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An Arf-Egr-C/EBPβ pathway linked to ras-induced senescence and cancer
Jacqueline Salotti1, Krisada Sakchaisri1, Warren G Tourtellotte2
1Mouse Cancer Genetics Program, Center for Cancer Research, National Cancer Institute, Frederick, Maryland, USA.
Abstract:
Oncogene-induced senescence (OIS) protects normal cells from transformation by Ras, whereas cells lacking p14/p19(Arf) or other tumor suppressors can be transformed. The transcription factor C/EBPβ is required for OIS in primary fibroblasts but is downregulated by H-Ras(V12) in immortalized NIH 3T3 cells through a mechanism involving p19(Arf) loss. Here, we report that members of the serum-induced early growth response (Egr) protein family are also downregulated in 3T3(Ras) cells and directly and redundantly control Cebpb gene transcription. Egr1, Egr2, and Egr3 recognize three sites in the Cebpb promoter and associate transiently with this region after serum stimulation, coincident with Cebpb induction. Codepletion of all three Egrs prevented Cebpb expression, and serum induction of Egrs was significantly blunted in 3T3(Ras) cells. Egr2 and Egr3 levels were also reduced in Ras(V12)-expressing p19(Arf) null mouse embryonic fibroblasts (MEFs), and overall Egr DNA-binding activity was suppressed in Arf-deficient but not wild-type (WT) MEFs, leading to Cebpb downregulation. Analysis of human cancers revealed a strong correlation between EGR levels and CEBPB expression, regardless of whether CEBPB was increased or decreased in tumors. Moreover, overexpression of Egrs in tumor cell lines induced CEBPB and inhibited proliferation. Thus, our findings identify the Arf-Egr-C/EBPβ axis as an important determinant of cellular responses (senescence or transformation) to oncogenic Ras signaling.
Insights
The Arf-Egr-C/EBPβ axis regulates cellular responses to oncogenic Ras signaling. Loss of Arf leads to Egr downregulation, suppressing C/EBPβ and promoting transformation.
Area of Science:
- Molecular Biology
- Cellular Biology
- Oncology
Background:
- Oncogene-induced senescence (OIS) is a tumor-suppressive mechanism.
- Ras transformation bypasses OIS in cells lacking tumor suppressors like p19(Arf).
- C/EBPβ is crucial for OIS but downregulated by Ras signaling.
Purpose of the Study:
- Investigate the role of early growth response (Egr) proteins in Ras-mediated transformation.
- Elucidate the mechanism linking Arf loss, Egrs, and C/EBPβ regulation.
- Determine the clinical relevance of the Arf-Egr-C/EBPβ axis in cancer.
Main Methods:
- Gene expression analysis in cell lines (NIH 3T3, MEFs) and human cancers.
- Transcription factor binding assays (promoter analysis).
- Gene knockdown and overexpression studies.
Main Results:
- Egr1, Egr2, and Egr3 directly and redundantly control Cebpb transcription.
- Ras transformation and Arf loss blunt serum-induced Egr expression and activity.
- Egr downregulation in Arf-deficient cells leads to Cebpb suppression.
- Human cancers show correlations between EGR and CEBPB levels.
- Egr overexpression inhibits tumor cell proliferation.
Conclusions:
- The Arf-Egr-C/EBPβ axis is a key regulator of cellular fate under oncogenic Ras signaling.
- This pathway determines whether cells undergo senescence or transformation.
- The identified axis represents a potential therapeutic target in Ras-driven cancers.
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