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CDC25A phosphatase is a target of E2F and is required for efficient E2F-induced S phase
E Vigo1, H Müller, E Prosperini
1Department of Experimental Oncology, European Institute of Oncology, 20141 Milan, Italy.
Abstract:
Functional inactivation of the pRB pathway is a very frequent event in human cancer, resulting in deregulated activity of the E2F transcription factors. To understand the functional role of the E2Fs in cell proliferation, we have developed cell lines expressing E2F-1, E2F-2, and E2F-3 fused to the estrogen receptor ligand binding domain (ER). In this study, we demonstrated that activation of all three E2Fs could relieve the mitogen requirement for entry into S phase in Rat1 fibroblasts and that E2F activity leads to a shortening of the G(0)-G(1) phase of the cell cycle by 6 to 7 h. In contrast to the current assumption that E2F-1 is the only E2F capable of inducing apoptosis, we showed that deregulated E2F-2 and E2F-3 activities also result in apoptosis. Using the ERE2F-expressing cell lines, we demonstrated that several genes containing E2F DNA binding sites are efficiently induced by the E2Fs in the absence of protein synthesis. Furthermore, CDC25A is defined as a novel E2F target whose expression can be directly regulated by E2F-1. Data showing that CDC25A is an essential target for E2F-1, since its activity is required for efficient induction of S phase by E2F-1, are provided. Finally, our results show that expression of two E2F target genes, namely CDC25A and cyclin E, is sufficient to induce entry into S phase in quiescent fibroblasts. Taken together, our results provide an important step in defining how E2F activity leads to deregulated proliferation.
Insights
Dysregulated E2F transcription factors (E2F-1, E2F-2, E2F-3) drive cancer by promoting cell cycle entry and apoptosis. Activating these E2Fs accelerates cell division and induces S phase via CDC25A and cyclin E.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Functional inactivation of the pRB pathway is common in human cancers, leading to uncontrolled E2F transcription factor activity.
- E2F transcription factors play a crucial role in regulating cell proliferation.
Purpose of the Study:
- To investigate the functional roles of E2F-1, E2F-2, and E2F-3 in cell proliferation and apoptosis.
- To identify novel E2F target genes involved in cell cycle regulation.
Main Methods:
- Development of Rat1 fibroblast cell lines expressing estrogen receptor (ER)-fused E2F-1, E2F-2, and E2F-3.
- Activation of E2F activity by ER ligand addition.
- Analysis of cell cycle progression, apoptosis induction, and gene expression.
Main Results:
- Activation of E2F-1, E2F-2, and E2F-3 relieved the mitogen requirement for S phase entry and shortened the G(0)-G(1) phase.
- Deregulated E2F-2 and E2F-3 activities induced apoptosis, challenging the notion that only E2F-1 is apoptotic.
- CDC25A was identified as a novel E2F target gene directly regulated by E2F-1, essential for E2F-1-induced S phase entry.
- Expression of CDC25A and cyclin E was sufficient to induce S phase entry in quiescent fibroblasts.
Conclusions:
- E2F activity is a key driver of deregulated cell proliferation in cancer.
- E2F-1, E2F-2, and E2F-3 all contribute to cell cycle progression and apoptosis.
- CDC25A is a critical E2F target gene mediating E2F-1's role in S phase induction.