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Publication : The TOR1A (DYT1) gene family and its role in early onset torsion dystonia.

First Author  Ozelius LJ Year  1999
Journal  Genomics Volume  62
Issue  3 Pages  377-84
PubMed ID  10644435 Mgi Jnum  J:60248
Mgi Id  MGI:1353089 Doi  10.1006/geno.1999.6039
Citation  Ozelius LJ, et al. (1999) The TOR1A (DYT1) gene family and its role in early onset torsion dystonia. Genomics 62(3):377-84
abstractText  Most cases of early onset torsion dystonia are caused by a 3-bp deletion (GAG) in the coding region of the TOR1A gene (alias DYT1, DQ2), resulting in loss of a glutamic acid in the carboxy terminal of the encoded protein, torsin A. TOR1A and its homologue TOR1B (alias DQ1) are located adjacent to each other on human chromosome 9q34. Both genes comprise five similar exons; each gene spans a 10-kb region. Mutational analysis of most of the coding region and splice junctions of TOR1A and TOR1B did not reveal additional mutations in typical early onset cases lacking the GAG deletion (N = 17), in dystonic individuals with apparent homozygosity in the 9q34 chromosomal region (N = 5), or in a representative Ashkenazic Jewish individual with late onset dystonia, who shared a common haplotype in the 9q34 region with other late onset individuals in this ethnic group. A database search revealed a family of nine related genes (50-70% similarity) and their orthologues in species including human, mouse, rat, pig, zebrafish, fruitfly, and nematode. At least four of these genes occur in the human genome. Proteins encoded by this gene family share functional domains with the AAA/HSP/Clp-ATPase superfamily of chaperone-like proteins, but appear to represent a distinct evolutionary branch. Copyright 1999 Academic Press.
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