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蛋白磷酸酶-1α通过Nek2调节中心体分裂。

Protein phosphatase-1alpha regulates centrosome splitting through Nek2.

作者信息

Mi Jun, Guo Changyue, Brautigan David L, Larner James M

机构信息

Department of Radiation Oncology, University of Virginia Health System, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.

出版信息

Cancer Res. 2007 Feb 1;67(3):1082-9. doi: 10.1158/0008-5472.CAN-06-3071.

Abstract

ATM is a central mediator of the cellular response to the DNA damage produced by ionizing radiation. We recently showed that protein phosphatase 1 (PP1) is activated by ATM. Because Nek2 is activated by autophosphorylation, and because its dephosphorylation is catalyzed by PP1, we asked if the radiation damage signal to Nek2 was mediated by PP1. Overexpression of Nek2 induces premature centrosome splitting probably by phosphorylating centrosome cohesion proteins C-Nap1 and Rootletin. In this study, we show isoform specificity of PP1 binding and regulation of Nek2. Although both PP1alpha and PP1gamma coimmunoprecipitated with Nek2, only PP1alpha regulated Nek2 function. Ionizing radiation inhibited Nek2 activity, and this response was dependent on ATM and on PP1 binding to Nek2 and coincident with Thr(320) dephosphorylation of PP1. Radiation-induced inhibition of centrosome splitting was abrogated in cells expressing Nek2 mutated in the PP1-binding motif outside the kinase domain. Conversely, cells depleted of PP1alpha by small interfering RNA showed enhanced centrosome splitting and loss of radiation-induced inhibition of centrosome splitting. The identification of a PP1-specific isoform mediating a checkpoint response opens up the possibility of selectively targeting phosphatases as novel radiation sensitizers.

摘要

ATM是细胞对电离辐射产生的DNA损伤作出反应的核心介质。我们最近发现蛋白磷酸酶1(PP1)可被ATM激活。由于Nek2通过自身磷酸化被激活,且其去磷酸化由PP1催化,我们探究辐射对Nek2的损伤信号是否由PP1介导。Nek2的过表达可能通过磷酸化中心体凝聚蛋白C-Nap1和Rootletin诱导中心体过早分裂。在本研究中,我们展示了PP1与Nek2结合及调控的亚型特异性。尽管PP1α和PP1γ均与Nek2共免疫沉淀,但只有PP1α调节Nek2的功能。电离辐射抑制Nek2活性,且这种反应依赖于ATM以及PP1与Nek2的结合,并与PP1的苏氨酸(320)去磷酸化同时发生。在激酶结构域外PP1结合基序发生突变的Nek2表达细胞中,辐射诱导的中心体分裂抑制作用被消除。相反,通过小干扰RNA使PP1α缺失的细胞显示出中心体分裂增强,且辐射诱导的中心体分裂抑制作用丧失。鉴定出介导检查点反应的PP1特异性亚型,为将磷酸酶作为新型辐射增敏剂进行选择性靶向治疗开辟了可能性。

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