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首页> 外文期刊>Oncogene >Molecular profiling of mouse lung tumors: association with tumor progression, lung development, and human lung adenocarcinomas
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Molecular profiling of mouse lung tumors: association with tumor progression, lung development, and human lung adenocarcinomas

机译:小鼠肺部肿瘤的分子谱分析:与肿瘤进展,肺部发育和人肺腺癌相关

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We have performed oligonucleotide array analysis on various murine lung tissues [normal lungs, lung adenomas, and lung adenocarcinomas (ACs)] using Affymetrix U74Av2 GeneChips to examine the complex genetic changes occurring during lung carcinogenesis. Analysis yielded 20 novel genes differentially expressed in both lung adenomas and ACs versus normal lungs, including the tumor suppressor APC2 and the oncogene Ros 1. In addition, 50 genes were found to be differentially expressed in lung adenomas versus lung ACs, including the differentiation factor Hox C6, the oncogene Ets 2, and the Ras nuclear transport factor, nuclear transport factor 2. To understand the potential relationship between genes expressed in murine lung tumors and its relationship to altered gene expression observed during embryogenesis and postnatal development, tissues from embryonic lungs and from lungs of mice up to 4 weeks following birth were examined using Affymetrix U74Av2 GeneChips. From this analysis, approximately 1300 genes were determined to exhibit differential expression in fetal lung versus postnatal lung. When we compared lung adenomas, lung ACs, and normal lung parenchyma, 24 developmentally regulated genes were found aberrantly expressed in lung tumors; these included the cell cycle control factor CDC5, the cellular differentiation factor TEA domain 4, and the proapoptotic factor BNIP 2. Finally, we compared the murine lung tumor gene expression data to the expression of genes in human lung cancer, in order to assess the relevance of murine lung cancer models in the study of human AC formation. When the 17 human lung ACs and six human lung large cell carcinomas were examined, it was found that 13 of the 17 human lung ACs clustered tightly together in a pattern that was different from the remaining four human lung ACs and six large cell carcinomas, which exhibited a different pattern. Interestingly, the mouse lung adenomas appeared similar to 13 clustered ACs, while mouse lung ACs appeared more similar in pattern to the group consisting of four ACs and six large-cell carcinomas (LCCs). Nevertheless, when compared with the combined human ACs, 39 genes with similar expression changes in murine lung tumors and human ACs/LCCs were identified, such as the oncogene-related BCL7B, the cell cycle regulator CDK4, and the proapoptotic Endophilin B1. Overall, we have determined, for the first time, the expression profiles during murine lung tumor progression and have established, at the molecular level, an association between murine lung tumorigenesis and lung development. We have also attempted to compare the expression profiles found in mouse lung cancers and those in human lung ACs.
机译:我们已经使用Affymetrix U74Av2基因芯片对各种鼠科肺组织[正常肺,肺腺瘤和肺腺癌(AC)]进行了寡核苷酸阵列分析,以检查在肺癌发生过程中发生的复杂遗传变化。分析产生了20个在肺腺瘤和AC中与正常肺差异表达的新基因,包括抑癌剂APC2和癌基因Ros1。此外,发现50个基因在肺腺瘤中相对于肺AC差异表达,包括分化因子。 Hox C6,致癌基因Ets 2和Ras核转运因子,核转运因子2。为了了解在小鼠肺部肿瘤中表达的基因之间的潜在关系,以及在胚胎发生和出生后发育,胚胎肺组织中观察到的基因表达改变的关系使用Affymetrix U74Av2 GeneChips检查了出生后4周内小鼠的肺脏和肺部。根据该分析,确定了大约1300个基因在胎儿肺与出生后肺中表现出差异表达。当我们比较肺腺瘤,肺AC和正常肺实质时,发现有24个发育调控基因在肺肿瘤中异常表达。其中包括细胞周期控制因子CDC5,细胞分化因子TEA结构域4和促凋亡因子BNIP2。最后,我们将鼠肺肿瘤基因表达数据与人肺癌中的基因表达进行了比较,以评估鼠肺癌模型在人类AC形成研究中的相关性。在检查了17个人肺AC和6个人肺大细胞癌时,发现17个人肺AC中的13个以与其余四个人肺AC和6个大细胞癌不同的模式紧密地聚集在一起。表现出不同的模式。有趣的是,小鼠肺腺瘤与13个簇状AC相似,而小鼠肺AC的形态与由4个AC和6个大细胞癌(LCC)组成的组更相似。然而,与合并的人类ACs相比,在鼠类肺部肿瘤和人类ACs / LCCs中发现了39个表达变化相似的基因,例如癌基因相关的BCL7B,细胞周期调节剂CDK4和促凋亡的内啡肽B1。总体而言,我们首次确定了鼠肺肿瘤进展过程中的表达谱,并在分子水平上建立了鼠肺肿瘤发生与肺发育之间的关联。我们还试图比较在小鼠肺癌和人肺AC中发现的表达谱。

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