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细胞周期检查点激酶CHK2介导DNA损伤诱导的TTK/hMps1稳定化。

The cell cycle checkpoint kinase CHK2 mediates DNA damage-induced stabilization of TTK/hMps1.

作者信息

Yeh Y-H, Huang Y-F, Lin T-Y, Shieh S-Y

机构信息

Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan.

出版信息

Oncogene. 2009 Mar 12;28(10):1366-78. doi: 10.1038/onc.2008.477. Epub 2009 Jan 19.

Abstract

Cell cycle progression is monitored constantly to ensure faithful passage of genetic codes and genome stability. We have demonstrated previously that, upon DNA damage, TTK/hMps1 activates the checkpoint kinase CHK2 by phosphorylating CHK2 at Thr68. However, it remains to be determined whether and how TTK/hMps1 responds to DNA damage. In this report, we present evidence that TTK/hMps1 can be induced by DNA damage in normal human fibroblasts. Interestingly, the induction depends on CHK2 because CHK2-targeting small interfering RNA or a CHK2 inhibitor abolishes the increase. Such induction is mediated through phosphorylation of TTK/hMps1 at Thr288 by CHK2 and requires the CHK2 SQ/TQ cluster domain/forkhead-associated domain. In cells, TTK/hMps1 phosphorylation at Thr288 is induced by DNA damage and forms nuclear foci, which colocalize partially with gamma-H2AX. Reexpression of TTK/hMps1 T288A mutant in TTK/hMps1-knockdown cells causes a defect in G(2)/M arrest, suggesting that phosphorylation at this site participates in the proper checkpoint execution. Our study uncovered a regulatory loop between TTK/hMps1 and CHK2 whereby DNA damage-activated CHK2 may facilitate the stabilization of TTK/hMps1, therefore maintaining the checkpoint control.

摘要

细胞周期进程受到持续监测,以确保遗传密码的准确传递和基因组稳定性。我们之前已经证明,在DNA损伤时,TTK/hMps1通过在苏氨酸68位点磷酸化CHK2来激活检查点激酶CHK2。然而,TTK/hMps1是否以及如何对DNA损伤作出反应仍有待确定。在本报告中,我们提供证据表明,TTK/hMps1可在正常人成纤维细胞中被DNA损伤诱导。有趣的是,这种诱导依赖于CHK2,因为靶向CHK2的小干扰RNA或CHK2抑制剂可消除这种增加。这种诱导是通过CHK2在苏氨酸288位点对TTK/hMps1进行磷酸化介导的,并且需要CHK2的SQ/TQ簇结构域/叉头相关结构域。在细胞中,苏氨酸288位点的TTK/hMps1磷酸化由DNA损伤诱导并形成核灶,其与γ-H2AX部分共定位。在TTK/hMps1敲低的细胞中重新表达TTK/hMps1 T288A突变体导致G(2)/M期阻滞缺陷,这表明该位点的磷酸化参与了检查点的正确执行。我们的研究揭示了TTK/hMps1与CHK2之间的一个调节环,由此DNA损伤激活的CHK2可能促进TTK/hMps1的稳定,从而维持检查点控制。

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