Sørensen Claus Storgaard, Hansen Lasse Tengbjerg, Dziegielewski Jaroslaw, Syljuåsen Randi G, Lundin Cecilia, Bartek Jiri, Helleday Thomas
Danish Cancer Society, Institute of Cancer Biology, DK-2100 Copenhagen, Denmark.
Nat Cell Biol. 2005 Feb;7(2):195-201. doi: 10.1038/ncb1212. Epub 2005 Jan 23.
The essential checkpoint kinase Chk1 is required for cell-cycle delays after DNA damage or blocked DNA replication. However, it is unclear whether Chk1 is involved in the repair of damaged DNA. Here we establish that Chk1 is a key regulator of genome maintenance by the homologous recombination repair (HRR) system. Abrogation of Chk1 function with small interfering RNA or chemical antagonists inhibits HRR, leading to persistent unrepaired DNA double-strand breaks (DSBs) and cell death after replication inhibition with hydroxyurea or DNA-damage caused by camptothecin. After hydroxyurea treatment, the essential recombination repair protein RAD51 is recruited to DNA repair foci performing a vital role in correct HRR. We demonstrate that Chk1 interacts with RAD51, and that RAD51 is phosphorylated on Thr 309 in a Chk1-dependent manner. Consistent with a functional interplay between Chk1 and RAD51, Chk1-depleted cells failed to form RAD51 nuclear foci after exposure to hydroxyurea, and cells expressing a phosphorylation-deficient mutant RAD51(T309A) were hypersensitive to hydroxyurea. These results highlight a crucial role for the Chk1 signalling pathway in protecting cells against lethal DNA lesions through regulation of HRR.
在DNA损伤或DNA复制受阻后,细胞周期延迟需要关键的检查点激酶Chk1。然而,目前尚不清楚Chk1是否参与受损DNA的修复。在此,我们证实Chk1是同源重组修复(HRR)系统维持基因组稳定性的关键调节因子。用小干扰RNA或化学拮抗剂消除Chk1功能会抑制HRR,导致在用羟基脲抑制复制或喜树碱造成DNA损伤后,出现持续未修复的DNA双链断裂(DSB)并导致细胞死亡。在羟基脲处理后,关键的重组修复蛋白RAD51被募集到DNA修复位点,在正确的HRR中发挥重要作用。我们证明Chk1与RAD51相互作用,并且RAD51在苏氨酸309位点以Chk1依赖的方式发生磷酸化。与Chk1和RAD51之间的功能相互作用一致,Chk1缺失的细胞在暴露于羟基脲后无法形成RAD51核灶,而表达磷酸化缺陷型突变体RAD51(T309A)的细胞对羟基脲高度敏感。这些结果突出了Chk1信号通路在通过调节HRR保护细胞免受致命DNA损伤方面的关键作用。