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Punctuated evolution of prostate cancer genomes

机译:前列腺癌基因组的标点进化

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The analysis of exonic DNA from prostate cancers has identified recurrently mutated genes, but the spectrum of genome-wide alterations has not been profiled extensively in this disease. We sequenced the genomes of 57 prostate tumors and matched normal tissues to characterize somatic alterations and to study how they accumulate during oncogenesis and progression. By modeling the genesis of genomic rearrangements, we identified abundant DNA translocations and deletions that arise in a highly interdependent manner. This phenomenon, which we term "chromoplexy," frequently accounts for the dysregulation of prostate cancer genes and appears to disrupt multiple cancer genes coordinately. Our modeling suggests that chromoplexy may induce considerable genomic derangement over relatively few events in prostate cancer and other neoplasms, supporting a model of punctuated cancer evolution. By characterizing the clonal hierarchy of genomic lesions in prostate tumors, we charted a path of oncogenic events along which chromoplexy may drive prostate carcinogenesis.
机译:对来自前列腺癌的外显子DNA的分析已鉴定出反复突变的基因,但在该疾病中尚未广泛描述全基因组范围的变化。我们对57个前列腺肿瘤的基因组进行了测序,并匹配了正常组织,以表征体细胞变化并研究它们在肿瘤发生和发展过程中如何积累。通过对基因组重排的发生进行建模,我们确定了大量的DNA易位和缺失,它们以高度相互依赖的方式出现。这种现象,我们称为“染色体多态性”,通常是前列腺癌基因失调的原因,并且似乎可以协调地破坏多个癌症基因。我们的模型表明,染色体多态性可能在前列腺癌和其他肿瘤中相对较少的事件上引起可观的基因组失序,从而支持了标点癌演变的模型。通过表征前列腺肿瘤中基因组病变的克隆层次,我们绘制了致癌事件的路径,沿着该路径染色体发色可以驱动前列腺癌变。

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