Three brain sodium channel α-subunit genes are clustered on the proximal segment of mouse chromosome 2
pmid: 1679748
Three brain sodium channel α-subunit genes are clustered on the proximal segment of mouse chromosome 2
We have used long-range physical mapping and restriction fragment length polymorphisms between two mouse species to determine the chromosomal organization and location of the genes encoding three distinct isoforms of the alpha-subunit of the brain sodium channel. Physical mapping by pulsed-field gel electrophoresis has established that Scn2a and Scn3a (genes encoding type II and type III sodium channel alpha-subunit isoforms) are physically linked and are separated by a maximum distance of 600 kb. The segregation of restriction fragment length variations in backcross progeny of a Mus musculus and Mus spretus mating indicates that Scn 1 a (gene encoding the type I sodium channel alpha subunit) and Scn2a are tightly linked and are separated by a distance of 0.7 cM. Linkage analysis in backcross and recombinant inbred (BXD and AKXD) strains of mice localized the three sodium channel genes to the proximal segment of mouse chromosome 2 and suggested the probable gene order centromere-Hc-Neb-Pmv7-Scn2a/Scn3a-Scn1a-Mpmv 14. These results indicate that the three isoforms of the brain sodium channel alpha-subunit are encoded by three distinct genes that share a common ancestral origin.
- Yale University United States
- Pennsylvania State University United States
- McGill University Canada
- McGill University Health Centre Canada
- Montreal General Hospital Canada
Brain Chemistry, Genetic Markers, Recombination, Genetic, Base Sequence, Genetic Linkage, Molecular Sequence Data, Chromosome Mapping, Muscular Dystrophy, Animal, Sodium Channels, Muridae, Mice, Genes, Species Specificity, Animals, Abnormalities, Multiple, Crosses, Genetic, Phylogeny, Polymorphism, Restriction Fragment Length
Brain Chemistry, Genetic Markers, Recombination, Genetic, Base Sequence, Genetic Linkage, Molecular Sequence Data, Chromosome Mapping, Muscular Dystrophy, Animal, Sodium Channels, Muridae, Mice, Genes, Species Specificity, Animals, Abnormalities, Multiple, Crosses, Genetic, Phylogeny, Polymorphism, Restriction Fragment Length
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