Imbert et al., “Cloning of the gene for spinocerebellar ataxia 2 reveals a locus with high sensitivity to expanded CAG/glutamine repeats”, Nature Genetics, (1996), vol. 14, pp. 285-291.* |
Imbert et al., “Cloning of the gene for spinocerebellar ataxia 2 reveals a locus with high sensitivity to expanded CAG/glutamine repeats”, Nature Genetics, vol. 14, pp. 285-291, Nov. 1996.* |
Stratagene catalog, p. 39, 1988.* |
Imbert et al., “Cloning of the gene for the spinocerebellar . . . ”, Nature Genetics, vol. 14, pp. 258-291, Nov. 1996.* |
Kohler et al., Small Conductance, Calcium-Activated Potassium Channels from Mammalian Brain. Science. Sep. 20, 1996, vol. 273, pp. 1709-1714, expecially figures 1A and 1C on p. 1710. |
Georges Imbert, Cloning of the gene for spinocerebellar ataxia 2 reveals a locus with high sensitivity to expanded CAG/glutamine repeats, Nov. 1996, Nature Genetics vol. 14 No. 3., pp. 283-291. |
M. Kohler, Small-Conductance, Calcium-Activated Potassium Channels from Mammalian Brain, Sep. 1996, Science, vol. 273 pp. 1625-1764. |
William J. Joiner, hSK4, a member of a novel subfamily of calcium-activated potassium channels, Sep. 1997, Neurobiology, vol. 94 pp. 11013-11018. |
Takahiro M. Ishii, A human intermediate conductance calcium-activated potassium channel, Oct. 1997, Neurobiology, vol. 94 pp. 11651-11656. |
Gillian P. Bates, Tansgenic mouse models of neurodegenerative disease caused by CAG/polyglutamine expansions, Nov. 1997, Molecular Medicine Today. |
P Sanjeeva Reddy, The complex pathology of trinucleotide repeats, Nucleus and gene expression, pp. 364-372. |
T Bowen, Further support for an association between a polymorphic CAG repeat in the hKCa3 gene and schizophrenia, 1998, Molecular Psychiatry. |