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Expression of Rap 1 suppresses genomic instability of H-ras transformed mouse fibroblasts
M A Wani1, N C Denko, P J Stambrook
1Department of Cell Biology, University of Cincinnati, College of Medicine, Ohio 45267-0521, USA.
Abstract:
Among the multiple genetic changes that occur during cancer progression are the activation of proto-oncogenes and the inactivation or loss of genes encoding tumor suppressors. The potential roles for these genes in the perturbation of genome stability continues to be of major interest. We have previously shown that conditional expression of H-ras in NIH3T3 cells increases genetic instability in these cells, rendering them more permissive to gene amplification and to the generation of chromosome aberrations which can be induced within a single cell cycle. In the present study we show that genetic instability induced by H-ras expression can be suppressed by co-expression of Rap 1, a Ras-related tumor suppressor gene. An NIH3T3 cell line transformed with activated human H-ras was transfected with Rap 1. Expression of the Rap 1 gene reverted the transformed cells to a flat morphology. The reverted cells reestablished contact inhibition of growth and lost the capacity to form colonies in soft agar. These cells were subsequently studied for the role of Rap 1 on the suppression of genomic instability induced by oncogenic H-ras. Cells transformed with H-ras manifest an increase in methotrexate resistance as measured by an increase in Dhfr gene amplification. Cells which concommitantly express Rap 1 showed reduced levels of methotrexate resistance as well as reduction of gene amplification capacity. Furthermore fluorescent-in-situ hybridization (FISH) with a pancentromeric mouse probe showed that elevated levels of chromosome aberrations in cells expressing H-ras were also suppressed after co-expression of Rap 1.
Insights
The Ras-related tumor suppressor gene Rap 1 can reverse genetic instability caused by the H-ras oncogene. Co-expression of Rap 1 suppresses gene amplification and chromosome aberrations in cancer cells.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cancer progression involves proto-oncogene activation and tumor suppressor gene inactivation.
- Genetic instability is a hallmark of cancer, contributing to gene amplification and chromosomal aberrations.
- Previous studies showed H-ras oncogene expression increases genetic instability in NIH3T3 cells.
Purpose of the Study:
- To investigate the role of Rap 1, a Ras-related tumor suppressor gene, in suppressing H-ras-induced genetic instability.
- To determine if Rap 1 can revert the transformed phenotype and restore normal cellular behavior.
Main Methods:
- NIH3T3 cells expressing activated human H-ras were co-transfected with the Rap 1 gene.
- Morphological changes, contact inhibition, and soft agar colony formation were assessed.
- Methotrexate resistance, dihydrofolate reductase (Dhfr) gene amplification, and chromosome aberrations (using FISH) were quantified.
Main Results:
- Rap 1 expression reverted H-ras transformed cells to a flat morphology, restoring contact inhibition and reducing anchorage-independent growth.
- Co-expression of Rap 1 significantly reduced methotrexate resistance and the capacity for gene amplification.
- Rap 1 suppressed the elevated levels of chromosome aberrations observed in H-ras expressing cells.
Conclusions:
- Rap 1 acts as a tumor suppressor by counteracting the genetic instability induced by oncogenic H-ras.
- Restoration of Rap 1 function can potentially reverse key aspects of cancer progression, including genomic instability and transformation.