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Updated: May 7, 2026

Evaluation of Keratinocyte Proliferation on Two- and Three-dimensional Type I Collagen Substrates
Published on: April 22, 2019
Tpl2 knockout keratinocytes have increased biomarkers for invasion and metastasis
Kathleen L Decicco-Skinner1, Sarah A Jung, Tracy Tabib
1Department of Biology, American University, Washington, DC 20016, USA.
Abstract:
Skin cancer is the most common form of cancer in the USA, with an estimated two million cases diagnosed annually. Tumor progression locus 2 (Tpl2), also known as MAP3K8, is a serine/threonine protein kinase in the mitogen-activated protein kinase signal transduction cascade. Tpl2 was identified by our laboratory as having a tumor suppressor function in skin carcinogenesis, with the absence of this gene contributing to heightened inflammation and increased skin carcinogenesis. In this study, we used gene expression profiling to compare expression levels between Tpl2 (+/+) and Tpl2 (-) (/-) keratinocytes. We identified over 2000 genes as being differentially expressed between genotypes. Functional annotation analysis identified cancer, cell growth/proliferation, cell death, cell development, cell movement and cell signaling as the top biological processes to be differentially regulated between genotypes. Further microarray analysis identified several candidate genes, including Mmp1b, Mmp2, Mmp9 and Mmp13, involved in migration and invasion to be upregulated in Tpl2 (-) (/-) keratinocytes. Moreover, Tpl2 (-/-) keratinocytes had a significant downregulation in the matrix metalloproteinase (MMP) inhibitor Timp3. Real-time PCR validated the upregulation of the MMPs in Tpl2 (-/-) keratinocytes and zymography confirmed that MMP2 and MMP9 activity was higher in conditioned media from Tpl2 (-/-) keratinocytes. Immunohistochemistry confirmed higher MMP9 staining in 12-O-tetradecanoylphorbol-13-acetate-treated skin from Tpl2 (-/-) mice and grafted tumors formed from v-ras(Ha) retrovirus-infected Tpl2 (-/-) keratinocytes. Additionally, Tpl2 (-/-) keratinocytes had significantly higher invasion, malignant conversion rates and increased endothelial cell tube formation when compared with Tpl2 (+/+) keratinocytes. In summary, our studies reveal that keratinocytes from Tpl2 (-/-) mice demonstrate a higher potential to be invasive and metastatic.
Insights
Loss of Tumor progression locus 2 (Tpl2) in skin cells promotes inflammation and increases skin cancer development. Absence of Tpl2 leads to heightened cell invasion and metastasis potential.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Skin cancer is the most common cancer in the USA, with millions diagnosed annually.
- Tumor progression locus 2 (Tpl2), also known as MAP3K8, is a protein kinase involved in cell signaling.
- Tpl2 has a demonstrated tumor suppressor function in skin carcinogenesis.
Purpose of the Study:
- To investigate the role of Tpl2 in skin carcinogenesis.
- To compare gene expression profiles between Tpl2 (+/+) and Tpl2 (-/-) keratinocytes.
- To identify biological processes and genes affected by Tpl2 absence in skin cells.
Main Methods:
- Gene expression profiling (microarray) to compare Tpl2 (+/+) and Tpl2 (-/-) keratinocytes.
- Functional annotation and pathway analysis.
- Real-time PCR, zymography, and immunohistochemistry to validate gene and protein expression/activity.
- In vitro assays for cell invasion and endothelial cell tube formation.
Main Results:
- Over 2000 genes were differentially expressed between Tpl2 (+/+) and Tpl2 (-/-) keratinocytes.
- Genes involved in cancer, cell growth, proliferation, death, development, movement, and signaling were significantly altered.
- Matrix metalloproteinases (MMPs) like Mmp1b, Mmp2, Mmp9, and Mmp13 were upregulated in Tpl2 (-/-) keratinocytes.
- Timp3, an MMP inhibitor, was downregulated in Tpl2 (-/-) keratinocytes.
- Tpl2 (-/-) keratinocytes showed increased invasion, malignant conversion, and endothelial cell tube formation.
Conclusions:
- Loss of Tpl2 in keratinocytes leads to increased expression and activity of MMPs.
- Tpl2 deficiency enhances keratinocyte invasiveness and metastatic potential.
- Tpl2 plays a critical role in suppressing skin carcinogenesis by regulating cell invasion and metastasis.
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