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胰腺癌中的拷贝数改变鉴定出 PAK4 的反复扩增。

Copy number alterations in pancreatic cancer identify recurrent PAK4 amplification.

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, New York, USA.

出版信息

Cancer Biol Ther. 2008 Nov;7(11):1793-802. doi: 10.4161/cbt.7.11.6840. Epub 2008 Nov 21.

DOI:10.4161/cbt.7.11.6840
PMID:18836286
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7323936/
Abstract

Pancreatic cancer is one of the most lethal of all cancers. The median survival is six months and less than 5% of those diagnosed survive five years. Recurrent genetic deletions and amplifications in 72 pancreatic adenocarcinomas, the largest sample set analyzed to date for pancreatic cancer, were defined using comparative genomic hybridization The recurrent genetic alterations identified target a number of previously well-characterized genes, as well as regions that contain possible new oncogenes and tumor suppressor genes. We have focused on chromosome 19q13, a region frequently found amplified in pancreatic cancer and demonstrate how boundaries of common regions of mutation can be mapped and how a gene, in this case PAK4 amplified on chromosome19q13, can be functionally validated. We show that although the PAK4 gene is not activated by mutation in cell lines with gene amplification, an oncogenic form of the KRAS2 gene is present in these cells and oncogenic KRAS2 can activate PAK4. In fact in the three samples we identified with PAK4 gene amplification, the KRAS2 gene was activated and genomically amplified. The kinase activity of the PAK4 protein is significantly higher in cells with genomic amplification as compared to cells without amplification. Our study demonstrates the utility of analyzing copy number data in a large set of neoplasms to identify genes involved in cancer. We have generated a useful dataset which will be particularly useful for the pancreatic cancer community as efforts are undertaken to sequence the pancreatic cancer genome.

摘要

胰腺癌是所有癌症中最致命的一种。中位生存期为 6 个月,不到 5%的患者能存活 5 年。在迄今为止分析的最大胰腺癌样本集中,对 72 例胰腺腺癌进行了比较基因组杂交,以确定反复出现的遗传缺失和扩增。所确定的反复出现的遗传改变针对一些先前已很好地描述的基因,以及包含可能的新癌基因和肿瘤抑制基因的区域。我们专注于染色体 19q13,该区域在胰腺癌中经常发现扩增,并展示了如何映射常见突变区域的边界,以及如何对基因(在这种情况下,位于染色体 19q13 上的 PAK4 基因扩增)进行功能验证。我们表明,尽管在基因扩增的细胞系中 PAK4 基因没有通过突变激活,但这些细胞中存在致癌形式的 KRAS2 基因,并且致癌性 KRAS2 可以激活 PAK4。实际上,在我们鉴定的三个具有 PAK4 基因扩增的样本中,KRAS2 基因被激活并在基因组上扩增。与没有扩增的细胞相比,具有基因组扩增的细胞中 PAK4 蛋白的激酶活性明显更高。我们的研究证明了在大量肿瘤中分析拷贝数数据以鉴定参与癌症的基因的实用性。我们生成了一个有用的数据集,这对于正在努力对胰腺癌基因组进行测序的胰腺癌社区将特别有用。

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