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High-resolution characterization of the pancreatic adenocarcinoma genome

机译:胰腺腺癌基因组的高分辨率表征

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The pancreatic adenocarcinoma genome harbors multiple amplifications and deletions, pointing to the existence of numerous oncogenes and tumor suppressor genes driving the genesis and progression of this lethal cancer. Here, array comparative genomic hybridization on a cDNA microarray platform and informatics tools have been used to define the copy number alterations in a panel of 24 pancreatic adenocarcinoma cell lines and 13 primary tumor specimens. This high-resolution genomic analysis has identified all known regional gains and losses as well as many previously uncharacterized highly recurrent copy number alterations. A systematic prioritization scheme has selected 64 focal minimal common regions (MCRs) of recurrent copy number change. These MCRs possess a median size of 2.7 megabases (Mb), with 21 (33%) MCRs spanning 1 Mb or less (median of 0.33 Mb) and possessing an average of 15 annotated genes. Furthermore, complementary expression profile analysis of a significant fraction of the genes residing within these 64 prioritized MCRs has enabled the identification of a subset of candidates with statistically significant association between gene dosage and mRNA expression. Thus, the integration of DNA and RNA profiles provides a highly productive entry point for the discovery of genes involved in the pathogenesis of pancreatic adenocarcinoma.
机译:胰腺腺癌基因组具有多种扩增和缺失,表明存在许多致癌基因和抑癌基因,这些基因驱动这种致死性癌症的发生和发展。在这里,在cDNA微阵列平台和信息学工具上的阵列比较基因组杂交已被用来定义24个胰腺腺癌细胞系和13个原发性肿瘤标本中的拷贝数变化。这种高分辨率的基因组分析已识别出所有已知的区域得失,以及许多以前未表征的高度重复的拷贝数变化。一个系统的优先排序方案已选择了64个重复拷贝数更改的焦点最小公共区域(MCR)。这些MCR的中位大小为2.7兆碱基(Mb),其中21个(33%)MCR的跨度为1 Mb或更小(中位数为0.33 Mb),平均拥有15个带注释的基因。此外,对这64个优先MCR中大部分基因的互补表达谱分析能够鉴定出候选子集,在基因剂量和mRNA表达之间具有统计学上的显着关联。因此,DNA和RNA图谱的整合为发现胰腺腺癌发病机理中涉及的基因提供了一个高产的切入点。

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