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Elevated expression of Ets2 or distinct portions of Ets2 can reverse Ras-mediated cellular transformation
G Foos1, J J García-Ramírez, C K Galang
1La Jolla Cancer Research Center, The Burnham Institute, La Jolla, California 92037, USA.
Abstract:
Ets transcription factors are important downstream targets of oncogenic Ras. The transcriptional activity of several Ets family members is regulated by Ras, and interfering with Ets-dependent transcription by expression of just the Ets2 DNA binding domain can inhibit or reverse Ras-mediated cellular transformation. To better understand the role of Ets proteins in Ras transformation, we have now analyzed the effects of stably expressing a variety of Ets2 constructs in Ras-transformed NIH3T3 (DT) cells. Expression of only the Ets2 transactivation domains, which also inhibits Ras or Neu/ErbB-2-mediated activation of Ets-dependent transcription, strongly inhibited anchorage-independent growth, but did not revert the transformed DT cell morphology. Unexpectedly, high expression of full-length Ets2, a transcriptional activator, broadly reversed the transformed properties of DT cells, including anchorage-independent growth, transformed morphology, and tumorigenicity, but did not impair attached cell growth. Increasing full-length Ets2 transcriptional activity by fusing it to the VP16 transactivation domain enhanced its ability to reverse DT cell transformation. Mutational analysis revealed that the mitogen-activated protein kinase phosphorylation site required for Ras-mediated activation, Ets2(T72), was not essential for Ets2 reversion activity. The distinct reversion activities of the highly expressed Ets2 transactivation domains or full-length Ets2, along with the specific reversion activity by Ets2 constructs that either inhibit or activate Ets-dependent transcription, suggests multiple roles for Ets factors in cellular transformation. These results indicate that several distinct approaches for modulating Ets activity may be useful for intervention in human cancers.
Insights
Ets transcription factors play a role in Ras-mediated cell transformation. Modulating Ets2 activity, particularly full-length Ets2, can reverse cancer-like properties in cells, suggesting therapeutic potential.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Transformation
Background:
- Ets transcription factors are key downstream targets of oncogenic Ras.
- Ras signaling regulates Ets family member activity, influencing cellular transformation.
Purpose of the Study:
- To investigate the role of Ets proteins in Ras-mediated cellular transformation.
- To analyze the effects of various Ets2 constructs in Ras-transformed NIH3T3 (DT) cells.
Main Methods:
- Stable expression of different Ets2 constructs in Ras-transformed NIH3T3 cells.
- Analysis of anchorage-independent growth, cell morphology, and tumorigenicity.
- Mutational analysis of Ets2, including the T72 phosphorylation site.
Main Results:
- Expression of Ets2 transactivation domains inhibited anchorage-independent growth but did not revert morphology.
- High expression of full-length Ets2 reversed transformed properties, including anchorage-independent growth, morphology, and tumorigenicity.
- Ets2(T72) phosphorylation site was not essential for Ets2 reversion activity.
Conclusions:
- Distinct Ets2 constructs exhibit varied reversion activities, suggesting multiple roles in cellular transformation.
- Modulating Ets activity offers potential strategies for cancer intervention.