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21号染色体的染色体内部扩增(iAMP21)可能源于断裂-融合-桥循环。

Intrachromosomal amplification of chromosome 21 (iAMP21) may arise from a breakage-fusion-bridge cycle.

作者信息

Robinson Hazel M, Harrison Christine J, Moorman Anthony V, Chudoba Ilse, Strefford Jonathan C

机构信息

Leukaemia Research Cytogenetics Group, Cancer Sciences Division, University of Southampton, Southampton, UK.

出版信息

Genes Chromosomes Cancer. 2007 Apr;46(4):318-26. doi: 10.1002/gcc.20412.

Abstract

Intrachromosomal amplification of chromosome 21 (iAMP21), involving amplification of the RUNX1 gene and duplication of chromosome 21, dup(21q), defines a new cytogenetic subgroup in B-lineage acute lymphoblastic leukemia (ALL) with a poor prognosis. Characterization of this abnormality has become vital to ensure that the most accurate detection method is used. We have previously defined common regions of amplification and deletion of chromosome 21 in these patients, although the level and extent of amplification within the amplicon was highly variable. This study, using interphase fluorescence in situ hybridization (FISH) with chromosome 21 locus specific probes, substantiated these findings in a large series of patients and confirmed that the amplicon always included RUNX1. Thus, FISH with probes directed to the RUNX1 gene remains the most reliable detection method. Metaphase FISH, supported by G- and multiple color chromosomal banding (mBAND) revealed the patient specific morphology and genetic profile of the dup(21q) chromosomes, as well as the complexity of the intrachromosomal changes giving rise to them. These findings suggested that iAMP21 had arisen from a breakage-fusion-bridge cycle: a mechanism previously described in tumors, which we report for the first time in ALL.

摘要

21号染色体的染色体内扩增(iAMP21),涉及RUNX1基因的扩增和21号染色体的重复,即dup(21q),它在B系急性淋巴细胞白血病(ALL)中定义了一个预后不良的新细胞遗传学亚组。对这种异常的特征描述对于确保使用最准确的检测方法至关重要。我们之前已经确定了这些患者中21号染色体扩增和缺失的常见区域,尽管扩增子内的扩增水平和范围高度可变。本研究采用针对21号染色体位点特异性探针的间期荧光原位杂交(FISH)技术,在大量患者中证实了这些发现,并确认扩增子总是包含RUNX1。因此,使用针对RUNX1基因的探针进行FISH仍然是最可靠的检测方法。在G显带和多色染色体显带(mBAND)技术的支持下,中期FISH揭示了dup(21q)染色体的患者特异性形态和遗传图谱,以及导致它们的染色体内变化的复杂性。这些发现表明,iAMP21起源于断裂-融合-桥循环:一种先前在肿瘤中描述的机制,我们首次在ALL中报道。

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