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Identification of candidate genes involved in neuroblastoma progression by combining genomic and expression microarrays with survival data

机译:通过将基因组和表达微阵列与存活数据相结合,鉴定参与神经母细胞瘤进展的候选基因

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Identifying genes, whose expression is consistently altered by chromosomal gains or losses, is an important step in defining genes of biological relevance in a wide variety of tumour types. However, additional criteria are needed to discriminate further among the large number of candidate genes identified. This is particularly true for neuroblastoma, where multiple genomic copy number changes of proven prognostic value exist. We have used Affymetrix microarrays and a combination of fluorescent in situ hybridization and single nucleotide polymorphism (SNP) microarrays to establish expression profiles and delineate copy number alterations in 30 primary neuroblastomas. Correlation of microarray data with patient survival and analysis of expression within rodent neuroblastoma cell lines were then used to define further genes likely to be involved in the disease process. Using this approach, we identify >1000 genes within eight recurrent genomic alterations (loss of 1p, 3p, 4p, 10q and 11q, 2p gain, 17q gain, and the MYCN amplicon) whose expression is consistently altered by copy number change. Of these, 84 correlate with patient survival, with the minimal regions of 17q gain and 4p loss being enriched significantly for such genes. These include genes involved in RNA and DNA metabolism, and apoptosis. Orthologues of all but one of these genes on 17q are overexpressed in rodent neuroblastoma cell lines. A significant excess of SNPs whose copy number correlates with survival is also observed on proximal 4p in stage 4 tumours, and we find that deletion of 4p is associated with improved outcome in an extended cohort of tumours. These results define the major impact of genomic copy number alterations upon transcription within neuroblastoma, and highlight genes on distal 17q and proximal 4p for downstream analyses. They also suggest that integration of discriminators, such as survival and comparative gene expression, with microarray data may be useful in the identification of critical genes within regions of loss or gain in many human cancers.
机译:鉴定其表达会因染色体得失而不断改变的基因,是定义多种肿瘤类型具有生物学相关性的重要步骤。但是,还需要其他标准来进一步区分已鉴定的大量候选基因。对于成神经母细胞瘤尤其如此,在成神经母细胞瘤中,存在多个基因组拷贝数变化的预后价值。我们已经使用Affymetrix芯片以及荧光原位杂交和单核苷酸多态性(SNP)芯片的组合来建立表达谱并描述30个原发性神经母细胞瘤的拷贝数变化。然后,将微阵列数据与患者存活率进行关联以及在啮齿类神经母细胞瘤细胞系中进行表达分析,以确定可能与疾病过程有关的其他基因。使用这种方法,我们确定了八个重复的基因组改变(丢失1p,3p,4p,10q和11q,2p增益,17q增益和MYCN扩增子)内的> 1000个基因,其表达随着拷贝数的变化而不断改变。其中84个与患者的生存相关,其中17q增益和4p缺失的最小区域显着富集了此类基因。这些包括涉及RNA和DNA代谢以及细胞凋亡的基因。在啮齿类神经母细胞瘤细胞系中,除这些基因之一外,其他基因的直向同源物均过表达。在第4期肿瘤的近端4p上也观察到了显着过量的SNP,其拷贝数与存活率相关,我们发现4p的缺失与延长的肿瘤群中改善的预后相关。这些结果定义了基因组拷贝数改变对成神经细胞瘤内转录的主要影响,并突出了远端17q和近端4p上的基因以进行下游分析。他们还建议,将鉴别物(例如生存率和比较基因表达)与微阵列数据相结合,可能有助于鉴定许多人类癌症丧失或获得区域内的关键基因。

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