Targeted expression of MYCN causes neuroblastoma in transgenic mice
Open Access
- 1 June 1997
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 16 (11) , 2985-2995
- https://doi.org/10.1093/emboj/16.11.2985
Abstract
The proto‐oncogene MYCN is often amplified in human neuroblastomas. The assumption that the amplification contributes to tumorigenesis has never been tested directly. We have created transgenic mice that overexpress MYCN in neuroectodermal cells and develop neuroblastoma. Analysis of tumors by comparative genomic hybridization revealed gains and losses of at least seven chromosomal regions, all of which are syntenic with comparable abnormalities detected in human neuroblastomas. In addition, we have shown that increases in MYCN dosage or deficiencies in either of the tumor suppressor genes NF1 or RB1 can augment tumorigenesis by the transgene. Our results provide direct evidence that MYCN can contribute to the genesis of neuroblastoma, suggest that the genetic events involved in the genesis of neuroblastoma can be tumorigenic in more than one chronological sequence, and offer a model for further study of the pathogenesis and therapy of neuroblastoma.Keywords
This publication has 38 references indexed in Scilit:
- Cdc25 cell-cycle phosphatase as a target of c-mycNature, 1996
- High-Resolution Mapping of a 130-kb Core Region of theMYCNAmplicon in NeuroblastomasGenomics, 1996
- Co‐amplification and concomitant high levels of expression of a DEAD box gene with MYCN in human neuroblastomaGenes, Chromosomes and Cancer, 1995
- Neuroblastoma: a clinical challenge and biologic puzzleCA: A Cancer Journal for Clinicians, 1995
- Computer image analysis of comparative genomic hybridizationCytometry, 1995
- A Genetic Linkage Map of the Mouse: Current Applications and Future ProspectsScience, 1993
- Allelic loss of chromosome 1p36 in neuroblastoma is of preferential maternal origin and correlates with N–myc amplificationNature Genetics, 1993
- Effects of an Rb mutation in the mouseNature, 1992
- Neuroblastoma consensus deletion maps to 1p36.1–2Genes, Chromosomes and Cancer, 1989
- Catecholaminergic Differentiation Associated with S100 Protein-Positive Elements in Human NeuroblastomaEuropean Journal of Pediatric Surgery, 1986