locus of Drosophila generates several transcripts with divergent 5′ and 3′ domains that produce kinetically distinct K+ currents in Xenopus oocytes. Although suggestive that alternative splicing may be involved in generating K+ channel diversity, clear tissue-specific differences in the distribution of particular Sh gene products have not been demonstrated. Using IacZ as a reporter gene for accurate splicing of variable Sh 3′ domains, we observe differences in β-galactosidase expression patterns in transgenic animals that indicate both temporal and spatial regulation of 3′ splice choice. The differences in 3′ splice choice can account for variation in recovery kinetics of Sh-encoded K+ current...
The Shaker complex (ShC) spans over 350 kb in the 16F region of the X chromosome. It can be dissecte...
SummaryIon channel gene expression can vary substantially among neurons of a given type, even though...
AbstractSubcellular clustering of ion channels critically affects neuronal function. Coexpression of...
AbstractAlternative splicing of the Shaker (Sh) locus of Drosophila generates several transcripts wi...
A-type K+ currents are expressed in Xenopus oocytes injected with in vitro-synthesized transcripts f...
Journal ArticleWe have cloned cDNAs for the shaker potassium channel gene from the spiny lobster Pan...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
BK-type calcium-activated potassium channels are large conductance channels that respond to changes ...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
We examined the role of the ether a go-go (eag) gene in modulation of K+ currents and the possibilit...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
The Shaker complex (ShC) spans over 350 kb in the 16F region of the X chromosome. It can be dissecte...
The Shaker complex (ShC) spans over 350 kb in the 16F region of the X chromosome. It can be dissecte...
SummaryIon channel gene expression can vary substantially among neurons of a given type, even though...
AbstractSubcellular clustering of ion channels critically affects neuronal function. Coexpression of...
AbstractAlternative splicing of the Shaker (Sh) locus of Drosophila generates several transcripts wi...
A-type K+ currents are expressed in Xenopus oocytes injected with in vitro-synthesized transcripts f...
Journal ArticleWe have cloned cDNAs for the shaker potassium channel gene from the spiny lobster Pan...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
K+ channels are known through electrophysiology and pharmacology to be an exceptionally diverse grou...
BK-type calcium-activated potassium channels are large conductance channels that respond to changes ...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
We examined the role of the ether a go-go (eag) gene in modulation of K+ currents and the possibilit...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
The Shaker complex (ShC) spans over 350 kb in the 16F region of the X chromosome. It can be dissecte...
The Shaker complex (ShC) spans over 350 kb in the 16F region of the X chromosome. It can be dissecte...
SummaryIon channel gene expression can vary substantially among neurons of a given type, even though...
AbstractSubcellular clustering of ion channels critically affects neuronal function. Coexpression of...