Alternative splicing contributes to K+ channel diversity in the mammalian central nervous system.
收藏PubMed Central1991-05-01 更新2026-05-16 收录
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https://pmc.ncbi.nlm.nih.gov/articles/PMC51567/
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资源简介:
In an attempt to define the molecular basis of the functional diversity of K+ channels, we have isolated overlapping rat brain cDNAs that encoded a neuronal delayed rectifier K+ channel, K,4, that is structurally related to the Drosophila Shaw protein. Unlike previously characterized mammalian K+ channel genes, which each contain a single protein-coding exon, K,4 arises from alternative exon usage at a locus that also encodes another mammalian Shaw homolog, NGK2. Thus, the enormous diversity of K+ channels in mammals can be generated not just through gene duplication and divergence but also through alternative splicing of RNA. IMAGES:
提供机构:
National Academy of Sciences
创建时间:
1991-05-01



