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Redefined genomic architecture in 15q24 directed by patient deletion/duplication breakpoint mapping.

机译:在15q24中由患者删除/复制断点映射指导重新定义的基因组架构。

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We report four new patients with a submicroscopic deletion in 15q24 manifesting developmental delay, short stature, hypotonia, digital abnormalities, joint laxity, genital abnormalities, and characteristic facial features. These clinical features are shared with six recently reported patients with a 15q24 microdeletion, supporting the notion that this is a recognizable syndrome. We describe a case of an ~2.6 Mb microduplication involving a portion of the minimal deletion critical region in a 15-year-old male with short stature, mild mental retardation, attention deficit hyperactivity disorder, Asperger syndrome, decreased joint mobility, digital abnormalities, and characteristic facial features. Some of these features are shared with a recently reported case with a 15q24 microduplication involving the minimal deletion critical region. We also report two siblings and their mother with duplication adjacent and distal to this region exhibiting mild developmental delay, hypotonia, tapering fingers, characteristic facial features, and prominent ears. The deletion and duplication breakpoints were mapped by array comparative genomic hybridization and the genomic structure in 15q24 was analyzed further. Surprisingly, in addition to the previously recognized three low-copy repeat clusters (BP1, BP2, and BP3), we identified two other paralogous low-copy repeat clusters that likely mediated the formation of alternative sized 15q24 genomic rearrangements via non-allelic homologous recombination.
机译:我们报告了四名在15q24出现亚显微缺失的新患者,这些患者表现出发育延迟,身材矮小,肌张力低下,数字异常,关节松弛,生殖器异常和特征性面部特征。这些临床特征与最近报道的六例15q24微缺失患者共享,支持了这是一种可识别的综合征的观念。我们描述了一个〜2.6 Mb微复制的案例,该复制涉及一名15岁男性,身材矮小,轻度智力低下,注意力不足过动症,阿斯伯格综合症,关节活动度降低,数字异常,和独特的面部特征其中一些功能与最近报道的具有最小缺失关键区域的15q24微复制案例共享。我们还报告了两个兄弟姐妹及其母亲,在该区域附近和远端有重复,表现出轻度的发育延迟,肌张力减退,手指逐渐变细,特征性的面部特征和突出的耳朵。通过阵列比较基因组杂交对缺失和重复断点进行定位,并进一步分析15q24中的基因组结构。出人意料的是,除了先前公认的三个低拷贝重复簇(BP1,BP2和BP3)外,我们还鉴定了另外两个旁系低拷贝重复簇,它们很可能通过非等位基因同源重组介导了大小可变的15q24基因组重排的形成。 。

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