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Blocking transforming growth factor beta signaling in transgenic epidermis accelerates chemical carcinogenesis: a
1Department of Otolaryngology, Baylor College of Medicine, Houston, Texas 77030, USA.
Abstract:
Mutations in the transforming growth factor beta type II receptor (TGF-betaRII) have been identified in human cancers, which suggests a causal role for the loss of TGF-betaRII in cancer development. To directly test this in vivo, we have generated transgenic mice expressing a dominant negative TGF-betaRII (delta betaRII) in the epidermis, using a truncated mouse loricrin promoter (ML). ML.delta betaRII transgenic mice exhibited a thickened skin due to epidermal hyperproliferation. When these mice were subjected to a standard two-stage chemical carcinogenesis protocol, they exhibited an increased sensitivity, with an earlier appearance and a 2-fold greater number of papillomas than control mice. In addition, papillomas in control mice regressed after termination of 12-O-tetradecanoylphorbol-13-acetate (TPA) treatment; whereas ML.delta betaRII papillomas progressed to carcinomas. Furthermore, TPA promotion alone induced papilloma formation in ML.delta betaRII mice, which suggests an initiating role for delta betaRII in skin carcinogenesis. ML.delta betaRII tumors also exhibited increased neovascularization and progressed to metastases, although the primary tumors were still classified as carcinoma in situ or well-differentiated carcinomas. Increased expression of vascular endothelial growth factor, an angiogenesis factor, and decreased expression of thrombospondin-1, an angiogenesis inhibitor, were also observed in ML.delta betaRII tumors. The increased angiogenesis correlated with elevated endogenous TGF-beta1 in ML.delta betaRII tumors. These data provide in vivo evidence that inactivation of TGF-betaRII accelerates skin carcinogenesis at both earlier and later stages, and increased angiogenesis is one of the important mechanisms of accelerated tumor growth and metastasis.
Insights
Loss of transforming growth factor beta type II receptor (TGF-betaRII) accelerates skin cancer development and metastasis in mice. This involves increased cell proliferation, tumor progression, and enhanced angiogenesis.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Mutations in TGF-betaRII are linked to human cancers.
- Loss of TGF-betaRII function suggests a role in cancer development.
Purpose of the Study:
- To investigate the in vivo role of TGF-betaRII inactivation in skin carcinogenesis.
- To determine the effects of dominant-negative TGF-betaRII expression on tumor development and progression.
Main Methods:
- Generated transgenic mice expressing dominant-negative TGF-betaRII (delta betaRII) in the epidermis.
- Utilized a standard two-stage chemical carcinogenesis protocol.
- Analyzed tumor development, progression, angiogenesis markers, and metastasis.
Main Results:
- ML.delta betaRII mice showed epidermal hyperproliferation and increased sensitivity to chemical carcinogenesis.
- Papillomas in ML.delta betaRII mice progressed to carcinomas and showed increased neovascularization and metastasis.
- Increased vascular endothelial growth factor and decreased thrombospondin-1 expression were observed, correlating with elevated TGF-beta1.
Conclusions:
- Inactivation of TGF-betaRII accelerates skin carcinogenesis at multiple stages.
- Increased angiogenesis is a key mechanism driving accelerated tumor growth and metastasis.
- These findings provide in vivo evidence for TGF-betaRII's critical role in preventing skin cancer progression.