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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

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.

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