Differential regulation of E2F transactivation by cyclin/cdk2 complexes.
Open Access
- 1 August 1994
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 8 (15) , 1772-1786
- https://doi.org/10.1101/gad.8.15.1772
Abstract
The mammalian transcription factor E2F plays a critical role in the expression of genes required for cellular proliferation. To understand how E2F is regulated, we have developed a reconstituted in vitro transcription assay. Using this E2F-responsive assay, we can demonstrate that E2F-mediated transcription can be directly repressed by the tumor suppressor protein pRB. This inhibition is abolished by phosphorylation of pRB with either cyclin A/cdk2 or cyclin E/cdk2. However, these cyclin/kinase complexes exhibit differences in the ability to phosphorylate E2F. Only cyclin A/cdk2 can phosphorylate E2F effectively, and this phosphorylation abolishes its ability to bind DNA and mediate trans-activation. Thus, this in vitro transcriptional assay allows activation and inactivation of E2F transcription, and our findings demonstrate how transcriptional regulation of E2F can be linked to cell cycle-dependent activation of kinases.Keywords
This publication has 77 references indexed in Scilit:
- Negative regulation of the growth-promoting transcription factor E2F-1 by a stably bound cyclin A-dependent protein kinaseCell, 1994
- Mitotic Repression of RNA Polymerase III Transcription in Vitro Mediated by Phosphorylation of a TFIIIB ComponentScience, 1994
- p21 is a universal inhibitor of cyclin kinasesNature, 1993
- WAF1, a potential mediator of p53 tumor suppressionCell, 1993
- GDNF: a Glial Cell Line-Derived Neurotrophic Factor for Midbrain Dopaminergic NeuronsScience, 1993
- Retinoblastoma protein switches the E2F site from positive to negative elementNature, 1992
- The interaction of RB with E2F coincides with an inhibition of the transcriptional activity of E2F.Genes & Development, 1992
- Structure and functional properties of human general transcription factor IIENature, 1991
- The product of the retinoblastoma susceptibility gene has properties of a cell cycle regulatory elementCell, 1989
- Phosphorylation of the retinoblastoma gene product is modulated during the cell cycle and cellular differentiationCell, 1989