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Masked complex chromosome rearrangement in a child thought to have del(8qter) as the sole cytogenetic abnormality

机译:被认为具有del(8qter)作为唯一细胞遗传学异常的儿童的掩盖复杂染色体重排

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Cytogenetic analyses of constitutional diseases have disclosed several chromosomal rearrangements. At the molecular level, these rearrangements often result in the breakage of genes or alteration of genome architecture. Fluorescence in situ hybridization (FISH) and molecular investigations of a patient showing hypotonia and dysmorphic traits revealed a masked complex chromosome abnormality previously detected by G-banding as a simple 8qter deletion. To characterize the genetic rearrangements panels of bacterial artificial chromosomes (BACs) covering 8q24.22—*qter were constructed, and short tandem repeats (STRs) were used to refine the localization of the breakpoints and to assess the parental origin of the defect. Chromosome 8 displayed the breakpoint at 8q24.22 and an unexpected distal breakpoint at 8q24.23 resulting in unbalanced translocation of a small 8q genomic region on the chromosome 16qter. The study of the 16qter region revealed that the 16q subtelomere was retained and the translocatedmaterial of distal 8q was juxtaposed. Moreover, molecular analyses showed that part of the translocated 8qter segment on der(16) was partially duplicated, inverted and that the rearrangement arose in the paternal meiosis. These findings emphasize the complexity of some only apparently simple chromosomal rearrangements and suggest a subtelomeric FISH approach to enhance diagnostic care when a cytogenetic terminal deletion is found.
机译:体质疾病的细胞遗传学分析已揭示了几种染色体重排。在分子水平上,这些重排通常导致基因断裂或基因组结构改变。荧光原位杂交(FISH)和显示低渗和畸形特征的患者的分子研究显示,先前通过G谱带检测到的简单8qter缺失掩盖了复杂的染色体异常。为了表征覆盖8q24.22- * qter的细菌人工染色体(BAC)的遗传重排,并使用短串联重复序列(STR)来完善断点的定位并评估缺陷的亲本起源。 8号染色体在8q24.22处显示断点,在8q24.23处出现意外的远端断点,导致16qter染色体上小的8q基因组区域的不平衡转运。对16qter区域的研究表明,保留了16q亚端粒,并错置了远端8q的易位材料。此外,分子分析表明,der(16)上易位的8qter片段的一部分被部分复制,倒置,并且在父本减数分裂中发生了重排。这些发现强调了一些仅看似简单的染色体重排的复杂性,并提出了发现细胞遗传学末端缺失后,亚端粒的FISH方法可增强诊断服务。

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