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Amino acid substitutions modulate the effect of Jun on transformation, transcriptional activation and DNA replication
I M Morgan1, M Asano, L S Håvarstein
1Department of Microbiology, USC School of Medicine, Los Angeles 90033-1054.
Abstract:
The retroviral oncogene v-jun and its cellular counterpart code for proteins that function as major components of the transcription factor complex AP-1. Jun proteins bind to the AP-1 consensus sequence as homodimers or heterodimers with members of the Fos protein family. This report compares the ability of viral and cellular Jun proteins (v-Jun and c-Jun) to activate transcription and to stimulate DNA synthesis. The effect of amino acid substitutions on cellular transformation is also described. In F9 cells c-Jun is a more effective transactivator than v-Jun, which carries two amino acid substitutions in the carboxy-terminal region that together down-regulate transactivation. The delta deletion, present in the amino-terminal region of v-Jun, does not affect transactivation in F9 cells; however, it does modulate the stimulation of DNA synthesis. When delta is deleted, the amino acid substitutions are without consequence on DNA synthesis. In the presence of delta the amino acid substitutions down-regulate DNA synthesis. Deletion of the Jun transactivation domain, which is required for cellular transformation, abolishes both transactivation and stimulation of DNA synthesis. We conclude that transformation, transactivation and stimulation of DNA synthesis all depend on the presence of the transactivation domain. The three functions are, however, not tightly correlated, and further work is needed to define the role of the biochemical activities of Jun in oncogenesis.
Insights
Viral and cellular Jun proteins (v-Jun and c-Jun) differ in their ability to activate transcription and DNA synthesis. Both functions require the transactivation domain but are not tightly correlated with oncogenesis.
Area of Science:
- Molecular Biology
- Oncogenesis
- Gene Regulation
Background:
- The retroviral oncogene v-Jun and its cellular counterpart c-Jun are key components of the transcription factor AP-1.
- Jun proteins regulate gene expression by binding to the AP-1 consensus sequence as homodimers or heterodimers with Fos proteins.
Purpose of the Study:
- To compare the transactivation and DNA synthesis-stimulating abilities of viral (v-Jun) and cellular (c-Jun) proteins.
- To investigate the impact of specific amino acid substitutions and deletions in v-Jun on these functions and cellular transformation.
Main Methods:
- Functional assays in F9 cells to assess transactivation and DNA synthesis stimulation.
- Analysis of Jun protein variants with specific amino acid substitutions and deletions (e.g., delta deletion).
Main Results:
- c-Jun is a more potent transactivator than v-Jun in F9 cells due to carboxy-terminal amino acid substitutions in v-Jun.
- The delta deletion in v-Jun modulates DNA synthesis stimulation but not transactivation in F9 cells.
- Deletion of the Jun transactivation domain abrogates both transactivation and DNA synthesis stimulation.
Conclusions:
- Cellular transformation, transactivation, and DNA synthesis stimulation all necessitate the presence of the transactivation domain.
- These three functions are not strictly correlated, indicating complex regulatory mechanisms underlying Jun's role in oncogenesis.