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Chemical-Induced Skin Carcinogenesis Model Using Dimethylbenz[a]Anthracene and 12-O-Tetradecanoyl Phorbol-13-Acetate (DMBA-TPA)
Published on: December 19, 2019
Reduction in IkappaB kinase alpha expression promotes the development of skin papillomas and carcinomas
Eunmi Park1, Feng Zhu, Bigang Liu
1Department of Carcinogenesis, The University of Texas M. D. Anderson Cancer Center, Smithville, Texas 78957, USA.
Abstract:
We reported recently a marked reduction in IkappaB kinase alpha (IKKalpha) expression in a large proportion of human poorly differentiated squamous cell carcinomas (SCC) and the occurrence of Ikkalpha mutations in human SCCs. In addition, overexpression of IKKalpha in the epidermis inhibited the development of skin carcinomas and metastases in mice. However, whether a reduction in IKKalpha expression promotes skin tumor development is currently unknown. Here, we assessed the susceptibility of Ikkalpha hemizygotes to chemical carcinogen-induced skin carcinogenesis. Ikkalpha+/- mice developed 2 times more papillomas and 11 times more carcinomas than did Ikkalpha+/+ mice. The tumors were larger in Ikkalpha+/- than in Ikkalpha+/+ mice, but tumor latency was shorter in Ikkalpha+/- than in Ikkalpha+/+ mice. Some of the Ikkalpha+/- papillomas and most Ikkalpha+/- carcinomas lost the remaining Ikkalpha wild-type allele. Somatic Ikkalpha mutations were detected in carcinomas and papillomas. The chemical carcinogen-induced H-Ras mutations were detected in all the tumors. The phorbol ester tumor promoter induced higher mitogenic and angiogenic activities in Ikkalpha+/- than in Ikkalpha+/+ skin. These elevated activities were intrinsic to keratinocytes, suggesting that a reduction in IKKalpha expression provided a selective growth advantage, which cooperated with H-Ras mutations to promote papilloma formation. Furthermore, excessive extracellular signal-regulated kinase and IKK kinase activities were observed in carcinomas compared with those in papillomas. Thus, the combined mitogenic, angiogenic, and IKK activities might contribute to malignant conversion. Our findings provide evidence that a reduction in IKKalpha expression promotes the development of papillomas and carcinomas and that the integrity of the Ikkalpha gene is required for suppressing skin carcinogenesis.
Insights
Reduced IkappaB kinase alpha (IKKalpha) expression promotes skin tumor development. IKKalpha deficiency in mice led to more papillomas and carcinomas, indicating its role in suppressing skin carcinogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Reduced IkappaB kinase alpha (IKKalpha) expression and mutations are observed in human squamous cell carcinomas (SCC).
- Overexpression of IKKalpha inhibits skin cancer development and metastasis in mice.
- The role of reduced IKKalpha expression in promoting skin tumor development remained unclear.
Purpose of the Study:
- To investigate the effect of reduced IKKalpha expression on chemical carcinogen-induced skin carcinogenesis.
- To determine if IKKalpha deficiency promotes skin tumor development.
Main Methods:
- Assessed the susceptibility of Ikkalpha hemizygous (+/-) mice to chemical carcinogen-induced skin carcinogenesis.
- Analyzed tumor development, size, latency, and genetic alterations (Ikkalpha and H-Ras mutations).
- Measured mitogenic and angiogenic activities in mouse skin and characterized kinase activities in tumors.
Main Results:
- Ikkalpha+/- mice developed significantly more papillomas (2-fold) and carcinomas (11-fold) compared to wild-type (+/+) mice.
- Tumors in Ikkalpha+/- mice were larger and appeared with shorter latency.
- Reduced IKKalpha expression enhanced keratinocyte proliferation and angiogenesis, cooperating with H-Ras mutations to promote tumor formation.
Conclusions:
- Reduced IKKalpha expression promotes the development of papillomas and carcinomas in a chemical carcinogen-induced skin cancer model.
- The integrity of the Ikkalpha gene is essential for suppressing skin carcinogenesis.
- Elevated kinase activities may contribute to malignant conversion in IKKalpha-deficient skin tumors.
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