p53 activation in chronic radiation-treated breast cancer cells: Regulation of MDM2/p14ARF

被引:30
作者
Xia, LQ [1 ]
Paik, A [1 ]
Li, JJ [1 ]
机构
[1] City Hope Natl Med Ctr, Beckman Res Inst, Div Radiat Oncol, Duarte, CA 91010 USA
关键词
D O I
10.1158/0008-5472.CAN-03-0969
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Mammalian cells chronically exposed to ionizing radiation (IR) induce stress response with a tolerance to the subsequent cytotoxicity of IR. Although p53 is well documented in IR response, the signaling network causing p53 activation in chronic IR remains to be identified. Using breast carcinoma MCF+FIR cells that showed a transient radioresistance after exposure chronically to fractionated IR (FIR), the present study shows that the basal DNA binding and transcriptional activity of p53 was elevated by FIR. p53-controlled luciferase activity was strikingly induced (similar to7.9-fold) with little enhancement of p53/DNA binding activity (similar to1.3fold). The phosphorylated p53 (Thr 55) was increased in the cytoplasm and nucleus of MCF+FIR but not in the sham-FIR control cells. On the contrary, the sham-FIR control MCF-7 cells showed a low p53 luciferase transcription (similar to3-fold) but a striking enhancement of p53/DNA binding (12-fold) after 5 Gy of IR. To determine the signaling elements regulating p53 activity, DNA microarray of MCF+ FIR using sham-FIR MCF-7 cells as a reference demonstrated that the mRNA of p21, MDM2, and p14ARF was up-regulated. Time course Western blot analysis, however, showed no difference in p21 induction. In contrast, MDM2 that was absent in control cells and was predominantly induced by IR was not induced in MCF + FIR cells. In agreement with MDM2 inhibition, MDM2-inhibitory protein p14ARF was increased in MCF+FIR cells. In summary,. these results demonstrate that up-regulation of p14APF paralleled with MDM2 inhibition contributes to p53 accumulation in the nucleus and causes a high responsiveness of p53 in chronic IR-treated breast cancer cells.
引用
收藏
页码:221 / 228
页数:8
相关论文
共 66 条
[11]   p53 and Ki-67 as markers of radioresistance in head and neck carcinoma [J].
Couture, C ;
Raybaud-Diogène, H ;
Têtu, B ;
Bairati, I ;
Murry, D ;
Allard, J ;
Fortin, A .
CANCER, 2002, 94 (03) :713-722
[12]   DNA-DAMAGE TRIGGERS A PROLONGED P53-DEPENDENT G(1) ARREST AND LONG-TERM INDUCTION OF CIP1 IN NORMAL HUMAN FIBROBLASTS [J].
DI LEONARDO, A ;
LINKE, SP ;
CLARKIN, K ;
WAHL, GM .
GENES & DEVELOPMENT, 1994, 8 (21) :2540-2551
[13]   A cytokine-responsive I kappa B kinase that activates the transcription factor NF-kappa B [J].
DiDonato, JA ;
Hayakawa, M ;
Rothwarf, DM ;
Zandi, E ;
Karin, M .
NATURE, 1997, 388 (6642) :548-554
[14]  
Eichholtz-Wirth H, 1998, ANTICANCER RES, V18, P2989
[15]   Regulation of p53 downstream genes [J].
El-Deiry, WS .
SEMINARS IN CANCER BIOLOGY, 1998, 8 (05) :345-357
[16]   Mdm2 overexpression and p14ARF inactivation are two mutually exclusive events in primary human lung tumors [J].
Eymin, B ;
Gazzeri, S ;
Brambilla, C ;
Brambilla, E .
ONCOGENE, 2002, 21 (17) :2750-2761
[17]   Reactive oxygen species in cell responses to toxic agents [J].
Feinendegen, LE .
HUMAN & EXPERIMENTAL TOXICOLOGY, 2002, 21 (02) :85-90
[18]   Cellular signal adaptation with damage control at low doses versus the predominance of DNA damage at high doses [J].
Feinendegen, LE ;
Bond, VP ;
Sondhaus, CA ;
Altman, KI .
COMPTES RENDUS DE L ACADEMIE DES SCIENCES SERIE III-SCIENCES DE LA VIE-LIFE SCIENCES, 1999, 322 (2-3) :245-251
[19]  
Fornace AJ, 1999, GENE EXPRESSION, V7, P387
[20]   The complexity of p53 modulation: emerging patterns from divergent signals [J].
Giaccia, AJ ;
Kastan, MB .
GENES & DEVELOPMENT, 1998, 12 (19) :2973-2983