Cellular effects of olomoucine, an inhibitor of cyclin-dependent kinases
Autor: | Dominique Marie, Christine Buquet-Fagot, E. Schierenberg, Odile Mulner-Lorillon, Pierre Guerrier, Catherine Bergounioux, Gregory J. Brunn, A. Andersen, Daniel Vaulot, Bert Schutte, Dominique Fagot, Mario Acquarone, Marie-Hélène Verlhac, Laurent Meijer, H. Hendriks, Nathalie Glab, B. Maro, Aldo Asensi, M. Goudeau, Jan Mester, H. Goudeau, Robert Bellé, Frédéric Berger, Bernard Kloareg, Robert T. Abraham, Monica Lippai, SA Poulet, Peter J. Houghton |
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Rok vydání: | 1995 |
Předmět: |
T-Lymphocytes
Cyclin A Cyclin B Mitosis In Vitro Techniques Lymphocyte Activation Cyclin-dependent kinase Tumor Cells Cultured Animals Humans Enzyme Inhibitors Metaphase Cyclin-dependent kinase 1 biology Cell growth Cell Cycle Cyclin-dependent kinase 2 Meiotic metaphase I Cell Biology General Medicine Kinetin Cyclin-Dependent Kinases Growth Inhibitors Cell biology Purines Oocytes biology.protein |
Zdroj: | Biology of the Cell. 83:105-120 |
ISSN: | 0248-4900 |
Popis: | Olomoucine (2-(2-hydroxyethylamino)-6-benzylamino-9-methylpurine) has been recently described as a competitive inhibitor (ATP-binding site) of the cell cycle regulating p34cdc2/cyclin B, p33cdk2/cyclin A and p33cdk2/cyclin E kinases, the brain p33cdk5/p35 kinase and the ERK1/MAP-kinase. The unusual specificity of this compound towards cell cycle regulating enzymes suggests that it could inhibit certain steps of the cell cycle. The cellular effects of olomoucine were investigated in a large variety of plant and animal models. This compound inhibits the G1/S transition of unicellular algae (dinoflagellate and diatom). It blocks Fucus zygote cleavage and development of Laminaria gametophytes. Stimulated Petunia mesophyl protoplasts are arrested in G1 by olomoucine. By arresting cleavage it blocks the Laminaria gametophytes. Stimulated Petunia mesophyl protoplasts are arrested in G1 by olomoucine. By arresting cleavage it blocks the development of Calanus copepod larvae. It reversibly inhibits the early cleavages of Caenorhabditis elegans embryos and those of ascidian embryos. Olomoucine inhibits the serotonin-induced prophase/metaphase transition of clam oocytes; furthermore, it triggers the the release of these oocytes from their meiotic metaphase I arrest, and induces nuclei reformation. Olomoucine slows down the prophase/metaphase transition in cleaving sea urchin embryos, but does not affect the duration of the metaphase/anaphase and anaphase/telophase transitions. It also inhibits the prophase/metaphase transition of starfish oocytes triggered by various agonists. Xenopus oocyte maturation, the in vivo and in vitro phosphorylation of elongation factor EF-1 are inhibited by olomoucine. Mouse oocyte maturation is delayed by this compound, whereas parthenogenetic release from metaphase II arrest is facilitated. Growth of a variety of human cell lines (rhabdomyosarcoma cell lines Rh1, Rh18, Rh28 and Rh30; MCF-7, KB-3-1 and their adriamycin-resistant counterparts; National Cancer Institute 60 human tumor cell lines comprising nine tumor types) is inhibited by olomoucine. Cell cycle parameter analysis of the non-small cell lung cancer cell line MR65 shows that olomoucine affects G1 and S phase transits. Olomoucine inhibits DNA synthesis in interleukin-2-stimulated T lymphocytes (CTLL-2 cells) and triggers a G1 arrest similar to interleukin-2 deprivation. Both cdc2 and cdk2 kinases (immunoprecipitated from nocodazole- and hydroxyurea-treated CTLL-2 cells, respectively) are inhibited by olomoucine. Both yeast and Drosophila embryos were insensitive to olomoucine. Taken together the results of this Noah's Ark approach show that olomoucine arrests cells both at the G1/S and the G2/M boundaries, consistent with the hypothesis of a prevalent effect on the cdk2 and cdc2 kinases, respectively. |
Databáze: | OpenAIRE |
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