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Updated: Jul 14, 2026

Cell Population Analyses During Skin Carcinogenesis
Published on: August 21, 2013
Cooperation of Ha-ras and Bcl-2 during multistep skin carcinogenesis
Sangjun Lee1, Nikhil S Chari, Hyung Woo Kim
1Department of Hematopathology, The University of Texas M.D. Anderson Cancer Center, Houston, Texas 77030, USA.
Abstract:
Nonmelanoma skin cancer (NMSC) is the most frequently diagnosed cancer in the United States. Deregulation of bcl-2 and ras family members is commonly observed in NMSC. It has been previously demonstrated that simultaneous bcl-2 and Ha-ras gene expression in keratinocytes results in disordered differentiation and resistance to cell death induced by ultraviolet (UV) radiation. It was, therefore, interest to assess the extent of cooperation between bcl-2 and Ha-ras during multistep skin carcinogenesis. The keratin 1 promoter was used to generate HK1.ras and HK1.bcl-2 transgenic mice, which were subsequently crossed to generate HK1.ras/bcl-2 double transgenic mice. The apoptotic index (AI) following UV-irradiation was significantly lower in HK1.bcl-2 and HKI.ras/bcl-2 epidermis compared to control littermates. Interestingly, the AI of HK1.ras/bcl-2 mice was significantly lower than even HK1.bcl-2 mice following UV-irradiation. To investigate the interaction of these oncogenes in skin tumorigenesis, a two-stage chemical carcinogenesis protocol was used to induce tumors. The individual contributions of Ha-ras and bcl-2 to papilloma latency, incidence, and growth rate in HK1.ras/bcl-2 double transgenic mice was marginally additive. Papillomas arising in HK1.ras transgenic mice exhibited the highest rate of apoptosis whereas papillomas arising in the HK1.ras/bcl-2 double transgenic mice exhibited rates of apoptosis that were significantly lower than papillomas arising in either control littermate or HK1.ras mice. Constitutive expression of either Ha-ras or bcl-2 exhibited similar rates of malignant tumor progression and they were not significantly different than control littermates. Importantly, when these two oncoproteins were coexpressed, a significant, and synergistic, increase in malignant transformation was observed.
Insights
Nonmelanoma skin cancer (NMSC) involves bcl-2 and ras oncogenes. Co-expression of bcl-2 and Ha-ras in mice synergistically increases malignant skin tumor development, highlighting their cooperative role in carcinogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Nonmelanoma skin cancer (NMSC) is the most common cancer in the U.S.
- Deregulation of bcl-2 and ras oncogenes is frequent in NMSC.
- Simultaneous bcl-2 and Ha-ras expression in keratinocytes causes abnormal differentiation and UV resistance.
Purpose of the Study:
- To investigate the cooperative role of bcl-2 and Ha-ras in multistep skin carcinogenesis.
- To assess the impact of co-expressed bcl-2 and Ha-ras on UV-induced apoptosis and tumor development.
Main Methods:
- Generated HK1.ras, HK1.bcl-2, and HK1.ras/bcl-2 double transgenic mice using the keratin 1 promoter.
- Assessed apoptotic index (AI) following UV irradiation.
- Utilized a two-stage chemical carcinogenesis protocol to induce skin tumors.
Main Results:
- UV-induced apoptosis was significantly lower in HK1.bcl-2 and HK1.ras/bcl-2 epidermis compared to controls.
- HK1.ras/bcl-2 mice showed the lowest AI post-UV irradiation.
- Co-expression of bcl-2 and Ha-ras led to a significant, synergistic increase in malignant transformation, unlike additive effects of individual oncogenes.
Conclusions:
- bcl-2 and Ha-ras cooperate synergistically to promote malignant skin tumor progression.
- The combined action of these oncogenes significantly enhances skin carcinogenesis.
- Targeting both bcl-2 and ras pathways may be crucial for NMSC prevention and treatment.
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