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Transforming p21ras mutants and c-Ets-2 activate the cyclin D1 promoter through distinguishable regions
C Albanese1, J Johnson, G Watanabe
1Division of Endocrinology, Metabolism, and Molecular Medicine, Northwestern University Medical School, Chicago, Illinois 60611, USA.
Abstract:
Several different oncogenes and growth factors promote G1 phase progression. Cyclin D1, the regulatory subunit of several cyclin-dependent kinases, is required for, and capable of shortening, the G1 phase of the cell cycle. The present study demonstrates that transforming mutants of p21ras (Ras Val-12, Ras Leu-61) induce the cyclin D1 promoter in human trophoblasts (JEG-3), mink lung epithelial (Mv1.Lu), and in Chinese hamster ovary fibroblast cell lines. Site-directed mutagenesis of AP-1-like sequences at -954 abolished p21ras-dependent activation of cyclin D1 expression. The AP-1-like sequences were also required for activation of the cyclin D1 promoter by c-Jun. In electrophoretic mobility shift assays using nuclear extracts from cultured cells and primary tissues, several AP-1 proteins (c-Jun, JunB, JunD, and c-Fos) bound the cyclin D1 -954 region. Cyclin D1 promoter activity was stimulated by overexpression of mitogen-activated protein kinase (p41MAPK) or c-Ets-2 through the proximal 22 base pairs. Expression of plasmids encoding either dominant negative MAPK (p41MAPKi) or dominant negatives of ETS activation (Ets-LacZ), antagonized MAPK-dependent induction of cyclin D1 promoter activity. Epidermal growth factor induction of cyclin D1 transcription, through the proximal promoter region, was antagonized by either p41MAPKi or Ets-LacZ, suggesting that ETS functions downstream of epidermal growth factor and MAPK in the context of the cyclin D1 promoter. The activation of cyclin D1 transcription by p21ras provides evidence for cross-talk between the p21ras and cell cycle regulatory pathways.
Insights
Transforming Ras mutants activate cyclin D1 gene expression by binding to AP-1 sites. This study reveals cross-talk between Ras signaling and cell cycle regulation pathways, impacting G1 phase progression.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Cyclin D1 is crucial for G1 phase progression and cell cycle regulation.
- Oncogenes and growth factors influence G1 phase, with Cyclin D1 playing a key role.
Purpose of the Study:
- To investigate the role of p21ras mutants in inducing Cyclin D1 promoter activity.
- To identify the specific DNA elements and transcription factors involved in p21ras-mediated Cyclin D1 induction.
Main Methods:
- Utilized site-directed mutagenesis to analyze AP-1-like sequences in the Cyclin D1 promoter.
- Employed electrophoretic mobility shift assays (EMSA) to study transcription factor binding.
- Assessed promoter activity through reporter gene assays and dominant-negative approaches.
Main Results:
- Transforming p21ras mutants induced Cyclin D1 promoter activity in multiple cell lines.
- AP-1-like sequences at -954 were essential for p21ras- and c-Jun-mediated Cyclin D1 activation.
- AP-1 proteins (c-Jun, JunB, JunD, c-Fos) bound to the Cyclin D1 promoter's -954 region.
- Mitogen-activated protein kinase (MAPK) and c-Ets-2 activated Cyclin D1 transcription via the proximal promoter.
- ETS factors function downstream of epidermal growth factor and MAPK in regulating Cyclin D1 transcription.
Conclusions:
- p21ras activates Cyclin D1 transcription, indicating cross-talk between Ras and cell cycle pathways.
- AP-1 transcription factors are critical mediators of p21ras-induced Cyclin D1 expression.
- The MAPK/ETS pathway is involved in growth factor-induced Cyclin D1 transcription.