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通过表达谱、FGFR3突变状态和9号染色体长臂缺失对早期膀胱癌进行分子特征分析。

Molecular characterization of early-stage bladder carcinomas by expression profiles, FGFR3 mutation status, and loss of 9q.

作者信息

Lindgren D, Liedberg F, Andersson A, Chebil G, Gudjonsson S, Borg A, Månsson W, Fioretos T, Höglund M

机构信息

Department of Clinical Genetics, Lund University Hospital, Lund, Sweden.

出版信息

Oncogene. 2006 Apr 27;25(18):2685-96. doi: 10.1038/sj.onc.1209249.

Abstract

We used gene expression profiling, mutation analyses of FGFR3 and TP53, and LOH analyses of chromosome 9 and the TP53 region on chromosome arm 17p, to molecularly characterize 75 Ta and T1 bladder carcinomas. We identified four major cellular processes related to cell cycle, protein synthesis, immune response, and extra cellular components that contribute to the expressional heterogeneity of early-stage urothelial cell carcinoma (UCC). Activating FGFR3 mutations were found at the highest frequency in G1 tumors (80%), and showed a strong correlation with FGFR3 expression. In contrast, G3 tumors displayed mutations in less than 10% of the cases and a low level of FGFR3 expression. Even though LOH on chromosome 9 was not associated with any specific expression pattern, our data indicate that loss of chromosome 9 is associated with tumor development rather than initiation. The combined analyses suggest the existence of two types of UCC tumors, one which is characterized by FGFR3 mutation or expression, high expression of protein synthesis genes, and low expression of cell cycle genes. Furthermore, the presented data underscore FGFR3 receptor involvement in urothelial cell transformation as the presence of FGFR3 mutations has a major impact on the global gene expression profile of bladder carcinomas.

摘要

我们运用基因表达谱分析、FGFR3和TP53的突变分析以及9号染色体和17号染色体短臂上TP53区域的杂合性缺失(LOH)分析,对75例Ta期和T1期膀胱癌进行分子特征分析。我们确定了与细胞周期、蛋白质合成、免疫反应和细胞外成分相关的四个主要细胞过程,这些过程导致了早期尿路上皮细胞癌(UCC)的表达异质性。激活型FGFR3突变在G1肿瘤中出现的频率最高(80%),并且与FGFR3表达呈强相关。相反,G3肿瘤中不到10%的病例出现突变,且FGFR3表达水平较低。尽管9号染色体上的杂合性缺失与任何特定的表达模式均无关联,但我们的数据表明9号染色体缺失与肿瘤发展而非起始有关。综合分析表明存在两种类型的UCC肿瘤,一种以FGFR3突变或表达、蛋白质合成基因高表达以及细胞周期基因低表达为特征。此外,所呈现的数据强调了FGFR3受体参与尿路上皮细胞转化,因为FGFR3突变的存在对膀胱癌的整体基因表达谱有重大影响。

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