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Comprehensive genomic profiles of small cell lung cancer

机译:小细胞肺癌的综合基因组概况

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摘要

We have sequenced the genomes of 110 small cell lung cancers (SCLC), one of the deadliest human cancers. In nearly all the tumours analysed we found bi-allelic inactivation of TP53 and RB1, sometimes by complex genomic rearrangements. Two tumours with wild-type RB1 had evidence of chromothripsis leading to overexpression of cyclin D1 (encoded by the CCND1 gene), revealing an alternative mechanism of Rb1 deregulation. Thus, loss of the tumour suppressors TP53 and RB1 is obligatory in SCLC. We discovered somatic genomic rearrangements of TP73 that create an oncogenic version of this gene, TP73Δex2/3. In rare cases, SCLC tumours exhibited kinase gene mutations, providing a possible therapeutic opportunity for individual patients. Finally, we observed inactivating mutations in NOTCH family genes in 25% of human SCLC. Accordingly, activation of Notch signalling in a pre-clinical SCLC mouse model strikingly reduced the number of tumours and extended the survival of the mutant mice. Furthermore, neuroendocrine gene expression was abrogated by Notch activity in SCLC cells. This first comprehensive study of somatic genome alterations in SCLC uncovers several key biological processes and identifies candidate therapeutic targets in this highly lethal form of cancer.
机译:我们已经对110种小细胞肺癌(SCLC)(最致命的人类癌症之一)的基因组进行了测序。在几乎所有分析的肿瘤中,我们发现TP53和RB1的双等位基因失活,有时是由于复杂的基因组重排。带有野生型RB1的两个肿瘤都有色杆菌病的证据,导致细胞周期蛋白D1过表达(由CCND1基因编码),揭示了Rb1失调的另一种机制。因此,在SCLC中肿瘤抑制物TP53和RB1的丧失是必须的。我们发现了TP73的体细胞基因组重排,该基因创建了该基因的致癌版本TP73Δex2/ 3。在极少数情况下,SCLC肿瘤表现出激酶基因突变,为个别患者提供了可能的治疗机会。最后,我们在25%的人类SCLC中观察到了NOTCH家族基因的失活突变。因此,在临床前SCLC小鼠模型中Notch信号的激活显着减少了肿瘤数量并延长了突变小鼠的生存期。此外,SCLC细胞中的Notch活性消除了神经内分泌基因的表达。这项对SCLC中体细胞基因组改变的首次全面研究揭示了几个关键的生物学过程,并确定了这种高度致死性癌症中的候选治疗靶标。

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