Application of comparative functional genomics to identify best-fit mouse models to study human cancer
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- 21 November 2004
- journal article
- research article
- Published by Springer Nature in Nature Genetics
- Vol. 36 (12) , 1306-1311
- https://doi.org/10.1038/ng1481
Abstract
Genetically modified mice have been extensively used for analyzing the molecular events that occur during tumor development. In many, if not all, cases, however, it is uncertain to what extent the mouse models reproduce features observed in the corresponding human conditions1,2,3. This is due largely to lack of precise methods for direct and comprehensive comparison at the molecular level of the mouse and human tumors. Here we use global gene expression patterns of 68 hepatocellular carcinomas (HCCs) from seven different mouse models and 91 human HCCs from predefined subclasses4 to obtain direct comparison of the molecular features of mouse and human HCCs. Gene expression patterns in HCCs from Myc, E2f1 and Myc E2f1 transgenic mice were most similar to those of the better survival group of human HCCs, whereas the expression patterns in HCCs from Myc Tgfa transgenic mice and in diethylnitrosamine-induced mouse HCCs were most similar to those of the poorer survival group of human HCCs. Gene expression patterns in HCCs from Acox1−/− mice and in ciprofibrate-induced HCCs were least similar to those observed in human HCCs. We conclude that our approach can effectively identify appropriate mouse models to study human cancers.Keywords
This publication has 27 references indexed in Scilit:
- Classification and prediction of survival in hepatocellular carcinoma by gene expression profilingHepatology, 2004
- Comparative biology of mouse versus human cells: modelling human cancer in miceNature Reviews Cancer, 2003
- Genomic regulatory regions: insights from comparative sequence analysisCurrent Opinion in Genetics & Development, 2003
- Comparative genomics: genome-wide analysis in metazoan eukaryotesNature Reviews Genetics, 2003
- Computational Genomics of Noncoding RNA GenesCell, 2002
- Building ‘validated’ mouse models of human cancerCurrent Opinion in Cell Biology, 2001
- Conserved noncoding sequences are reliable guides to regulatory elementsTrends in Genetics, 2000
- Studying cancer in the mouseOncogene, 1999
- Non-Darwinian EvolutionScience, 1969
- Evolutionary Rate at the Molecular LevelNature, 1968