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Multiple forms of atypical rearrangements generating supernumerary derivative chromosome 15.

机译:多种形式的非典型重排产生超数衍生的15号染色体。

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摘要

BACKGROUND: Maternally-derived duplications that include the imprinted region on the proximal long arm of chromosome 15 underlie a complex neurobehavioral disorder characterized by cognitive impairment, seizures and a substantial risk for autism spectrum disorders1. The duplications most often take the form of a supernumerary pseudodicentric derivative chromosome 15 [der(15)] that has been called inverted duplication 15 or isodicentric 15 [idic(15)], although interstitial rearrangements also occur. Similar to the deletions found in most cases of Angelman and Prader Willi syndrome, the duplications appear to be mediated by unequal homologous recombination involving low copy repeats (LCR) that are found clustered in the region. Five recurrent breakpoints have been described in most cases of segmental aneuploidy of chromosome 15q11-q13 and previous studies have shown that most idic(15) chromosomes arise through BP3:BP3 or BP4:BP5 recombination events. RESULTS: Here we describe four duplication chromosomes that show evidence of atypical recombination events that involve regions outside the common breakpoints. Additionally, in one patient with a mosaic complex der(15), we examined homologous pairing of chromosome 15q11-q13 alleles by FISH in a region of frontal cortex, which identified mosaicism in this tissue and also demonstrated pairing of the signals from the der(15) and the normal homologues. CONCLUSION: Involvement of atypical BP in the generation of idic(15) chromosomes can lead to considerable structural heterogeneity.
机译:背景:母体来源的重复,包括15号染色体近端长臂上的印记区域,是一种复杂的神经行为障碍,其特征是认知障碍,癫痫发作和自闭症谱系障碍的重大风险1。尽管通常也会发生间隙重排,但复制通常采用超数字假双中心衍生染色体15 [der(15)]的形式,该染色体被称为反向复制15或等距中心15 [idic(15)]。与在大多数Angelman和Prader Willi综合征病例中发现的缺失相似,这些重复似乎是由涉及在该区域聚集的低拷贝重复序列(LCR)的不平等同源重组所介导的。在染色体15q11-q13的片段非整倍性的大多数情况下,已经描述了五个重复断点,并且先前的研究表明,大多数idic(15)染色体是通过BP3:BP3或BP4:BP5重组事件产生的。结果:在这里我们描述了四个复制染色体,这些染色体显示了非典型重组事件的证据,该事件涉及共同断点以外的区域。此外,在一名患有镶嵌复合物der(15)的患者中,我们通过FISH检查了额叶皮层区域中染色体15q11-q13等位基因的同源配对,该配对鉴定了该组织中的镶嵌性,还证明了来自der(15)的信号配对15)和正常的同系物。结论:非典型BP参与idic(15)染色体的产生可导致相当大的结构异质性。

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