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骨肉瘤中与断裂-融合-桥循环事件一致的局灶性扩增、微缺失和阶梯状结构的整合mBAND和亚兆碱基分辨率平铺集(SMRT)比较基因组杂交阵列分析。

An integrated mBAND and submegabase resolution tiling set (SMRT) CGH array analysis of focal amplification, microdeletions, and ladder structures consistent with breakage-fusion-bridge cycle events in osteosarcoma.

作者信息

Lim Gloria, Karaskova Jana, Beheshti Ben, Vukovic Bisera, Bayani Jane, Selvarajah Shamini, Watson Spencer K, Lam Wan L, Zielenska Maria, Squire Jeremy A

机构信息

Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario, Canada.

出版信息

Genes Chromosomes Cancer. 2005 Apr;42(4):392-403. doi: 10.1002/gcc.20157.

Abstract

Osteosarcoma (OS) is characterized by chromosomal instability and high-copy-number gene amplification. The breakage-fusion-bridge (BFB) cycle is a well-established mechanism of genomic instability in tumors and in vitro models used to study the origins of complex chromosomal rearrangements and cancer genome amplification. However, until now, there have been no high-resolution cytogenetic or genomic array studies of BFB events in OS. In the present study, multicolor banding (mBAND) FISH and submegabase resolution tiling set (SMRT) array comparative genomic hybridization (CGH) were used to identify and map genomic signatures of BFB events in four OS cell lines and one patient tumor. The expected intermediates associated with BFB-dicentric chromosomes, inverted duplications, and intra- and interchromosomal amplifications-were identified. mBAND analysis provided detailed mapping of rearrangements in 1p, 6p, and 8q and showed that translocation junctions were often in close proximity to fragile sites. More detailed mBAND studies of OS cell line MG-63 revealed ladderlike FISH signals of equally spaced interchromosomal coamplifications of 6p21, 8q24, and 9p21-p22 in a homogeneously staining region (hsr). Focal amplifications that concordantly mapped to the hsr were localized to discrete genomic intervals by SMRT array CGH. The complex amplicon structure in this hsr suggests focal amplifications immediately adjacent to microdeletions. Moreover, the genomic regions in which there was deletion/amplification had a preponderance of fragile sites. In summary, this study has provided further support for the role of the BFB mechanism and fragile sites in facilitating gene amplification and chromosomal rearrangement in OS.

摘要

骨肉瘤(OS)的特征是染色体不稳定和高拷贝数基因扩增。断裂-融合-桥接(BFB)循环是肿瘤和用于研究复杂染色体重排及癌症基因组扩增起源的体外模型中一种公认的基因组不稳定机制。然而,到目前为止,尚未有关于骨肉瘤中BFB事件的高分辨率细胞遗传学或基因组阵列研究。在本研究中,使用多色带型(mBAND)荧光原位杂交(FISH)和亚兆碱基分辨率平铺阵列(SMRT)比较基因组杂交(CGH)来识别并绘制4种骨肉瘤细胞系和1例患者肿瘤中BFB事件的基因组特征。鉴定出了与BFB双着丝粒染色体、反向重复以及染色体内和染色体间扩增相关的预期中间体。mBAND分析提供了1p、6p和8q重排的详细图谱,并表明易位连接点通常紧邻脆性位点。对骨肉瘤细胞系MG-63进行的更详细的mBAND研究显示,在一个均匀染色区(hsr)中,6p21、8q24和9p21 - p22的等间距染色体间共扩增呈现出梯状FISH信号。通过SMRT阵列CGH将与hsr一致定位的局灶性扩增定位到离散的基因组区间。该hsr中的复杂扩增子结构表明局灶性扩增紧邻微缺失。此外,存在缺失/扩增的基因组区域有大量的脆性位点。总之,本研究为BFB机制和脆性位点在促进骨肉瘤基因扩增和染色体重排中的作用提供了进一步支持。

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