Expression of transcription factor E2F1 induces quiescent cells to enter S phase
- 1 September 1993
- journal article
- Published by Springer Nature in Nature
- Vol. 365 (6444) , 349-352
- https://doi.org/10.1038/365349a0
Abstract
Several lines of evidence implicate the E2F transcription factor as an important component of cell proliferation control. First, E2F binding sites are found in the promoters of genes responsive to proliferation signals and the level of E2F binding activity increases at a time when many of these genes are activated. Second, the tumour suppressor protein Rb, as well as the related p107 protein, complexes with E2F, resulting in an inhibition of E2F transcriptional activity. Third, oncogenic products of the DNA tumour viruses can dissociate these E2F complexes. We provide here direct evidence that E2F is involved in cellular proliferation control. Specifically, we demonstrate that overexpression of the E2F1 complementary DNA can activate DNA synthesis in cells that would otherwise growth-arrest, with an efficiency that is similar to that achieved by the expression of the adenovirus E1A gene. Moreover, microinjection of the E2F1 cDNA into quiescent cells can induce S-phase entry, whereas two E2F1 mutants, which are unable to transactivate the DHFR and TK promoters, are unable to induce S phase. We conclude that the E2F transcription factor plays an important role in progression into S phase and that this probably coincides with its capacity to stimulate transcription.Keywords
This publication has 31 references indexed in Scilit:
- E2F: a Link Between the Rb Tumor Suppressor Protein and Viral OncoproteinsScience, 1992
- Retinoblastoma protein switches the E2F site from positive to negative elementNature, 1992
- Identification of a growth suppression domain within the retinoblastoma gene product.Genes & Development, 1992
- The interaction of RB with E2F coincides with an inhibition of the transcriptional activity of E2F.Genes & Development, 1992
- The retinoblastoma gene product regulates progression through the G1 phase of the cell cycleCell, 1991
- The E2F transcription factor is a cellular target for the RB proteinCell, 1991
- Cell cycle regulation of the E2F transcription factor involves an interaction with cyclin ACell, 1991
- The retinoblastoma protein copurifies with E2F-I, an E1A-regulated inhibitor of the transcription factor E2FCell, 1991
- Adenovirus E1a prevents the retinoblastoma gene product from complexing with a cellular transcription factorNature, 1991
- Functional domains of adenovirus type 5 E1a proteinsCell, 1987