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人类乳腺癌中扩增子形成的系统后果。

Systems consequences of amplicon formation in human breast cancer.

作者信息

Inaki Koichiro, Menghi Francesca, Woo Xing Yi, Wagner Joel P, Jacques Pierre-Étienne, Lee Yi Fang, Shreckengast Phung Trang, Soon Wendy WeiJia, Malhotra Ankit, Teo Audrey S M, Hillmer Axel M, Khng Alexis Jiaying, Ruan Xiaoan, Ong Swee Hoe, Bertrand Denis, Nagarajan Niranjan, Karuturi R Krishna Murthy, Miranda Alfredo Hidalgo, Liu Edison T

机构信息

Cancer Therapeutics and Stratified Oncology, Genome Institute of Singapore, Genome, Singapore 138672, Singapore; The Jackson Laboratory for Genomic Medicine, Farmington, Connecticut 06030, USA;

Cancer Therapeutics and Stratified Oncology, Genome Institute of Singapore, Genome, Singapore 138672, Singapore;

出版信息

Genome Res. 2014 Oct;24(10):1559-71. doi: 10.1101/gr.164871.113. Epub 2014 Sep 3.

Abstract

Chromosomal structural variations play an important role in determining the transcriptional landscape of human breast cancers. To assess the nature of these structural variations, we analyzed eight breast tumor samples with a focus on regions of gene amplification using mate-pair sequencing of long-insert genomic DNA with matched transcriptome profiling. We found that tandem duplications appear to be early events in tumor evolution, especially in the genesis of amplicons. In a detailed reconstruction of events on chromosome 17, we found large unpaired inversions and deletions connect a tandemly duplicated ERBB2 with neighboring 17q21.3 amplicons while simultaneously deleting the intervening BRCA1 tumor suppressor locus. This series of events appeared to be unusually common when examined in larger genomic data sets of breast cancers albeit using approaches with lesser resolution. Using siRNAs in breast cancer cell lines, we showed that the 17q21.3 amplicon harbored a significant number of weak oncogenes that appeared consistently coamplified in primary tumors. Down-regulation of BRCA1 expression augmented the cell proliferation in ERBB2-transfected human normal mammary epithelial cells. Coamplification of other functionally tested oncogenic elements in other breast tumors examined, such as RIPK2 and MYC on chromosome 8, also parallel these findings. Our analyses suggest that structural variations efficiently orchestrate the gain and loss of cancer gene cassettes that engage many oncogenic pathways simultaneously and that such oncogenic cassettes are favored during the evolution of a cancer.

摘要

染色体结构变异在决定人类乳腺癌的转录格局中起着重要作用。为了评估这些结构变异的性质,我们分析了八个乳腺肿瘤样本,重点关注基因扩增区域,采用长插入基因组DNA的配对末端测序并结合匹配的转录组分析。我们发现串联重复似乎是肿瘤进化中的早期事件,尤其是在扩增子的形成过程中。在对17号染色体上事件的详细重建中,我们发现大的不成对倒位和缺失将串联重复的ERBB2与相邻的17q21.3扩增子连接起来,同时删除了中间的BRCA1肿瘤抑制基因座。尽管使用的分辨率较低,但在更大的乳腺癌基因组数据集中检查时,这一系列事件似乎异常常见。在乳腺癌细胞系中使用小干扰RNA,我们发现17q21.3扩增子含有大量在原发性肿瘤中始终共同扩增的弱癌基因。BRCA1表达的下调增强了ERBB2转染的人正常乳腺上皮细胞的增殖。在其他检测的乳腺肿瘤中,如8号染色体上的RIPK2和MYC等其他功能测试的致癌元件的共同扩增也与这些发现相似。我们的分析表明,结构变异有效地协调了癌症基因盒的得失,这些基因盒同时参与许多致癌途径,并且这种致癌基因盒在癌症进化过程中受到青睐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc05/4199368/4a8e104f9412/1559fig1.jpg

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