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一名患有轻度发育迟缓及精神障碍的男孩发生了涉及8号、11号和16号染色体的新生平衡性复杂染色体重排(CCR)。

De novo balanced complex chromosome rearrangement (CCR) involving chromosome 8, 11 and 16 in a boy with mild developmental delay and psychotic disorder.

作者信息

Goumy C, Mihaescu M, Tchirkov A, Giollant M, Benier C, Francannet C, Jaffray J Y, Geneix A, Vago P

机构信息

Cytogénétique Médicale, CHU / Faculté de Médecine, Clermont-Ferrand, France.

出版信息

Genet Couns. 2006;17(3):371-9.

Abstract

Congenital Complex Chromosome rearrangements (CCRs) compatible with life are rare in humans. We report a de novo CCR involving chromosomes 8, 11 and 16 with 4 breakpoints in a patient with mild dysmorphic features, acquisition delay and psychotic disorder. Conventional cytogenetic analysis revealed an apparently balanced 8;16 translocation. Further FISH analysis with WCP 8 and WCP 16 probes revealed the presence of a third chromosome involved in the translocation. The multicolour karyotype confirmed the complexity of the rearrangement and showed that the derivative chromosome 8 was composed of 3 distinct segments derived from chromosomes 8, 16 and 11. The breakpoints of this complex rearrangement were located at 8q21, 11q14, 11q23 and 16q12. Comparative genomic hybridization (CGH) and array-CGH were performed to investigate the possibility of any genomic imbalance as a result of the complex rearrangement. No imbalance was detected by these two techniques. Our study showed: i) the necessity to confirm reciprocal translocations with FISH using painting probes, particularly when the karyotype resolution is weak; ii) the usefulness of multicolour karyotype for the characterization of structural chromosomal rearrangements, particularly when they are complex; iii) the usefulness of CGH and array-CGH in cases of abnormal phenotype and apparently balanced rearrangement in order to explore the breakpoints and to detect additional imbalances.

摘要

与生命相容的先天性复杂染色体重排(CCR)在人类中很罕见。我们报告了一名患有轻度畸形特征、发育延迟和精神障碍的患者中发生的涉及8号、11号和16号染色体且有4个断点的新发CCR。常规细胞遗传学分析显示出明显平衡的8;16易位。使用WCP 8和WCP 16探针进行的进一步荧光原位杂交(FISH)分析揭示了存在第三条参与易位的染色体。多色核型证实了重排的复杂性,并表明衍生的8号染色体由来自8号、16号和11号染色体的3个不同片段组成。这种复杂重排的断点位于8q21、11q14、11q23和16q12。进行了比较基因组杂交(CGH)和阵列CGH以研究由于复杂重排导致任何基因组失衡的可能性。这两种技术均未检测到失衡。我们的研究表明:i)使用涂染探针通过FISH确认相互易位的必要性,特别是当核型分辨率较低时;ii)多色核型在表征染色体结构重排方面的有用性,特别是当它们很复杂时;iii)在异常表型和明显平衡重排的情况下,CGH和阵列CGH在探索断点和检测额外失衡方面的有用性。

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