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Distinct calcium channels are generated by alternative splicing and are differentially expressed in the mammalian CNS

NeuronPublished 1 July 1991Open access
Terry P. Snutch, W.Jeffrey Tomlinson, John P. Leonard, Mary Gilbert
Citations367
SJR quartileQ1
SJR score6.75
SNIP2.95
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TL;DR

It is shown that rbC-I and r bC-II transcripts are generated by alternative splicing and that they are differentially expressed in the rat CNS.

Abstract

A number of pharmacologically and electrophysiologically distinct voltage-dependent Ca2+ channels have been identified in mammalian neurons. Two rat brain Ca2+ channel alpha 1 subunits (rbC-I and rbC-II) have been isolated by molecular cloning and shown to be highly related (95%) to the cardiac dihydropyridine-sensitive Ca2+ channel. The rbC-II protein is distinct from rbC-I in that it contains a 3 amino acid insert in the putative cytoplasmic loop between domains II and III and a 28 amino acid substitution corresponding to the third transmembrane segment (S3) of the fourth domain. We show that rbC-I and rbC-II transcripts are generated by alternative splicing and that they are differentially expressed in the rat CNS.

Keywords

MedicineNeuroscienceBiochemistry, Genetics and Molecular Biology