Scatter Factor/Hepatocyte Growth Factor Stimulation of Glioblastoma Cell Cycle Progression through G1 Is c-Myc Dependent and Independent of p27 Suppression, Cdk2 Activation, or E2F1-Dependent Transcription
Open Access
- 1 April 2002
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 22 (8) , 2703-2715
- https://doi.org/10.1128/mcb.22.8.2703-2715.2002
Abstract
Scatter factor/hepatocyte growth factor (SF/HGF) expression has been linked to malignant progression in glial neoplasms. Using two glioma cell lines, U373MG and SNB-19, we have demonstrated that SF/HGF stimulation allows cells to escape G1/G0 arrest induced by contact inhibition or serum withdrawal. SF/HGF induced effects on two mechanisms of cell cycle regulation: suppression of the cyclin-dependent kinase inhibitor p27 and induction of the transcription factor c-Myc. Regulation of p27 by SF/HGF was posttranslational and is associated with p27 nuclear export. Transient transfections of U373MG and SNB-19 with wild-type p27 and a degradation-resistant p27T187A mutant were insufficient to induce cell cycle arrest, and SF/HGF downregulation of p27 was not necessary for cell cycle reentry. Analysis of Cdk2 kinase activity and p27 binding to cyclin E complexes in the presence of exogenous wild-type p27 or p27T187A demonstrated that Cdk2 activity was not necessary for SF/HGF-mediated G1/S transition. Similarly, overexpression of dominant-negative forms of Cdk2 did not block SF/HGF-triggered cell cycle progression. In contrast, SF/HGF transcriptionally upregulated c-Myc, and overexpression of c-Myc was able to prevent G1/G0 arrest in the absence of SF/HGF. Transient overexpression of MadMyc, a dominant-negative chimera for c-Myc, caused G1/G0 arrest in logarithmically growing cells and blocked SF/HGF-mediated G1/S transition. c-Myc did not exert its effects through p27 downregulation in these cell lines. SF/HGF induced E2F1-dependent transcription, the inhibition of which did not block SF/HGF-induced cell cycle progression. We conclude that SF/HGF prevents G1/G0 arrest in glioma cell lines by a c-myc-dependent mechanism that is independent of p27, Cdk2, or E2F1.Keywords
This publication has 69 references indexed in Scilit:
- Cdk2-dependent Phosphorylation and Functional Inactivation of the pRB-related p130 Protein in pRB(−), p16INK4A(+) Tumor CellsPublished by Elsevier ,2000
- Induction of Vascular Endothelial Growth Factor in Human Astrocytes by LeadPublished by Elsevier ,2000
- Identification of an amplified gene cluster in glioma including two novel amplified genes isolated by exon trappingHuman Genetics, 1997
- Repression of c-Myc responsive genes in cycling cells causes G1 arrest through reduction of cyclin E/CDK2 kinase activityOncogene, 1997
- Scatter Factor/Hepatocyte Growth Factor Expression Enhances Human Glioblastoma Tumorigenicity and GrowthBiochemical and Biophysical Research Communications, 1997
- c-MycandMaxInteractions in Quiescent and Mitogen-Stimulated Primary HepatocytesExperimental Cell Research, 1996
- Coexpression of Hepatocyte Growth Factor and Its Receptor (c-met Oncogene) in HGL4 Glioblastoma CellsOncology, 1996
- Concomitant expression of hepatocyte growth factor (HGF), HGF activator and c‐met genes in human glioma cells in vitroFEBS Letters, 1995
- The receptor encoded by the human C‐MET oncogene is expressed in hepatocytes, epithelial cells and solid tumorsInternational Journal of Cancer, 1991
- Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications.Proceedings of the National Academy of Sciences, 1979