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NF-kappa B is required for H-ras oncogene induced abnormal cell proliferation and tumorigenesis
1The Vanderbilt-Ingram Cancer Center, Department of Cell Biology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.
Abstract:
Oncogenic mutations in ras lead to constitutive activation of downstream signaling pathways that modulate the activities of transcription factors. In turn, these factors control the expression of a subset of genes responsible for neoplastic cell transformation. Recent studies suggest that transcription factor NF-kappa B contributes to cell transformation by inhibiting the cell death signal activated by oncogenic Ras. In this study, inhibition of NF-kappa B activity by forced expression of a super-repressor form of I kappa B alpha, the major inhibitor of NF-kappa B, markedly decreased the growth rate, saturation density and tumorigenicity of oncogenic H-Ras transformed rat embryo fibroblasts. Such clonally isolated cells overexpressing I kappa B alpha super-repressor not only were viable but also exhibited no sign of spontaneous apoptosis. Inhibition of NF-kappa B in these cells was functionally demonstrated by both the loss of cytokine induced DNA binding activity and a profoundly increased sensitivity to cell death in response to TNF-alpha treatment. In contrast, inhibition of NF-kappa B activity in non-transformed fibroblasts had minimal effect on growth, but rendered the cells resistant to a subsequent transformation by H-ras oncogene. Similar results were also obtained with rat intestinal epithelial cells harboring an inducible ras oncogene. Taken together, these findings suggest that NF-kappa B activity is essential for abnormal cell proliferation and tumorigenicity activated by the ras oncogene and highlight an alternative functional role for NF-kappa B in oncogenic Ras-mediated cell transformation that is distinct from its anti-apoptotic activity. Oncogene (2000) 19, 841 - 849.
Insights
Nuclear factor-kappa B (NF-kappa B) is essential for Ras-driven cancer cell growth and tumor formation. Inhibiting NF-kappa B reduces proliferation and tumorigenicity, revealing a role beyond just preventing cell death.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Oncogenic Ras mutations activate signaling pathways controlling gene expression vital for cell transformation.
- Transcription factor NF-kappa B is implicated in Ras-mediated cell transformation, potentially by counteracting cell death signals.
Purpose of the Study:
- To investigate the role of NF-kappa B activity in oncogenic Ras-mediated cell transformation.
- To determine if NF-kappa B inhibition affects the proliferation and tumorigenicity of Ras-transformed cells.
Main Methods:
- Forced expression of a super-repressor form of I kappa B alpha to inhibit NF-kappa B activity.
- Assessing growth rate, saturation density, and tumorigenicity of Ras-transformed fibroblasts.
- Evaluating sensitivity to TNF-alpha-induced cell death and cytokine-induced DNA binding activity.
Main Results:
- Inhibition of NF-kappa B markedly decreased growth rate, saturation density, and tumorigenicity in H-Ras transformed fibroblasts.
- Ras-transformed cells with inhibited NF-kappa B showed increased sensitivity to TNF-alpha-induced cell death.
- Inhibition of NF-kappa B in non-transformed cells conferred resistance to subsequent Ras transformation.
Conclusions:
- NF-kappa B activity is crucial for Ras oncogene-induced abnormal cell proliferation and tumorigenicity.
- NF-kappa B plays a role in Ras-mediated cell transformation that is distinct from its anti-apoptotic function.