Rhabdomyosarcoma – working out the pathways
Open Access
- 20 September 1999
- journal article
- review article
- Published by Springer Nature in Oncogene
- Vol. 18 (38) , 5340-5348
- https://doi.org/10.1038/sj.onc.1203038
Abstract
Rhabdomyosarcomas constitute a collection of childhood malignancies thought to arise as a consequence of regulatory disruption of skeletal muscle progenitor cell growth and differentiation. Our understanding of the pathogenesis of this neoplasm has recently benefited from the study of normal and malignant myogenic cells in vitro, facilitating the identification of diagnostic cytogenetic markers and the elucidation of mechanisms by which myogenesis is regulated. It is now appreciated that the delicate balance between proliferation and differentiation, mutually exclusive yet intimately associated processes, is normally controlled in large part through the action of a multitude of growth factors, whose signals are interpreted by members of the MyoD family of helix – loop – helix proteins, and key regulatory cell cycle factors. The latter have proven to be frequent targets of mutational events that subvert myogenesis and promote the development of rhabdomyosarcoma. Although significant progress has been made in the treatment of rhabdomyosarcoma, patients presenting with metastatic disease or certain high risk features are still faced with a dismal prognosis. Only now are genetically engineered mouse models becoming available that are certain to provide fresh insights into the molecular/genetic pathways by which rhabdomyosarcomas arise and progress, and to suggest novel avenues of therapeutic opportunity.Keywords
This publication has 111 references indexed in Scilit:
- Duplication of ATR inhibits MyoD, induces aneuploidy and eliminates radiation-induced G1 arrestNature Genetics, 1998
- Allelotype of pediatric rhabdomyosarcomaOncogene, 1997
- Regulation of p53 stability by Mdm2Nature, 1997
- Mdm2 promotes the rapid degradation of p53Nature, 1997
- Analysis of cyclin-dependent kinase inhibitor genes (CDKN2A, CDKN2B, andCDKN2C) in childhood rhabdomyosarcomaGenes, Chromosomes and Cancer, 1996
- Myogenin gene disruption results in perinatal lethality because of severe muscle defectNature, 1993
- Muscle deficiency and neonatal death in mice with a targeted mutation in the myogenin geneNature, 1993
- Interplay between proliferation and differentiation within the myogenic lineageDevelopmental Biology, 1992
- Recent papersMedicine and War, 1992
- Anatomische Untersuchung einer hypertrophischen Zunge nebst Bemerkungen über die Neubildung quergestreifter MuskelfasernVirchows Archiv, 1854