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Expression of the pRb-binding regions of E1A enables efficient transformation of primary epithelial cells by v-src
1Department of Microbiology and Immunology, University of Tennessee Health Science Center, Memphis 38163, USA.
Abstract:
Primary cultures of rat embryo fibroblasts have been shown to be resistant to transformation by dominant oncogenes such as v-src. We sought to determine if similar resistance is displayed by primary epithelial cells, and, if so, whether an immortalizing oncogene such as E1A could enhance transformation of primary epithelial cells by v-src. Transformation of primary rat epithelial cells by v-src was synergistically enhanced when E1A expression plasmids were cotransfected with a v-src expression plasmid. Foci were more numerous and observed earlier (9 to 14 days) with E1A plus v-src than with v-src alone (18 to 28 days). This cotransformation ability was abrogated by deletions in CR1 or CR2 of E1A, which encode the binding regions for the pRb family and are responsible for E1A-mediated cell cycle activation. Mutations in the p300 binding site or the second exon, which abolish immortalization, did not affect v-src cooperation, in contrast to ras and adenovirus E1B. While kinase activation was required for growth in soft agar, differential activation of Src kinase did not correlate with transformation efficiency. Cell morphology and actin structures were not dramatically impacted by E1A expression; thus, hypertransformation, as previously described for ras cotransformation, was not observed with v-src and second-exon mutants of E1A. However, growth rates for cells expressing both E1A and v-Src were higher than those for cells expressing only v-Src. These results suggest that functions involved in cell cycle activation encoded by E1A first exon can enhance v-src transformation of primary epithelial cells.
Insights
Primary rat epithelial cells resist v-src transformation, but E1A oncogene enhances this process. E1A
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Primary rat embryo fibroblasts are resistant to transformation by oncogenes like v-src.
- Investigating epithelial cell resistance and oncogene cooperation is crucial for understanding cancer development.
Purpose of the Study:
- To determine if primary epithelial cells exhibit resistance to v-src transformation.
- To assess if the E1A oncogene can enhance v-src-mediated transformation of primary epithelial cells.
Main Methods:
- Co-transfection of primary rat epithelial cells with v-src and E1A expression plasmids.
- Analysis of focus formation, cell morphology, actin structures, and growth rates.
- Site-directed mutagenesis of E1A to identify critical functional domains.
Main Results:
- E1A synergistically enhanced v-src transformation of primary rat epithelial cells, with earlier and more numerous foci.
- Deletions in E1A's CR1 or CR2 regions abrogated cotransformation, indicating the importance of cell cycle activation domains.
- Mutations affecting immortalization did not impact v-src cooperation, unlike with Ras and adenovirus E1B.
- While kinase activation was necessary for soft agar growth, it did not correlate with transformation efficiency.
Conclusions:
- E1A's cell cycle activation functions, encoded by its first exon, enhance v-src transformation of primary epithelial cells.
- This study highlights the cooperative roles of oncogenes in overcoming cellular resistance to transformation.
- The findings provide insights into the molecular mechanisms underlying oncogene cooperation in cancer initiation.