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首页> 外文期刊>Journal of human genetics >LCR-initiated rearrangements at the IDS locus, completed with Alu-mediated recombination or non-homologous end joining.
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LCR-initiated rearrangements at the IDS locus, completed with Alu-mediated recombination or non-homologous end joining.

机译:LCR在IDS位点引发的重排,通过Alu介导的重组或非同源末端连接完成。

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摘要

Mucopolysaccharidosis type II (MPS II) is caused by mutations in the IDS gene, which encodes the lysosomal enzyme iduronate-2-sulfatase. In approximately 20% of MPS II patients the disorder is caused by gross IDS structural rearrangements. We identified two male cases harboring complex rearrangements involving the IDS gene and the nearby pseudogene, IDSP1, which has been annotated as a low-copy repeat (LCR). In both cases the rearrangement included a partial deletion of IDS and an inverted insertion of the neighboring region. In silico analyses revealed the presence of repetitive elements as well as LCRs at the junctions of rearrangements. Our models illustrate two alternative consequences of rearrangements initiated by non-allelic homologous recombination of LCRs: resolution by a second recombination event (that is, Alu-mediated recombination), or resolution by non-homologous end joining repair. These complex rearrangements have the potential to be recurrent and may be present among those MSP II cases with previously uncharacterized aberrations involving IDS.
机译:II型粘多糖贮积病(MPS II)是由IDS基因突变引起的,该IDS基因编码溶酶体酶异氰酸酯2-硫酸酯酶。在大约20%的MPS II患者中,疾病是由IDS总体结构重排引起的。我们确定了两个男性病例,它们携带涉及IDS基因和附近的假基因IDSP1的复杂重排,该假基因已被注释为低拷贝重复序列(LCR)。在这两种情况下,重排都包括部分删除IDS和反向插入相邻区域。计算机分析表明,重排交界处存在重复元件以及LCR。我们的模型说明了由LCRs的非等位基因同源重组引发的重排的两个替代结果:通过第二次重组事件(即Alu介导的重组)进行拆分,或通过非同源末端连接修复进行拆分。这些复杂的重排可能会反复发生,并且可能存在于那些以前没有IDS像差的MSP II病例中。

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