c-Myc antagonizes the effect of p53 on apoptosis and p21WAF1 transactivation in K562 leukemia cells

被引:0
作者
Eva Ceballos
M Dolores Delgado
Pilar Gutierrez
Carlos Richard
Daniel Müller
Martin Eilers
Mats Ehinger
Urban Gullberg
Javier León
机构
[1] Grupo de Biologia Molecular del Cáncer,Departamento de Biologia Molecular
[2] Unidad Asociada al Centro de Investigaciones Biológicas,Department of Hematology
[3] Universidad de Cantabria,undefined
[4] Servicio de Hematología,undefined
[5] Hospital Marqués de Valdecilla,undefined
[6] Institute of Molecular Biology and Tumor Research,undefined
[7] Phillips University,undefined
[8] Lund University,undefined
来源
Oncogene | 2000年 / 19卷
关键词
myc; p53; leukemia; K562; apoptosis; transactivation;
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摘要
c-myc protooncogene positively regulates cell proliferation and overexpression of c-myc is found in many solid tumors and leukemias. In the present study we used the K562 human myeloid leukemia cell line as a model to study the functional interaction between c-Myc and p53. Using two different methods, we generated K562 transfectant cell lines with conditional expression of either c-Myc or p53. The cells expressed the p53Vall35 mutant, which adopts a wild-type conformation at 32°C, while c-Myc induction was achieved with a zinc-inducible expression vector. We found that p53 in wild-type conformation induces growth arrest and apoptosis of K562. Expression of c-Myc significantly attenuated apoptosis and impaired the transcriptional activity of p53 on p21WAF1, Bax and cytomegalovirus promoters. The impairment of p21WAF1 transactivation by c-Myc was confirmed by transfection of a c-Myc-estrogen receptor fusion protein and by induction of c-myc by zinc in transfected cells. Also, p53-mediated up-regulation of p21WAF1 mRNA protein were significantly reduced by c-Myc, while Bax levels were unaffected. Consistently, c-Myc increased cyclin-dependent kinase 2 activity in K562 cells expressing p53 in wild-type conformation. These results suggest that c-Myc overexpression may antagonize the pro-apoptotic function of p53, thus providing a molecular mechanism for the frequently observed deregulation of c-myc in human cancer.
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页码:2194 / 2204
页数:10
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