Identification of Potential Human Oncogenes by Mapping the Common Viral Integration Sites in Avian Nephroblastoma
Open Access
- 1 January 2006
- journal article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 66 (1) , 78-86
- https://doi.org/10.1158/0008-5472.can-05-1728
Abstract
Gene deregulation is a frequent cause of malignant transformation. Alteration of the gene structure and/or expression leading to cellular transformation and tumor growth can be experimentally achieved by insertion of the retroviral genome into the host DNA. Retrovirus-containing host loci found repeatedly in clonal tumors are called common viral integration sites (cVIS). cVIS are located in genes or chromosomal regions whose alterations participate in cellular transformation. Here, we present the chicken model for the identification of oncogenes and tumor suppressor genes in solid tumors by mapping the cVIS. Using the combination of inverse PCR and long terminal repeat-rapid amplification of cDNA ends technique, we have analyzed 93 myeloblastosis-associated virus type 2–induced clonal nephroblastoma tumors in detail, and mapped >500 independent retroviral integration sites. Eighteen genomic loci were hit repeatedly and thus classified as cVIS, five of these genomic loci have previously been shown to be involved in malignant transformation of different human cell types. The expression levels of selected genes and their human orthologues have been assayed in chicken and selected human renal tumor samples, and their possible correlation with tumor development, has been suggested. We have found that genes associated with cVIS are frequently, but not in all cases, deregulated at the mRNA level as a result of proviral integration. Furthermore, the deregulation of their human orthologues has been observed in the samples of human pediatric renal tumors. Thus, the avian nephroblastoma is a valid source of cancer-associated genes. Moreover, the results bring deeper insight into the molecular background of tumorigenesis in distant species. (Cancer Res 2006; 66(1): 78-86)Keywords
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This publication has 27 references indexed in Scilit:
- Sequence and comparative analysis of the chicken genome provide unique perspectives on vertebrate evolutionNature, 2004
- Cancer genes and the pathways they controlNature Medicine, 2004
- Twist, a Master Regulator of Morphogenesis, Plays an Essential Role in Tumor MetastasisCell, 2004
- A census of human cancer genesNature Reviews Cancer, 2004
- The twist gene is a common target of retroviral integration and transcriptional deregulation in experimental nephroblastomaOncogene, 2003
- New genes involved in cancer identified by retroviral taggingNature Genetics, 2002
- Preferential integration of human immunodeficiency virus type 1 into genes, cytogenetic R bands and GC‐rich DNA regions: insight from the human genome sequenceFEBS Letters, 2002
- Sprouty2 Inhibits the Ras/MAP Kinase Pathway by Inhibiting the Activation of RafJournal of Biological Chemistry, 2002
- twist is a potential oncogene that inhibits apoptosisGenes & Development, 1999
- Promoter swapping between the genes for a novel zinc finger protein and β-catenin in pleiomorphic adenomas with t(3;8)(p21;q12) translocationsNature Genetics, 1997