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Regulation of the signal transduction program by drugs

G Weber1, F Shen, N Prajda

  • 1Laboratory for Experimental Oncology, Indiana University School of Medicine, Indianapolis 46202-5200, USA.

Insights

Signal transduction activity, particularly inositol trisphosphate (IP3) production, is dysregulated in cancer cells. Therapies targeting PI and PIP kinases, like quercetin and genistein, show promise in inhibiting cancer growth and inducing apoptosis.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Oncology

Background:

  • Signal transduction pathways, involving phosphatidylinositol (PI), PI phosphate (PIP) kinases, and phospholipase C (PLC), are crucial for cellular processes.
  • Aberrant signal transduction activity is a hallmark of cancer, affecting cell growth, proliferation, and survival.

Purpose of the Study:

  • To elucidate critical aspects of signal transduction activity in normal versus cancer cells.
  • To investigate the role of specific enzymes and inositol trisphosphate (IP3) concentration in cancer development and progression.
  • To evaluate the effects of therapeutic agents like tiazofurin, quercetin, and genistein on cancer cell signaling and behavior.

Main Methods:

  • Enzyme activity assays for PI and PIP kinases and PLC.
  • Measurement of inositol trisphosphate (IP3) concentration in various cell types and conditions.
  • Assessment of oncogene expression (ras, myc) and cellular responses (differentiation, apoptosis) to drug treatments.
  • In vivo and in vitro studies using rat hepatomas and human carcinoma cell lines.

Main Results:

  • PIP kinase is rate-limiting in liver and carcinoma signal transduction; PLC is in excess.
  • Signal transduction activity and IP3 concentration are elevated in rat hepatomas and human ovarian and breast carcinomas.
  • PI and PIP kinase activities and IP3 levels fluctuate during cell cycle phases, returning to baseline in plateau phase.
  • Tiazofurin, quercetin, and genistein inhibit signal transduction enzymes, reduce IP3 concentration, decrease oncogene expression, and induce differentiation and apoptosis.
  • Quercetin and genistein demonstrate synergistic effects in inhibiting cancer cell proliferation and clonogenicity.

Conclusions:

  • Signal transduction, particularly IP3 metabolism, is significantly altered in cancer cells, with elevated enzyme activities and IP3 levels.
  • Targeting key enzymes in the PI pathway and modulating IP3 concentration represent viable therapeutic strategies for cancer.
  • Tiazofurin, quercetin, and genistein effectively inhibit cancer cell proliferation and promote apoptosis, partly by reducing IP3 levels, highlighting their potential as anti-cancer agents.

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