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USP7可抵消SCFβTrCP介导的Claspin蛋白水解作用,但不能抵消APC Cdh1介导的Claspin蛋白水解作用。

USP7 counteracts SCFbetaTrCP- but not APCCdh1-mediated proteolysis of Claspin.

作者信息

Faustrup Helene, Bekker-Jensen Simon, Bartek Jiri, Lukas Jiri, Mailand Niels

机构信息

Institute of Cancer Biology and Centre for Genotoxic Stress Research, Danish Cancer Society, DK-2100 Copenhagen, Denmark.

出版信息

J Cell Biol. 2009 Jan 12;184(1):13-9. doi: 10.1083/jcb.200807137. Epub 2009 Jan 5.

Abstract

Claspin is an adaptor protein that facilitates the ataxia telangiectasia and Rad3-related (ATR)-mediated phosphorylation and activation of Chk1, a key effector kinase in the DNA damage response. Efficient termination of Chk1 signaling in mitosis and during checkpoint recovery requires SCF(betaTrCP)-dependent destruction of Claspin. Here, we identify the deubiquitylating enzyme ubiquitin-specific protease 7 (USP7) as a novel regulator of Claspin stability. Claspin and USP7 interact in vivo, and USP7 is required to maintain steady-state levels of Claspin. Furthermore, USP7-mediated deubiquitylation markedly prolongs the half-life of Claspin, which in turn increases the magnitude and duration of Chk1 phosphorylation in response to genotoxic stress. Finally, we find that in addition to the M phase-specific, SCF(betaTrCP)-mediated degradation, Claspin is destabilized by the anaphase-promoting complex (APC) and thus remains unstable in G1. Importantly, we demonstrate that USP7 specifically opposes the SCF(betaTrCP)- but not APC(Cdh1)-mediated degradation of Claspin. Thus, Claspin turnover is controlled by multiple ubiquitylation and deubiquitylation activities, which together provide a flexible means to regulate the ATR-Chk1 pathway.

摘要

Claspin是一种衔接蛋白,可促进共济失调毛细血管扩张症和Rad3相关蛋白(ATR)介导的Chk1磷酸化及激活,Chk1是DNA损伤反应中的关键效应激酶。在有丝分裂期间和检查点恢复过程中,Chk1信号的有效终止需要SCF(βTrCP)依赖的Claspin降解。在此,我们鉴定去泛素化酶泛素特异性蛋白酶7(USP7)是Claspin稳定性的新型调节因子。Claspin与USP7在体内相互作用,且USP7是维持Claspin稳态水平所必需的。此外,USP7介导的去泛素化显著延长了Claspin的半衰期,进而增加了Chk1在基因毒性应激反应中磷酸化的幅度和持续时间。最后,我们发现除了M期特异性的、SCF(βTrCP)介导的降解外,Claspin还会被后期促进复合物(APC)使其不稳定,因此在G1期保持不稳定状态。重要的是,我们证明USP7特异性地对抗SCF(βTrCP)介导的而不是APC(Cdh1)介导的Claspin降解。因此,Claspin的周转由多种泛素化和去泛素化活性控制,它们共同提供了一种灵活的方式来调节ATR-Chk1途径。

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