Chk1 mediates S and G2 arrests through Cdc25A degradation in response to DNA-damaging agents

被引:304
作者
Xiao, Z [1 ]
Chen, ZH [1 ]
Gunasekera, AH [1 ]
Sowin, TJ [1 ]
Rosenberg, SH [1 ]
Fesik, S [1 ]
Zhang, HY [1 ]
机构
[1] Abbott Labs, Canc Res, Abbott Pk, IL 60064 USA
关键词
D O I
10.1074/jbc.M300229200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
UV and ionizing radiation (IR) activate DNA damage checkpoints and induce Cdc25A degradation (Mailand, N., Falck, J., Lukas, C., Syljuasen, R. G., Welcker, M., Bartek, J., and Lukas, J. (2000) Science 288, 1425-1429; Falck, J., Mailand, N., Syljuasen, R. G., Bartek, J., and Lukas J. (2001) Nature 410, 842-847). The degradation of Cdc25A is abrogated by caffeine, which implicates Chk1 as the potential mediator (Mailand, N., Falck, J., Lukas, C., Syljuasen, R. G., Welcker, M., Bartek, J., and Lukas, J. (2000) Science 288, 1425-1429). However, the involvement of Chk1 is far from clear, because caffeine is a rather nonspecific inhibitor of the ATR/Chk1 signaling pathway. Additionally, it is not known whether DNA-damaging drugs commonly used in chemotherapy, which may activate different signal transduction pathways than UV or IR, also confer Cdc25A degradation. Herein, we show that camptothecin and doxorubicin, two widely used topoisomerase inhibitors conferring S and G(2) arrest, respectively, cause the degradation of Cdc25A. Using a small interfering RNA that enables the specific elimination of Chk1 expression, we show that the observed proteolysis of Cdc25A is mediated through Chk1. Moreover, Cdc25A overexpression abrogates the Chk1-mediated degradation and overcomes the doxorubicin-induced G(2) arrest through dephosphorylation and activation of Cdc2/Cdk1 in a dose-dependent manner. These results suggest that: (a) Cdc25A is involved in the G(2)/M transition in addition to its commonly accepted effect on G1/S progression, and (b) Chk1 mediates both S and G(2) checkpoint and is thus a more ubiquitous cell cycle checkpoint mediator than previously thought.
引用
收藏
页码:21767 / 21773
页数:7
相关论文
共 32 条
[11]   ACTIVATION OF THE PHOSPHATASE-ACTIVITY OF HUMAN CDC25A BY A CDK2 CYCLIN-E DEPENDENT PHOSPHORYLATION AT THE G(1)/S TRANSITION [J].
HOFFMANN, I ;
DRAETTA, G ;
KARSENTI, E .
EMBO JOURNAL, 1994, 13 (18) :4302-4310
[12]   DNA and its associated processes as targets for cancer therapy [J].
Hurley, LH .
NATURE REVIEWS CANCER, 2002, 2 (03) :188-200
[13]   Cell cycle-dependent and ATM-independent expression of human Chk1 kinase [J].
Kaneko, Y ;
Watanabe, N ;
Morisaki, H ;
Akita, H ;
Fujimoto, A ;
Tominaga, K ;
Terasawa, M ;
Tachibana, A ;
Ikeda, K ;
Nakanishi, M .
ONCOGENE, 1999, 18 (25) :3673-3681
[14]   Inhibition of Chk1-dependent G2 DNA damage checkpoint radiosensitizes p53 mutant human cells [J].
Koniaras, K ;
Cuddihy, AR ;
Christopoulos, H ;
Hogg, A ;
O'Connell, MJ .
ONCOGENE, 2001, 20 (51) :7453-7463
[15]  
Lammer C, 1998, J CELL SCI, V111, P2445
[16]  
Liu QH, 2000, GENE DEV, V14, P1448
[17]   Rapid destruction of human Cdc25A in response to DNA damage [J].
Mailand, N ;
Falck, J ;
Lukas, C ;
Syljuåsen, RG ;
Welcker, M ;
Bartek, J ;
Lukas, L .
SCIENCE, 2000, 288 (5470) :1425-1429
[18]   Human Cdc25 A inactivation in response to S phase inhibition and its role in preventing premature mitosis [J].
Molinari, M ;
Mercurio, C ;
Dominguez, J ;
Goubin, F ;
Draetta, GF .
EMBO REPORTS, 2000, 1 (01) :71-79
[19]  
NAGATA A, 1991, NEW BIOL, V3, P959
[20]   CYCLIN-DEPENDENT PROTEIN-KINASES - KEY REGULATORS OF THE EUKARYOTIC CELL-CYCLE [J].
NIGG, EA .
BIOESSAYS, 1995, 17 (06) :471-480