Cell Cycle Position Affects Response of Normal Fibroblasts to Phorbol Esters
- 1 January 1988
- journal article
- Published by Taylor & Francis in Growth Factors
- Vol. 1 (1) , 85-90
- https://doi.org/10.3109/08977198809000250
Abstract
Tumor-promoting phorbol ester derivatives are known to stimulate as well as inhibit the cell cycle traverse of many kinds of cells, but it is not known whether or how these effects are related to tumor promotion. It is shown here that the potency of the phorbol diester PMA (phorbol myristate acetate) to cause a delay of cell division depends on the cell cycle position at the beginning of exposure to the PMA. Quiescent human fibroblasts were stimulated with epidermal growth factor, and PMA was added to the cultures at different times after stimulation. The later PMA was added, the stronger was the mitotic delay it caused. This means that cells which become exposed while they are in an early stage of the cycle are less effectively delayed and reach mitosis earlier than those for which exposure begins at a later stage of the cycle. The data indicate that PMA is actually able to reverse the order in which the cells of a normally growing population divide. In organized tissues this could disturb the intercellular communication which may be linked to the relative cell cycle positions of neighboring cells.Keywords
This publication has 13 references indexed in Scilit:
- Growth inhibition by protein kinase C late in mitogenesisNature, 1987
- c-myc gene expression is stimulated by agents that activate protein kinase C and does not account for the mitogenic effect of PDGFCell, 1985
- Phorbol ester enhances deoxynucleoside incorporation while inhibiting proliferation of K-562 cellsCytometry, 1985
- The role of protein kinase C in cell surface signal transduction and tumour promotionNature, 1984
- Stimulation of DNA synthesis in murine fibroblasts by the tumour promoter teleocidin: Relationship to phorbol esters and vasopressinBiochemical and Biophysical Research Communications, 1982
- Cell cycle analysis by combining the 5‐bromodeoxyuridine/33258 hoechst technique with DNA‐specific ethidium bromide stainingCytometry, 1981
- Induction of Differentiation in Human Promyelocytic Leukemia Cells by Tumor PromotersScience, 1979
- Inhibition of epidermal growth factor binding to surface receptors by tumor promotorsBiochemical and Biophysical Research Communications, 1979
- Growth stimulation of human diploid fibro‐blasts by the tumor promoter, 12‐0‐tetradecanoyl‐phorbol‐13‐acetateInternational Journal of Cancer, 1974
- The Function and Mechanism of Promoters of CarcinogenesisCRC Critical Reviews in Toxicology, 1973