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Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Heterodimerization with Fra-1 cooperates with the ERK pathway to stabilize c-Jun in response to the RAS oncoprotein
1Institute of Genetics and Biophysics 'A. Buzzati Traverso,' CNR, Naples, Italy.
Abstract:
Multiple tumorigenic pathways converge on the activating protein-1 (AP-1) family of dimeric transcription complexes by affecting transcription, mRNA decay, posttranslational modifications, as well as stability of its JUN and FOS components. Several mechanisms have been implicated in the phosphorylation- and ubiquitylation-dependent control of c-Jun protein stability. Although its dimer composition has a major role in the regulation of AP-1, little is known about the influence of heterodimerization partners on the half-life of c-Jun. The FOS family member Fra-1 is overexpressed in various tumors and cancer cell lines wherein it controls motility, invasiveness, cell survival and cell division. Oncogene-induced accumulation of Fra-1 results from both increased transcription and phosphorylation-dependent stabilization of the protein. In this report, we describe a novel role of Fra-1 as a posttranslational regulator of c-Jun. By using both constitutively and inducible transformed rat thyroid cell lines, we found that c-Jun is stabilized in response to RAS oncoprotein expression. This stabilization requires the activity of the extracellular signal-related kinase (ERK) pathway, along with c-Jun heterodimerization with Fra-1. In particular, heterodimerization with Fra-1 inhibits c-Jun breakdown by a mechanism dependent on the phosphorylation of the Fra-1 C-terminal domain that positively controls the stability of the protein in response to ERK signaling. Therefore, Fra-1 modulates AP-1 dimer composition by promoting the accumulation of c-Jun in response to oncogenic RAS signaling.
Insights
Fra-1 stabilizes c-Jun protein, a key component of activating protein-1 (AP-1) transcription complexes, by inhibiting its breakdown. This interaction is crucial for oncogenic RAS signaling, impacting cancer cell behavior.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Signaling
Background:
- Activating protein-1 (AP-1) transcription factors are crucial in tumorigenesis, with their stability influenced by various posttranslational modifications.
- The FOS family member Fra-1 is frequently overexpressed in cancers and regulates key oncogenic processes.
- Little is known about how AP-1 dimer composition affects the stability of its components, particularly c-Jun.
Purpose of the Study:
- To investigate the novel role of Fra-1 as a posttranslational regulator of c-Jun stability.
- To elucidate the mechanisms by which oncogenic RAS signaling influences c-Jun stability through Fra-1.
- To understand how heterodimerization with Fra-1 impacts c-Jun half-life.
Main Methods:
- Utilized constitutively and inducibly transformed rat thyroid cell lines.
- Investigated the role of the extracellular signal-related kinase (ERK) pathway.
- Analyzed the impact of c-Jun heterodimerization with Fra-1 on c-Jun protein stability.
Main Results:
- Oncogenic RAS expression leads to the stabilization of c-Jun.
- Fra-1 acts as a posttranslational regulator, stabilizing c-Jun.
- Fra-1-mediated c-Jun stabilization is dependent on ERK pathway activity and Fra-1 C-terminal domain phosphorylation.
- Heterodimerization with Fra-1 inhibits c-Jun degradation.
Conclusions:
- Fra-1 promotes c-Jun accumulation in response to oncogenic RAS signaling by inhibiting c-Jun breakdown.
- Fra-1 modulates AP-1 dimer composition and influences oncogenic signaling pathways.
- The phosphorylation of Fra-1's C-terminal domain is critical for stabilizing c-Jun in response to ERK signaling.
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