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在S期检查点,丝氨酸75位点的磷酸化对于紫外线介导的人类Cdc25A磷酸酶降解是必需的。

Phosphorylation at serine 75 is required for UV-mediated degradation of human Cdc25A phosphatase at the S-phase checkpoint.

作者信息

Hassepass Ingo, Voit Renate, Hoffmann Ingrid

机构信息

German Cancer Research Center (DKFZ), Department Applied Tumorvirology, Im Neuenheimer Feld 242, 69120 Heidelberg, Germany.

出版信息

J Biol Chem. 2003 Aug 8;278(32):29824-9. doi: 10.1074/jbc.M302704200. Epub 2003 May 20.

Abstract

The human Cdc25A phosphatase plays a pivotal role at the G1/S transition by activating cyclin E and A/Cdk2 complexes through dephosphorylation. In response to ionizing radiation, Cdc25A is phosphorylated by both Chk1 and Chk2 on Ser-123. This in turn leads to ubiquitylation and rapid degradation of Cdc25A by the proteasome resulting in cell cycle arrest. We found that in response to UV irradiation, Cdc25A is phosphorylated at a different serine residue, Ser-75. Significantly, Cdc25A mutants carrying alanine instead of either Ser-75 or Ser-123 demonstrate that only Ser-75 mediates protein stabilization in response to UV-induced DNA damage. As a consequence, cyclin E/Cdk2 kinase activity was high. Furthermore, we find that Cdc25A was phosphorylated by Chk1 on Ser-75 in vitro and that the same site was also phosphorylated in vivo. Taken together, these data strongly suggest that phosphorylation of Cdc25A on Ser-75 by Chk1 and its subsequent degradation is required to delay cell cycle progression in response to UV-induced DNA lesions.

摘要

人类Cdc25A磷酸酶通过去磷酸化激活细胞周期蛋白E和A/Cdk2复合物,在G1/S转换中起关键作用。响应电离辐射时,Cdc25A在Ser-123位点被Chk1和Chk2磷酸化。这进而导致Cdc25A被蛋白酶体泛素化并快速降解,从而导致细胞周期停滞。我们发现,响应紫外线照射时,Cdc25A在一个不同的丝氨酸残基Ser-75处被磷酸化。值得注意的是,携带丙氨酸而非Ser-75或Ser-123的Cdc25A突变体表明,只有Ser-75在响应紫外线诱导的DNA损伤时介导蛋白质稳定。因此,细胞周期蛋白E/Cdk2激酶活性很高。此外,我们发现Cdc25A在体外被Chk1在Ser-75位点磷酸化,且同一位点在体内也被磷酸化。综上所述,这些数据强烈表明,Chk1对Cdc25A的Ser-75位点进行磷酸化及其随后的降解是响应紫外线诱导的DNA损伤而延迟细胞周期进程所必需的。

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