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Molecular genetic approach to cell proliferation control and neoplasia
M C Armelin1, M L Oliveira, J M Mercado
1Instituto de Química, Universidade de São Paulo, Brasil. mcsarmel@quim.iq.usp.br
Abstract:
A number of gene products involved in the control of cell proliferation fall into one of two classes: oncogenes and tumor suppressor genes. The same gene products have also been associated with malignant growth (tumors) caused by radiation, chemicals and tumor viruses. Here we describe our attempts to elucidate the molecular mechanisms underlying polyomavirus-induced cell transformation and the anti-tumor activity of glucocorticoid hormones. Wild type and mutant polyomavirus middle T (MT) overexpressing cell lines, generated with retroviral vector constructs, were used to investigate the role played by peptide growth factor primary response genes (fos, jun, myc, JE, KC) in viral transformation and to map the transduction pathway of the mitogenic signal of MT. Overexpression of MT leads to increased AP-1 (Fos/Jun) transcriptional complex activity. Transformation defective mutant analysis allowed the identification of sites in the MT molecule that are crucial for this activity. Two different approaches were used to investigate the molecular basis for glucocorticoids anti-tumor activity, namely: blind cloning of cDNAs and analysis of growth control genes in C6 glioma cell variants that are either hypersensitive (C6/ST1) or unresponsive to glucocorticoids (C6/P7). Four different glucocorticoid-regulated cDNA sequences were isolated using differential hybridization. A number of differentially expressed sequences were isolated from glucocorticoid-treated C6/ST1 cells by differential display (DDRT-PCR) and are currently being characterized. Expression of known growth control genes in C6/ST1 cells allowed the identification of important candidates for glucocorticoid hormone targets.
Insights
Polyomavirus middle T antigen (MT) drives cell transformation by activating AP-1 (Fos/Jun) transcription. Glucocorticoids show anti-tumor activity by targeting specific growth control genes in glioma cells.
Area of Science:
- Molecular biology
- Oncology
- Virology
Background:
- Cell proliferation is controlled by oncogenes and tumor suppressor genes.
- These genes are implicated in malignant growth induced by various agents.
- Polyomavirus-induced cell transformation and glucocorticoid anti-tumor activity are key areas of investigation.
Purpose of the Study:
- To elucidate molecular mechanisms of polyomavirus-induced cell transformation.
- To investigate the anti-tumor activity of glucocorticoid hormones.
- To map the signal transduction pathway of polyomavirus middle T antigen (MT).
Main Methods:
- Generated wild type and mutant polyomavirus MT overexpressing cell lines using retroviral vectors.
- Investigated peptide growth factor primary response genes (fos, jun, myc, JE, KC) in viral transformation.
- Used blind cloning of cDNAs and differential display (DDRT-PCR) to study glucocorticoid effects on C6 glioma cells.
Main Results:
- Overexpression of MT increased AP-1 (Fos/Jun) transcriptional complex activity.
- Identified crucial sites in the MT molecule for its activity using transformation-defective mutants.
- Isolated four glucocorticoid-regulated cDNA sequences and identified candidate glucocorticoid hormone targets in C6 glioma cells.
Conclusions:
- Polyomavirus MT plays a significant role in cell transformation via AP-1 activation.
- Glucocorticoids exhibit anti-tumor potential through modulation of specific growth control genes.
- Further characterization of differentially expressed sequences will enhance understanding of glucocorticoid action.