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Whole genomes redefine the mutational landscape of pancreatic cancer

机译:全基因组重新定义了胰腺癌的突变格局

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摘要

Pancreatic cancer remains one of the most lethal of malignancies and a major health burden. We performed whole-genome sequencing and copy number variation (CNV) analysis of 100 pancreatic ductal adenocarcinomas (PDACs). Chromosomal rearrangements leading to gene disruption were prevalent, affecting genes known to be important in pancreatic cancer (TP53, SMAD4, CDKN2A, ARID1A and ROBO2) and new candidate drivers of pancreatic carcinogenesis (KDM6A and PREX2). Patterns of structural variation (variation in chromosomal structure) classified PDACs into 4 subtypes with potential clinical utility: the subtypes were termed stable, locally rearranged, scattered and unstable. A significant proportion harboured focal amplifications, many of which contained druggable oncogenes (ERBB2, MET, FGFR1, CDK6, PIK3R3 and PIK3CA), but at low individual patient prevalence. Genomic instability co-segregated with inactivation of DNA maintenance genes (BRCA1, BRCA2 or PALB2) and a mutational signature of DNA damage repair deficiency. Of 8 patients who received platinum therapy, 4 of 5 individuals with these measures of defective DNA maintenance responded.
机译:胰腺癌仍然是最致命的恶性肿瘤之一,也是主要的健康负担。我们对100例胰腺导管腺癌(PDAC)进行了全基因组测序和拷贝数变异(CNV)分析。导致基因破坏的染色体重排普遍存在,影响已知对胰腺癌重要的基因(TP53,SMAD4,CDKN2A,ARID1A和ROBO2)和胰腺癌发生的新候选驱动因子(KDM6A和PREX2)。结构变化的模式(染色体结构的变化)将PDAC分为4种亚型,具有潜在的临床实用性:这些亚型被称为稳定,局部重排,分散和不稳定。相当大的比例具有局灶性扩增,其中许多包含可药物致癌基因(ERBB2,MET,FGFR1,CDK6,PIK3R3和PIK3CA),但患者个体患病率较低。基因组不稳定性与DNA维持基因(BRCA1,BRCA2或PALB2)的失活和DNA损伤修复缺陷的突变特征共同分离。在接受铂金治疗的8位患者中,有5位采用此类DNA维持缺陷测量方法的患者中有4位反应了。

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