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Polo样激酶-1在检查点恢复过程中控制Claspin的蛋白酶体依赖性降解。

Polo-like kinase-1 controls proteasome-dependent degradation of Claspin during checkpoint recovery.

作者信息

Mamely Ivan, van Vugt Marcel Atm, Smits Veronique A J, Semple Jennifer I, Lemmens Bennie, Perrakis Anastassis, Medema René H, Freire Raimundo

机构信息

Unidad de Investigación, Hospital Universitario de Canarias, Ofra s/n, La Cuesta, 38320 Tenerife, Spain.

出版信息

Curr Biol. 2006 Oct 10;16(19):1950-5. doi: 10.1016/j.cub.2006.08.026. Epub 2006 Aug 24.

Abstract

DNA-damage checkpoints maintain genomic integrity by mediating a cell-cycle delay in response to genotoxic stress or stalled replication forks. In response to damage, the checkpoint kinase ATR phosphorylates and activates its effector kinase Chk1 in a process that critically depends on Claspin . However, it is not known how exactly this kinase cascade is silenced. Here we demonstrate that the abundance of Claspin is regulated through proteasomal degradation. In response to DNA damage, Claspin is transiently stabilized, and its expression depends on Chk1 kinase activity. In addition, we show that Claspin is degraded upon mitotic entry, a process that depends on the beta-TrCP-SCF ubiquitin ligase and Polo-like kinase-1 (Plk1). We demonstrate that Claspin interacts with both beta-TrCP and Plk1 and that inactivation of these components or the beta-TrCP recognition motif in Claspin prevents its mitotic degradation. Interestingly, expression of a nondegradable Claspin mutant inhibits recovery from a DNA-damage-induced checkpoint arrest. Thus, we conclude that Claspin levels are tightly regulated, both during unperturbed cell cycles and after DNA damage. Moreover, our data demonstrate that the degradation of Claspin at the onset of mitosis is an essential step for the recovery of a cell from a DNA-damage-induced cell-cycle arrest.

摘要

DNA损伤检查点通过介导细胞周期延迟来维持基因组完整性,以应对基因毒性应激或停滞的复制叉。在受到损伤时,检查点激酶ATR磷酸化并激活其效应激酶Chk1,这一过程严重依赖于Claspin。然而,目前尚不清楚这种激酶级联反应究竟是如何沉默的。在这里,我们证明Claspin的丰度是通过蛋白酶体降解来调节的。在DNA损伤的情况下,Claspin会短暂稳定,其表达依赖于Chk1激酶活性。此外,我们发现Claspin在有丝分裂进入时会被降解,这一过程依赖于β-TrCP-SCF泛素连接酶和Polo样激酶-1(Plk1)。我们证明Claspin与β-TrCP和Plk1都相互作用,并且这些成分或Claspin中的β-TrCP识别基序失活会阻止其有丝分裂降解。有趣的是,不可降解的Claspin突变体的表达会抑制DNA损伤诱导的检查点停滞后的恢复。因此,我们得出结论,在正常细胞周期和DNA损伤后,Claspin水平都受到严格调控。此外,我们的数据表明,有丝分裂开始时Claspin的降解是细胞从DNA损伤诱导的细胞周期停滞中恢复的关键步骤。

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