| Literature DB >> 18180365 |
Abstract
Voltage-gated sodium (Na(v)) channels in cardiomyocytes are localized in specialized membrane domains that optimize their functions in propagating action potentials across cell junctions and in stimulating voltage-gated calcium channels located in T tubules. Mutation of the ankyrin-binding site of Na(v)1.5, the principal Na(v) channel in the heart, was previously known to cause cardiac arrhythmia and the retention of Na(v)1.5 in an intracellular compartment in cardiomyocytes. Conclusive evidence is now provided that direct interaction between Na(v)1.5 and ankyrin-G is necessary for the expression of Na(v)1.5 at the cardiomyocyte cell surface.Entities:
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Year: 2008 PMID: 18180365 PMCID: PMC2213601 DOI: 10.1083/jcb.200712098
Source DB: PubMed Journal: J Cell Biol ISSN: 0021-9525 Impact factor: 10.539
Figure 1.Schematic model depicting the association of Na Evidence for this scheme is that Nav1.5, the predominant Nav channel in the heart, binds to ankyrin-G, requires ankyrin-G for cell surface expression, and, at steady state, colocalizes with ankyrin-G.