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Growth and gene expression profile analyses of endometrial cancer cells expressing exogenous PTEN
M Matsushima-Nishiu1, M Unoki, K Ono
1Laboratories of Molecular Medicine, Human Genome Center, Institute of Medical Science, The University of Tokyo, Tokyo 108-8639, Japan.
Abstract:
The PTEN tumor suppressor gene encodes a multifunctional phosphatase that plays an important role in inhibiting the phosphatidylinositol-3-kinase pathway and downstream functions that include activation of Akt/protein kinase B, cell survival, and cell proliferation. Enforced expression of PTEN in various cancer cell lines decreases cell proliferation through arrest of the cell cycle, accompanied in some cases by induction of apoptosis. We used cDNA microarrays containing 4009 cDNAs to examine changes in gene-expression profiles when exogenous PTEN was induced in PTEN-defective cells. The microarrays and subsequent semi-quantitative reverse transcription-PCR analysis revealed transcriptional stimulation of 99 genes and repression of 72 genes. Some of the differentially expressed genes already had been implicated in cell proliferation, differentiation, apoptosis, or cell cycle control, e.g., overexpression of PTEN-induced transactivation of cyclin-dependent inhibitor 1B (p27Kip1) and 2B (p15INK4B), members of the TNF receptor family, tumor necrosis factor-associated genes, and members of the Notch-signaling and Mad families. To our knowledge this is the first report of transactivation of those genes by PTEN. The genes differentially expressed in our experiments also included many whose correlation with cancer development had not been recognized before. Our data should contribute to a greater understanding of the broad spectrum of ways in which PTEN affects intracellular signaling pathways. Analysis of expression profiles with microarrays appears to be a powerful approach for identifying anticancer genes and/or disease-specific targets for cancer therapy.
Insights
The PTEN tumor suppressor gene, when introduced into defective cells, alters the expression of numerous genes involved in cell growth and survival. This study identifies new PTEN-regulated genes, offering potential cancer therapy targets.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- The PTEN gene is a crucial tumor suppressor.
- PTEN inhibits the phosphatidylinositol-3-kinase pathway, regulating cell survival and proliferation.
- PTEN's role in cancer involves cell cycle arrest and apoptosis induction.
Purpose of the Study:
- To investigate gene expression changes in PTEN-defective cells upon PTEN induction.
- To identify novel genes regulated by PTEN.
- To explore PTEN's impact on intracellular signaling pathways.
Main Methods:
- Utilized cDNA microarrays with 4009 cDNAs to analyze gene expression profiles.
- Induced exogenous PTEN in PTEN-defective cancer cell lines.
- Performed semi-quantitative reverse transcription-PCR for validation.
Main Results:
- PTEN induction led to transcriptional stimulation of 99 genes and repression of 72 genes.
- Confirmed PTEN-induced transactivation of cell cycle inhibitors (p27Kip1, p15INK4B), TNF receptor family members, and Notch/Mad signaling components.
- Identified previously unrecognized genes correlated with cancer development.
Conclusions:
- PTEN influences a broad spectrum of intracellular signaling pathways.
- This study provides the first report of PTEN-mediated transactivation of specific genes.
- Microarray analysis is a powerful tool for identifying anticancer genes and therapeutic targets.