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Generation of Induced Pluripotent Stem Cells from Human Melanoma Tumor-infiltrating Lymphocytes
Published on: November 11, 2016
Reduced growth factor requirements and accelerated cell-cycle kinetics in adult human melanocytes transformed with
K Zepter1, A C Häffner, U Trefzer
1Department of Dermatology and Skin Diseases Research Center, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Abstract:
Melanomas develop with high frequency in transgenic mice in which oncogenic sequences of the SV40 DNA tumor virus have been specifically targeted to melanocytes. To investigate the role of SV40 in melanomagenesis, cultured human melanocytes were transformed with a retroviral shuttle vector encoding the SV40 large T antigen and examined for changes in cell-cycle kinetics and growth-factor dependence. Colonies expressing the viral oncogene were morphologically indistinguishable from their non-T-antigen-transformed counterparts. Also like normal melanocytes, the infected cells remained anchorage dependent and non-tumorigenic in nude mice. However, T-antigen-positive cultures exhibited significantly accelerated population doubling times, increased saturation densities with highly confluent monolayers and a three- to fourfold extended life span. Most interestingly, cell-cycle analysis revealed a measurable shift from quiescent to cycling cells in T-antigen-expressing cultures and an acquired ability to progress more rapidly through G1. Moreover, T-antigen-positive melanocytes proliferated in the absence of PMA and required markedly reduced levels of exogenous bFGF. These studies indicate that the viral oncogen of simian virus 40 provides melanocytes with distinct growth advantages that may render these cells unusually susceptible to additional environmental challenges necessary for full expression of the malignant phenotype.
Insights
The simian virus 40 (SV40) large T antigen accelerates melanocyte growth and extends their lifespan. This viral oncogene provides growth advantages, potentially increasing susceptibility to melanoma development.
Area of Science:
- Oncogenic viral mechanisms
- Cellular transformation
- Melanoma research
Background:
- Melanomas frequently develop in mice with SV40 oncogenes in melanocytes.
- The role of SV40 in melanoma development requires further investigation.
Purpose of the Study:
- To investigate the role of SV40 large T antigen in human melanocyte transformation.
- To examine the effects of SV40 on cell-cycle kinetics and growth-factor dependence.
Main Methods:
- Human melanocytes were transformed using a retroviral shuttle vector encoding SV40 large T antigen.
- Cell-cycle kinetics, growth-factor dependence, and tumor formation were assessed.
Main Results:
- SV40 T-antigen expression accelerated population doubling times and extended cell lifespan.
- T-antigen-positive melanocytes showed increased progression through G1 and reduced dependence on growth factors (PMA, bFGF).
- Transformed cells remained anchorage-dependent and non-tumorigenic in nude mice.
Conclusions:
- SV40 large T antigen confers significant growth advantages to melanocytes.
- These advantages may increase melanocyte susceptibility to environmental factors driving melanoma.
- SV40 oncogene is a key factor in early stages of melanomagenesis.

