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DNA损伤应答激酶ATR的活性需要HCLK2。

HCLK2 is required for activity of the DNA damage response kinase ATR.

作者信息

Rendtlew Danielsen Jannie M, Larsen Dorthe Helena, Schou Kenneth Bødtker, Freire Raimundo, Falck Jacob, Bartek Jiri, Lukas Jiri

机构信息

Institute of Cancer Biology and Centre for Genotoxic Stress Research, Danish Cancer Society, Strandboulevarden 49, DK-2100 Copenhagen, Denmark.

出版信息

J Biol Chem. 2009 Feb 13;284(7):4140-7. doi: 10.1074/jbc.M808174200. Epub 2008 Dec 19.

Abstract

ATR is a protein kinase that orchestrates the cellular response to replication problems and DNA damage. HCLK2 has previously been reported to stabilize ATR and Chk1. Here we provide evidence that human HCLK2 acts at an early step in the ATR signaling pathway and contributes to full-scale activation of ATR kinase activity. We show that HCLK2 forms a complex with ATR-ATRIP and the ATR activator TopBP1. We demonstrate that HCLK2-induced ATR kinase activity toward substrates requires TopBP1 and vice versa and provides evidence that HCLK2 facilitates efficient ATR-TopBP1 association. Consistent with its role in ATR activation, HCLK2 depletion severely impaired phosphorylation of multiple ATR targets including Chk1, Nbs1, and Smc1 after DNA damage. We show that HCLK2 is required for and stimulates ATR autophosphorylation and activity toward different substrates in vitro. Furthermore, HCLK2 depletion abrogated the G(2) checkpoint and decreased survival of cells after exposure to DNA damaging agents and replicative stress. Overall, our data suggest that HCLK2 facilitates ATR activation and, therefore, contributes to ATR-mediated checkpoint signaling. Importantly, our results suggest that HCLK2 functions in the same pathway as TopBP1 but that the two proteins regulate different steps in ATR activation.

摘要

ATR是一种蛋白激酶,可协调细胞对复制问题和DNA损伤的反应。此前有报道称HCLK2可稳定ATR和Chk1。在此我们提供证据表明,人类HCLK2在ATR信号通路的早期发挥作用,并有助于ATR激酶活性的全面激活。我们发现HCLK2与ATR-ATRIP以及ATR激活剂TopBP1形成复合物。我们证明,HCLK2诱导的ATR对底物的激酶活性需要TopBP1,反之亦然,并提供证据表明HCLK2促进了有效的ATR-TopBP1结合。与其在ATR激活中的作用一致,HCLK2缺失严重损害了DNA损伤后包括Chk1、Nbs1和Smc1在内的多个ATR靶点的磷酸化。我们表明,HCLK2在体外对ATR自身磷酸化以及对不同底物的活性是必需的且能起到刺激作用。此外,HCLK2缺失消除了G2期检查点,并降低了细胞在暴露于DNA损伤剂和复制应激后的存活率。总体而言,我们的数据表明HCLK2促进ATR激活,因此有助于ATR介导的检查点信号传导。重要的是,我们的结果表明HCLK2与TopBP1在同一信号通路中发挥作用,但这两种蛋白在ATR激活过程中调节不同的步骤。

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