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Carcinogen‐induced tumors in SFN‐transgenic mice harbor a characteristic mutation spectrum of human lung adenocarcinoma

机译:SFN转基因小鼠的致癌物肿瘤具有人类肺腺癌的特征性突变谱

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摘要

The landscape of genetic alterations in disease models such as transgenic mice or mice with carcinogen‐induced tumors has provided a huge amount of information that has shed light on the process of tumorigenesis in human non‐small‐cell lung cancer (NSCLC). We have previously identified stratifin (SFN) as a potent oncogene, and generated SFN‐transgenic (Tg‐SPC‐SFN +/−) mice, which express human SFN (hSFN) only in the lung. Here, we have found that carcinogen nicotine‐derived nitrosaminoketone (NNK)‐induced tumors developing in Tg‐SPC‐SFN +/− mice show a similar histology to human lung adenocarcinoma and exhibit high hSFN expression. In order to compare the genetic characteristics of Tg‐SPC‐SFN +/− tumors and human lung adenocarcinoma, the former were subjected to whole‐exome sequencing. Interestingly, Tg‐SPC‐SFN +/− tumors showed the distinct distribution of exonic mutations and high number of mutated genes and transversion. Moreover, Tg‐SPC‐ style="fixed-case">SFN +/− tumors showed 73 genes that were commonly detected in more than 2 tumors, mutations of which were also found in human lung adenocarcinoma. The expression levels of some of these genes were significantly associated with the clinical outcome of lung adenocarcinoma patients. Additionally, mutated genes in Tg‐ style="fixed-case">SPC‐ style="fixed-case">SFN +/− tumors were closely associated with key canonical pathways such as style="fixed-case">PI3K/ style="fixed-case">AKT signaling and apoptosis signaling. These results suggest that style="fixed-case">SFN overexpression is a universal abnormality in human lung adenocarcinogenesis and Tg‐ style="fixed-case">SPC‐ style="fixed-case">SFN +/− tumors recapitulate key features of major human lung adenocarcinoma. Therefore, Tg‐ style="fixed-case">SPC‐ style="fixed-case">SFN +/− mice provide a useful model for clarifying the molecular mechanism underlying lung adenocarcinogenesis.
机译:疾病模型(例如转基因小鼠或患有致癌物的肿瘤小鼠)中遗传变异的态势提供了大量信息,为人类非小细胞肺癌(NSCLC)的肿瘤发生过程提供了启示。我们之前已经鉴定出stratifin(SFN)是有效的癌基因,并产生了SFN转基因(Tg-SPC-SFN +/- )小鼠,它们仅在肺中表达人SFN(hSFN)。在这里,我们发现在Tg-SPC-SFN +/- 小鼠中,由致癌物烟碱衍生的亚硝基氨基酮(NNK)诱导的肿瘤表现出与人肺腺癌相似的组织学,并表现出高hSFN表达。为了比较Tg-SPC-SFN +/- 肿瘤和人肺腺癌的遗传特征,对前者进行了全外显子测序。有趣的是,Tg-SPC-SFN +/- 肿瘤表现出外显子突变的独特分布,突变基因的数量和颠倒现象都很多。此外,Tg-SPC- style =“ fixed-case”> SFN +/- 肿瘤显示了在2个以上的肿瘤中通常检测到的73个基因,它们的突变也在人肺腺癌中发现。其中一些基因的表达水平与肺腺癌患者的临床结局显着相关。此外,Tg- style =“ fixed-case”> SPC - style =“ fixed-case”> SFN +/- 肿瘤中的突变基因是与关键的规范途径密切相关,例如 style =“ fixed-case”> PI 3K / style =“ fixed-case”> AKT 信号和细胞凋亡信号。这些结果表明 style =“ fixed-case”> SFN 过表达是人类肺腺癌发生和Tg- style =“ fixed-case”> SPC -风格的普遍异常=“ fixed-case”> SFN +/- 肿瘤概括了主要人类肺腺癌的关键特征。因此,Tg- style =“ fixed-case”> SPC - style =“ fixed-case”> SFN +/- 小鼠提供了有用的模型阐明肺腺癌发生的分子机制。

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