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通过 Epstein-Barr 病毒激酶 BGLF4 对 stathmin 的磷酸化来调节微管动力学。

Regulation of microtubule dynamics through phosphorylation on stathmin by Epstein-Barr virus kinase BGLF4.

机构信息

Graduate Institute of Microbiology, College of Medicine, National Taiwan University, Taipei 10051, Taiwan.

Research Center for Emerging Viral Infections and Department of Medical Biotechnology and Laboratory Science, Chang Gung University, Taoyuan 333, Taiwan.

出版信息

J Biol Chem. 2010 Mar 26;285(13):10053-10063. doi: 10.1074/jbc.M109.044420. Epub 2010 Jan 28.

Abstract

Stathmin is an important microtubule (MT)-destabilizing protein, and its activity is differently attenuated by phosphorylation at one or more of its four phosphorylatable serine residues (Ser-16, Ser-25, Ser-38, and Ser-63). This phosphorylation of stathmin plays important roles in mitotic spindle formation. We observed increasing levels of phosphorylated stathmin in Epstein-Barr virus (EBV)-harboring lymphoblastoid cell lines (LCLs) and nasopharyngeal carcinoma (NPC) cell lines during the EBV lytic cycle. These suggest that EBV lytic products may be involved in the regulation of stathmin phosphorylation. BGLF4 is an EBV-encoded kinase and has similar kinase activity to cdc2, an important kinase that phosphorylates serine residues 25 and 38 of stathmin during mitosis. Using an siRNA approach, we demonstrated that BGLF4 contributes to the phosphorylation of stathmin in EBV-harboring NPC. Moreover, we confirmed that BGLF4 interacts with and phosphorylates stathmin using an in vitro kinase assay and an in vivo two-dimensional electrophoresis assay. Interestingly, unlike cdc2, BGLF4 was shown to phosphorylate non-proline directed serine residues of stathmin (Ser-16) and it mediated phosphorylation of stathmin predominantly at serines 16, 25, and 38, indicating that BGLF4 can down-regulate the activity of stathmin. Finally, we demonstrated that the pattern of MT organization was changed in BGLF4-expressing cells, possibly through phosphorylation of stathmin. In conclusion, we have shown that a viral Ser/Thr kinase can directly modulate the activity of stathmin and this contributes to alteration of cellular MT dynamics and then may modulate the associated cellular processes.

摘要

Stathmin 是一种重要的微管(MT)去稳定蛋白,其活性通过其四个可磷酸化丝氨酸残基(Ser-16、Ser-25、Ser-38 和 Ser-63)之一或多个的磷酸化而不同程度地减弱。Stathmin 的这种磷酸化在有丝分裂纺锤体形成中起着重要作用。我们观察到在 EBV 裂解周期中,携带 EBV 的淋巴母细胞系(LCL)和鼻咽癌(NPC)细胞系中磷酸化的 Stathmin 水平逐渐升高。这表明 EBV 裂解产物可能参与调节 Stathmin 的磷酸化。BGLF4 是 EBV 编码的激酶,其激酶活性与 cdc2 相似,cdc2 是一种在有丝分裂期间磷酸化 Stathmin 丝氨酸残基 25 和 38 的重要激酶。使用 siRNA 方法,我们证明了 BGLF4 有助于 EBV 携带的 NPC 中 Stathmin 的磷酸化。此外,我们通过体外激酶测定和体内二维电泳测定证实了 BGLF4 与 Stathmin 相互作用并磷酸化 Stathmin。有趣的是,与 cdc2 不同,BGLF4 被证明磷酸化 Stathmin 的非脯氨酸导向丝氨酸残基(Ser-16),它介导 Stathmin 的磷酸化主要在丝氨酸 16、25 和 38 上,表明 BGLF4 可以下调 Stathmin 的活性。最后,我们证明了在表达 BGLF4 的细胞中 MT 组织的模式发生了变化,这可能是通过 Stathmin 的磷酸化实现的。总之,我们已经表明,一种病毒丝氨酸/苏氨酸激酶可以直接调节 Stathmin 的活性,这有助于改变细胞 MT 动力学,然后可能调节相关的细胞过程。

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