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Suppression of oncogene-induced transformation by a deletion mutant of c-jun
P H Brown1, R Alani, L H Preis
1Biomarkers and Prevention Research Branch, National Cancer Institute, Kensington, Maryland 20895.
Abstract:
Jun and Fos proteins are DNA-binding proteins that are involved in the control of gene expression through transcriptional regulation. We have made a deletion mutant of the c-jun gene that lacks amino acids 3-122 of c-jun, and thus is missing the major transactivation domain of c-jun, but retains the DNA-binding and leucine zipper domains. Unlike c-Jun, the mutant protein is unable to stimulate the transcription of an AP-1 responsive gene, and unlike c-jun this mutant gene is unable to transform rat embryo cells in cooperation with an activated ras gene. However, this mutant protein blocks in vitro DNA binding of Jun-Jun homodimers and Jun-Fos heterodimers, transcriptional activation induced by c-jun or c-fos and transformation of rat embryo cells induced by an activated ras gene and a deregulated c-jun or c-fos gene. In addition, transformation of rat embryo cells induced by an activated ras gene in the presence of the tumor promoter 12-O-tetradecanoyl phorbol 13-acetate (TPA) or by ras plus SV40 large T antigen is also inhibited by this dominant-negative mutant, suggesting that a member of the jun or fos family is involved in the pathways leading to transformation in these systems as well. The possible molecular mechanisms by which this dominant-negative mutant of c-jun blocks the functions of wild-type jun and fos family members are discussed.
Insights
A new c-jun mutant protein inhibits DNA binding and transcriptional regulation by Jun and Fos proteins. This dominant-negative mutant also blocks cell transformation, suggesting jun/fos involvement in these processes.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Jun and Fos proteins are key transcription factors regulating gene expression.
- They bind DNA and control cellular processes, including transformation.
- Understanding their function is crucial for cancer research.
Purpose of the Study:
- To investigate the role of the c-jun transactivation domain.
- To create and characterize a dominant-negative mutant of c-jun.
- To explore the involvement of jun/fos proteins in cell transformation.
Main Methods:
- Deletion mutagenesis of the c-jun gene.
- Assays for DNA binding, transcriptional activation, and cell transformation.
- Co-expression studies with ras and other oncogenes.
Main Results:
- A c-jun mutant lacking the transactivation domain retained DNA-binding but lost transcriptional activity.
- This mutant protein inhibited DNA binding of Jun-Jun and Jun-Fos dimers.
- The mutant blocked ras-induced cell transformation, even with other oncogenes or TPA stimulation.
Conclusions:
- The c-jun transactivation domain is essential for its function in gene regulation and cell transformation.
- A dominant-negative c-jun mutant can effectively inhibit wild-type jun and fos activity.
- Jun and fos family members play a significant role in oncogenic transformation pathways.