Key role for p27Kip1, retinoblastoma protein Rb, and MYCN in polyamine inhibitor-induced G1 cell cycle arrest in MYCN-amplified human neuroblastoma cells

被引:0
作者
Christopher J Wallick
Ivonne Gamper
Mike Thorne
David J Feith
Kelsie Y Takasaki
Shannon M Wilson
Jennifer A Seki
Anthony E Pegg
Craig V Byus
André S Bachmann
机构
[1] Cancer Research Center of Hawaii,Department of Cellular and Molecular Physiology
[2] University of Hawaii at Manoa,Department of Biochemistry
[3] Pennsylvania State University College of Medicine,Institute for Biomedical Technology
[4] University of California,undefined
[5] Riverside,undefined
[6] Universitätsklinikum Aachen,undefined
[7] RWTH,undefined
[8] Hawaii Biotech,undefined
[9] Inc.,undefined
[10] University of California,undefined
[11] San Francisco,undefined
[12] Lung Biology Center,undefined
来源
Oncogene | 2005年 / 24卷
关键词
DFMO; SAM486A; -amplified neuroblastoma; p27; Rb; cell cycle;
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学科分类号
摘要
Alpha-difluoromethylornithine (DFMO) inhibits the proto-oncogene ornithine decarboxylase (ODC) and is known to induce cell cycle arrest. However, the effect of DFMO on human neuroblastoma (NB) cells and the exact mechanism of DFMO-induced cell death are largely unknown. Treatment with DFMO in combination with SAM486A, an S-adenosylmethionine decarboxylase (AdoMetDC) inhibitor, has been shown to enhance polyamine pool depletion. Therefore, we analysed the mechanism of action of DFMO and/or SAM486A in two established MYCN-amplified human NB cell lines. DFMO and SAM486A caused rapid cell growth inhibition, polyamine depletion, and G1 cell cycle arrest without apoptosis in cell lines LAN-1 and NMB-7. These effects were enhanced with combined inhibitors and largely prevented by cotreatment with exogenous polyamines. The G1 cell cycle arrest was concomitant with an increase in cyclin-dependent kinase inhibitor p27Kip1. In a similar fashion, DFMO and DFMO/SAM486A inhibited the phosphorylation of the G1/S transition-regulating retinoblastoma protein Rb at residues Ser795 and Ser807/811. Moreover, we observed a dramatic decrease in MYCN protein levels. Overexpression of MYCN induces an aggressive NB phenotype with malignant behavior. We show for the first time that DFMO and SAM486A induce G1 cell cycle arrest in NB cells through p27Kip1 and Rb hypophosphorylation.
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页码:5606 / 5618
页数:12
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