Key result
A recombination event between the IDS gene and the IDS-2 locus results in an inversion that disrupts the IDS gene in approximately 13% of patients with Hunter syndrome.
Observational
Identification of a recombination hot spot causing an inversion in the IDS gene provides practical implications for the molecular diagnosis of Hunter syndrome.
May aid IDS inversion screening in Hunter syndrome diagnostics; extends mutational spectrum characterization in X-linked disorders.
We have recently described the identification of a second IDS locus (IDS-2) located within 90 kb telomeric of the IDS gene (Bondeson et al. submitted). Here, we show that this region is involved in a recombination event with the IDS gene in about 13% of patients with the Hunter syndrome. Analysis of the resulting rearrangement at the molecular level showed that these patients have suffered a recombination event that results in a disruption of the IDS gene in intron 7 with an inversion of the intervening DNA. Interestingly, all of the six cases with a similar type of rearrangement showed recombination between intron 7 of the IDS gene and sequences close to exon 3 at the IDS-2 locus implying that these regions are hot spots for recombination. Analysis by nucleotide sequencing showed that the inversion is caused by recombination between homologous sequences present in the IDS gene and the IDS-2 locus. No detectable deletions or insertions were observed as a result of the recombination event. The results in this study have practical implications for diagnosis of the Hunter syndrome.
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Bondeson et al. (1995) conducted an observational in Hunter syndrome. Recombination between IDS gene and IDS-2 locus was evaluated on Prevalence of recombination event disrupting the IDS gene. A recombination event between the IDS gene and the IDS-2 locus results in an inversion that disrupts the IDS gene in approximately 13% of patients with Hunter syndrome.
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