Kcnma1_v1 (potassium calcium-activated channel subfamily M alpha 1, variant 1) - Rat Genome Database

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Gene: Kcnma1_v1 (potassium calcium-activated channel subfamily M alpha 1, variant 1) Rattus norvegicus
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Symbol: Kcnma1_v1
Name: potassium calcium-activated channel subfamily M alpha 1, variant 1
RGD ID: 728882
Description: variant of large conductance calcium-activated potassium channel (Kcnma1)
Type: splice  of Kcnma1  
Previously known as: potassium large conductance calcium-activated channel, subfamily M, alpha member 1, varient 1
Latest Assembly: mRatBN7.2 - mRatBN7.2 Assembly
Position:
Rat AssemblyChrPosition (strand)SourceGenome Browsers
JBrowseNCBIUCSCEnsembl
RGSC_v3.115322,288 - 950,273 (+)NCBI
Cytogenetic Map15 NCBI


References

References - curated
# Reference Title Reference Citation
1. Opposing actions of adrenal androgens and glucocorticoids on alternative splicing of Slo potassium channels in bovine chromaffin cells. Lai GJ and McCobb DP, Proc Natl Acad Sci U S A 2002 May 28;99(11):7722-7.
2. A novel MaxiK splice variant exhibits dominant-negative properties for surface expression. Zarei MM, etal., J Biol Chem. 2001 May 11;276(19):16232-9. Epub 2001 Feb 9.

Genomics


Expression


Sequence

Nucleotide Sequences
RefSeq Transcripts NM_031828 (Get FASTA)   NCBI Sequence Viewer   Search GEO for Microarray Profiles


Additional Information


Nomenclature History
Date Current Symbol Current Name Previous Symbol Previous Name Description Reference Status
2009-09-02 Kcnma1_v1  potassium large conductance calcium-activated channel, subfamily M, alpha member 1, variant 1  Kcnma1_v1  potassium large conductance calcium-activated channel, subfamily M, alpha member 1, varient 1  Nomenclature updated to reflect human and mouse nomenclature 1299863 APPROVED
2004-12-14 Kcnma1_v1  potassium large conductance calcium-activated channel, subfamily M, alpha member 1, varient 1    potassium large conductance calcium-activated channel, subfamily M, alpha member 1, variant 1  Name updated 1299863 APPROVED

RGD Curation Notes
Note Type Note Reference
gene_process increases repetitive firing by minimizing action potential duration and speeding recovery of sodium channels from inactivation during the brief after hyperpolarization 625439