Molecular effects of paclitaxel: Myths and reality (a critical review)
Open Access
- 8 October 1999
- journal article
- review article
- Published by Wiley in International Journal of Cancer
- Vol. 83 (2) , 151-156
- https://doi.org/10.1002/(sici)1097-0215(19991008)83:2<151::aid-ijc1>3.0.co;2-5
Abstract
Recent studies on paclitaxel (Taxol), a microtubule‐stabilizing agent and effective anti‐cancer drug, have identified numerous cellular and molecular effects, such as induction of cytokines and tumor‐suppressor genes, indirect cytotoxicity due to secretion of tumor necrosis factor, vast activation of signal‐transduction pathways and selective activity against cells lacking functional p53. Some of these results, including the immediate activation of signaling pathways and gene expression, have been observed only with paclitaxel concentrations 1,000‐fold higher than those required for mitotic arrest and apoptosis. The effects of loss of p53 on paclitaxel cytotoxicity depend on cell type (normal murine fibroblasts vs. human cancer cells) and duration of exposure to paclitaxel; p53 status marginally affects paclitaxel sensitivity in human cancer. Although the biochemistry of mitosis and meiosis has been studied independently of research on the mechanism of action of anti‐cancer drugs, it eventually provided insight into the effects of paclitaxel. For example, serine protein phosphorylation, which occurs during mitotic arrest or meiosis, explains paclitaxel‐induced hyperphosphorylation of Bcl‐2 and Bcl‐xL. Although some observations are disputed, such mitotic arrest correlates with paclitaxel cytotoxicity, while there is currently no evidence that any paclitaxel effect at clinically relevant concentrations is independent of its tubulin‐binding properties. Thus, paclitaxel exerts two types of effect: mitotic arrest with coincidental serine protein phosphorylation and cytotoxicity at clinically relevant concentrations as well as immediate activation of tyrosine kinase pathways and activation of gene expression at much higher concentrations. Int. J. Cancer 83:151–156, 1999.Keywords
This publication has 64 references indexed in Scilit:
- Protein Kinase Cδ-dependent Induction of Manganese Superoxide Dismutase Gene Expression by Microtubule-active Anticancer DrugsPublished by Elsevier ,1998
- Distinct roles of PP1 and PP2A-like phosphatases in control of microtubule dynamics during mitosisThe EMBO Journal, 1997
- Influence of drug exposure parameters on the activity of paclitaxel in multicellular spheroidsEuropean Journal Of Cancer, 1997
- Differential Taxol-dependent arrest of transformed and nontransformed cells in the G1 phase of the cell cycle, and specific-related mortality of transformed cells.The Journal of cell biology, 1996
- p53 mutations do not predict response to paclitaxel/radiation for nonsmall cell lung carcinomaCancer, 1996
- Binding of E-MAP-115 to microtubules is regulated by cell cycle-dependent phosphorylation.The Journal of cell biology, 1995
- Raf-1 Is Activated during MitosisPublished by Elsevier ,1995
- Okadaic acid induces interphase to mitotic-like microtubule dynamic instability by inactivating rescue.The Journal of cell biology, 1992
- Mitogen‐activated‐protein‐kinase‐catalyzed phosphorylation of microtubule‐associated proteins, microtubule‐associated protein 2 and microtubule‐associated protein 4, induces an alteration in their functionEuropean Journal of Biochemistry, 1992
- Shared Actions of Endotoxin and Taxol on TNF Receptors and TNF releaseScience, 1990