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电离辐射后,Atm介导的S期检查点特别需要Brca1中丝氨酸1387的磷酸化。

Phosphorylation of serine 1387 in Brca1 is specifically required for the Atm-mediated S-phase checkpoint after ionizing irradiation.

作者信息

Xu Bo, O'Donnell Anne H, Kim Seong-Tae, Kastan Michael B

机构信息

Department of Hematology-Oncology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.

出版信息

Cancer Res. 2002 Aug 15;62(16):4588-91.

Abstract

Although it is well established that inheritance of mutations in the Brca1 gene significantly increases the chances of developing breast or ovarian cancers, the mechanisms underlying this specific tumor susceptibility remain to be clarified. It is clear that one of the roles of the Brca1 protein is to facilitate cellular responses to DNA damage. We recently reported that Brca1 function is required for appropriate cell cycle arrests after ionizing irradiation in both the S-phase and the G2 phase of the cell cycle. We also found that mutation of serine 1423 in Brca1, a target of Atm phosphorylation, abrogates the G2-M checkpoint but not the ionizing irradiation-induced S-phase checkpoint. Here we demonstrate that mutation of serine 1387 in Brca1, another target of Atm phosphorylation, conversely abrogates the radiation-induced S-phase arrest but does not affect the G2-M checkpoint. Thus, these two posttranslational modifications of Brca1 have two distinct functional roles in the protein. In addition, although mutation of this site abrogates the ionizing irradiation-induced S-phase arrest, it does not adversely affect cell survival after irradiation. This demonstrates that loss of this checkpoint function by itself does not affect cell survival and suggests that some other function of Brca1 alters cell survival after DNA damage.

摘要

尽管已有充分证据表明,Brca1基因突变的遗传会显著增加患乳腺癌或卵巢癌的几率,但这种特定肿瘤易感性背后的机制仍有待阐明。很明显,Brca1蛋白的作用之一是促进细胞对DNA损伤的反应。我们最近报道,在细胞周期的S期和G2期,电离辐射后适当的细胞周期停滞需要Brca1发挥功能。我们还发现,Brca1中丝氨酸1423(Atm磷酸化的靶点)的突变会消除G2-M期检查点,但不会消除电离辐射诱导的S期检查点。在此,我们证明,Brca1中另一个Atm磷酸化靶点丝氨酸1387的突变,相反地会消除辐射诱导的S期停滞,但不会影响G2-M期检查点。因此,Brca1的这两种翻译后修饰在该蛋白中具有两种不同的功能作用。此外,尽管该位点的突变会消除电离辐射诱导的S期停滞,但它不会对辐射后的细胞存活产生不利影响。这表明,这种检查点功能的丧失本身不会影响细胞存活,并提示Brca1的某些其他功能会在DNA损伤后改变细胞存活情况。

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