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首页> 外文期刊>Journal of thoracic oncology: official publication of the International Association for the Study of Lung Cancer >Whole-genome sequencing analysis identifies a distinctive mutational spectrum in an arsenic-related lung tumor
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Whole-genome sequencing analysis identifies a distinctive mutational spectrum in an arsenic-related lung tumor

机译:全基因组测序分析识别砷相关肺肿瘤中的独特突变谱

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INTRODUCTION:: Arsenic exposure is a significant cause of lung cancer in North America and worldwide. Arsenic-related tumors are structurally indistinguishable from those induced by other carcinogens. Because carcinogens, like tobacco, induce distinctive mutational signatures, we sought to characterize the mutational signature of an arsenic-related lung tumor from a never smoker with the use of whole-genome sequencing. METHODS:: Tumor and lung tissues were obtained from a never smoker with lung squamous cell carcinoma (LUSC), without familiar history of lung cancer and chronically exposed to high levels of arsenic-contaminated drinking water. The Illumina HiSeq-2000 platform was used to sequence each genome at approximately 30-fold haploid coverage. The mutational signature was compared with those observed in previously characterized lung tumors. RESULTS:: The arsenic-related tumor exhibited alterations common in LUSC, such as the increased number of copies at 3q26 (SOX2 locus). However, the arsenic-related genome not only harbored a lower number of point mutations, but also had a remarkably high fraction of T>G/A>C mutations and low fraction of C>A/G>T transversions, which is uncharacteristic of LUSCs. Furthermore, at the gene level, we identified a rare G>C mutation in TP53, which is uncommon in lung tumors in general (<0.2%) but has been observed in other arsenic-related malignancies. CONCLUSIONS:: We generated the first whole-genome sequence of an LUSC from a never-smoker patient chronically exposed to arsenic, and identified a distinct mutational spectrum associated with arsenic exposure, providing novel evidence supporting the hypothesis that arsenic-induced lung tumors arise through molecular mechanisms that differ from those of the common lung cancer.
机译:介绍::砷暴露是北美和全球肺癌的重要原因。砷相关的肿瘤在结构上与其他致癌物诱导的肿瘤结构难以区分。因为烟草,如烟草,诱导着独特的突变签名,我们试图从从不吸烟者使用全基因组测序来表征砷相关肺肿瘤的突变签名。方法::肿瘤和肺组织是从肺鳞状细胞癌(LUSC)的从不吸烟者获得,没有熟悉的肺癌史,并长期暴露于高水平的砷污染的饮用水。 Illumina Hiseq-2000平台用于将每个基因组序列约30倍的单倍体覆盖率。将突变签名与在以前表征的肺肿瘤中观察到的那些。结果::砷相关的肿瘤表现出LUSC中常见的改变,例如3 Q26(SOX2基因座)的拷贝数增加。然而,与砷相关的基因组不仅占较低的点突变,而且还具有显着高的T> G / A> C突变和低级别的C> A / G> T横向,这是一种不起作道的LUSCS。此外,在基因水平上,我们鉴定了TP53中的稀有G> C突变,其在肺肿瘤中罕见(<0.2%),但在其他与砷相关的恶性肿瘤中观察到。结论::我们从长期暴露于砷的患者中产生了LUSC的第一种全基因组序列,并确定了与砷暴露相关的不同突变谱,提供了支持砷诱导的肺肿瘤产生的假设的新颖证据与常见的肺癌不同的分子机制。

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