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CACNA1A

calcium voltage-gated channel subunit alpha1 A

19p13.13
Also known as: APCA, BI, CACNL1A4, CAV2.1, DEE42, EA2, EIEE42, FHM, HPCA, MHP, MHP1, SCA6
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Gene Summary

RefSeq / NCBI

Voltage-dependent calcium channels mediate the entry of calcium ions into excitable cells, and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, and gene expression. Calcium channels are multisubunit complexes composed of alpha-1, beta, alpha-2/delta, and gamma subunits. The channel activity is directed by the pore-forming alpha-1 subunit, whereas, the others act as auxiliary subunits regulating this activity. The distinctive properties of the calcium channel types are related primarily to the expression of a variety of alpha-1 isoforms, alpha-1A, B, C, D, E, and S. This gene encodes the alpha-1A subunit, which is predominantly expressed in neuronal tissue. Mutations in this gene are associated with 2 neurologic disorders, familial hemiplegic migraine and episodic ataxia 2. This gene also exhibits polymorphic variation due to (CAG)n-repeats. Multiple transcript variants encoding different isoforms have been found for this gene. In one set of transcript variants, the (CAG)n-repeats occur in the 3' UTR, and are not associated with any disease. But in another set of variants, an insertion extends the coding region to include the (CAG)n-repeats which encode a polyglutamine tract. Expansion of the (CAG)n-repeats from the normal 4-18 to 21-33 in the coding region is associated with spinocerebellar ataxia 6. [provided by RefSeq, Jul 2016]

External Resources

WUSTL Neuromuscular
Washington University Disease Center
ClinGen
Clinical Genome Resource
G2P
Gene-to-Phenotype (EBI)
GeneReviews
NCBI Expert-Authored Reviews
NCBI Gene
National Center for Biotechnology Information
PubMed
Biomedical Literature
UniProt
Universal Protein Resource
DECIPHER
DatabasE of genomiC varIation and Phenotype in Humans

Gene data compiled from the Washington University Neuromuscular Disease Center, NCBI Gene, and OMIM. For clinical use, always refer to primary sources.