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Partial growth suppression of human prostate cancer cells by the Krev-1 suppressor gene
T L Burney1, S Rockove, J L Eiseman
1Department of Surgery, University of Maryland School of Medicine, Baltimore.
Abstract:
A series of functional studies were performed to assess the potential role of the ras-related transformation suppressor gene, Krev-1, in suppressing prostate cancer cell growth. Three human prostate cancer cell lines, PC-3, TSU-Pr1, and DU-145 were transfected with a plasmid containing the Krev-1 cDNA and a neomycin resistance gene. Selected G418-resistant clones were isolated and expanded into cell lines. All cloned transfectants exhibited a significant reduction in their in vitro growth rates, i.e., longer doubling times, when compared to the parental cell lines. Molecular analysis of the Krev-1 cloned transfectants revealed that they all contained variable copy numbers of the Krev-1 gene and expressed high levels of Krev-1 mRNA transcript, as shown by Southern and Northern analysis, respectively. To determine whether the biological properties associated with tumorigenicity were changed in these Krev-1 transfectants, their growth characteristics were examined on the basis of their ability to a) form colonies in soft agar, and b) produce tumors in SCID mice. The majority of the Krev-1 transfectants from the PC-3 and TSU-Pr1 cell lines showed a substantially reduced ability to form colonies in soft agar and produced significantly smaller tumors when inoculated into SCID mice. In contrast, there was no significant reduction in the soft agar colony-forming ability or in vivo tumorigenicity of the DU-145 Krev-1 transfectants. These results suggest that the Krev-1 suppressor gene induces partial suppression of the malignant phenotype of human prostate cancer cells containing activated ras oncogenes.
Insights
The Krev-1 suppressor gene significantly reduced prostate cancer cell growth and tumorigenicity in most tested cell lines. This indicates Krev-1
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Prostate cancer cell growth is often driven by activated oncogenes.
- The Krev-1 gene, a ras-related transformation suppressor, is investigated for its potential role in inhibiting cancer progression.
Purpose of the Study:
- To evaluate the efficacy of the Krev-1 suppressor gene in inhibiting the growth and tumorigenicity of human prostate cancer cells.
- To assess the impact of Krev-1 gene transfection on the in vitro and in vivo characteristics of prostate cancer cell lines.
Main Methods:
- Transfection of human prostate cancer cell lines (PC-3, TSU-Pr1, DU-145) with Krev-1 cDNA.
- Selection of resistant clones and molecular analysis (Southern and Northern blotting) for Krev-1 gene and mRNA expression.
- Assessment of in vitro growth rates, soft agar colony formation, and in vivo tumor formation in SCID mice.
Main Results:
- Krev-1 transfectants exhibited significantly reduced in vitro growth rates compared to parental cell lines.
- Most Krev-1 transfectants (PC-3, TSU-Pr1) showed reduced soft agar colony formation and smaller tumor volumes in SCID mice.
- DU-145 Krev-1 transfectants did not show significant reductions in these malignant properties.
Conclusions:
- The Krev-1 suppressor gene partially suppresses the malignant phenotype of human prostate cancer cells, particularly those with activated ras oncogenes.
- Krev-1's effectiveness in suppressing cancer characteristics varies depending on the specific prostate cancer cell line.