Related Experiment Videos
Amplification of signal transduction capacity and down-regulation by drugs
1Laboratory for Experimental Oncology, Indiana University School of Medicine, Indianapolis 46202-5119, USA.
Abstract:
Recent work in this Laboratory showed increased activity of PI 4-kinase, PIP kinase and PLC in various cancer cells, indicating a stepped-up capacity for signal transduction. This elevated potential was paralleled with increased concentration of the end product of signal transduction, IP3. Current investigations showed that in normal cells the activities of the specific phosphatases (which degrade PIP2 and PIP and oppose those of the synthetic enzymes) were 4 to 5 orders of magnitude higher than those of the synthetic kinases. In hepatoma cells the specific phosphatase activities markedly decreased. Thus, in cancer cells the marked elevations in activities of the synthetic enzymes were opposed by a reduction in the activities of the degradative specific phosphatases. This enzymic imbalance is responsible, in part at least, for the elevated capacity of signal transduction and IP3 concentration. Since the enzymic activities measured were proportionate with time elapsed and amount of enzyme added, the alterations in activities should reflect changes in enzyme amounts. These alterations indicate a reprogramming of gene expression which should confer selective advantages to the cancer cells, marking out the elevated synthetic enzyme activities as potentially sensitive targets for drug treatment. We showed earlier that tiazofurin, which curtailed the biosynthesis of enzymes with short half-lives such as PI and PIP kinases, down-regulated signal transduction and brought down IP3 concentration. Quercetin and genistein chiefly inhibited PI-4 kinase and PIP kinase, respectively, and as a result reduced IP3 concentration in cancer cells. Current studies reveal that tiazofurin with quercetin, tiazofurin with genistein, and quercetin with genistein were synergistic in killing human cancer cells and in reducing signal transduction activity. In estrogen receptor-negative MDA-MB-435 human breast carcinoma cells which have elevated signal transduction activity, tamoxifen caused IC50S for growth inhibition and cytotoxicity of 12 and 0.7 microM, respectively. When tiazofurin was added to breast carcinoma cells, followed 12 hr later by tamoxifen, synergism was observed in growth inhibition, in clonogenic assays and in the reduction of IP3 concentration. The synergistic action of tiazofurin and tamoxifen and the other synergistic drug interactions outlined above may have implications in the clinical treatment of neoplasias.
Insights
Cancer cells exhibit elevated signal transduction due to enzyme imbalance. Synergistic drug combinations, including tiazofurin and tamoxifen, show promise for cancer treatment by targeting these pathways.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Cancer cells display increased PI 4-kinase, PIP kinase, and PLC activity, leading to enhanced signal transduction and higher inositol trisphosphate (IP3) levels.
- Normal cells possess significantly higher specific phosphatase activity compared to synthetic kinases, maintaining lipid phosphate balance.
- Hepatoma cells exhibit markedly decreased specific phosphatase activity, contributing to an enzymatic imbalance.
Purpose of the Study:
- To investigate the enzymatic basis for elevated signal transduction and IP3 concentration in cancer cells.
- To identify and evaluate potential drug targets and synergistic therapeutic strategies for cancer treatment.
Main Methods:
- Assessed activities of synthetic kinases (PI 4-kinase, PIP kinase, PLC) and degradative phosphatases in normal and hepatoma cells.
- Investigated the effects of tiazofurin, quercetin, and genistein on signal transduction and IP3 levels.
- Evaluated the synergistic effects of drug combinations (tiazofurin with quercetin, tiazofurin with genistein, quercetin with genistein) on cancer cell viability and signal transduction.
- Examined the efficacy of tamoxifen and its combination with tiazofurin in estrogen receptor-negative breast carcinoma cells.
Main Results:
- Cancer cells show reduced specific phosphatase activity, creating an imbalance that favors elevated signal transduction and IP3 levels.
- Tiazofurin, quercetin, and genistein individually reduced IP3 concentration in cancer cells.
- Combinations of tiazofurin with quercetin, tiazofurin with genistein, and quercetin with genistein demonstrated synergistic effects in killing cancer cells and reducing signal transduction.
- Tiazofurin followed by tamoxifen exhibited synergism in growth inhibition, clonogenic assays, and IP3 reduction in breast carcinoma cells.
Conclusions:
- The enzymatic imbalance, characterized by reduced phosphatase activity and elevated synthetic kinase activity, contributes to cancer cell proliferation.
- Targeting these enzymatic pathways with drug combinations like tiazofurin and tamoxifen offers a promising synergistic approach for cancer therapy.
- These findings suggest potential clinical applications for synergistic drug interactions in the treatment of various neoplasms.