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爱泼斯坦-巴尔病毒核抗原1与核转运蛋白核转运受体α2形成复合物。

Epstein-Barr virus nuclear antigen 1 forms a complex with the nuclear transporter karyopherin alpha2.

作者信息

Fischer N, Kremmer E, Lautscham G, Mueller-Lantzsch N, Grässer F A

机构信息

Institut für Mikrobiologie und Hygiene, Abteilung Virologie, Haus 47, Universitätskliniken, D-66421 Homburg/Saar, Germany.

出版信息

J Biol Chem. 1997 Feb 14;272(7):3999-4005. doi: 10.1074/jbc.272.7.3999.

Abstract

The Epstein-Barr virus (EBV) is implicated in the induction of several malignancies. The nuclear antigen 1 (EBNA1) is the only viral protein that is expressed consistently in all EBV-associated tumors. EBNA1 is involved in the replication and maintenance of the viral episome in the infected cell and exhibits oncogenic activity in transgenic mice. Here we report the identification of the nuclear transporter karyopherin alpha2 as a cellular partner of EBNA1 using the yeast "two-hybrid system." Karyopherin alpha2 is also called importin alpha or Rch1. The binding to karyopherin alpha2 was mediated through a C-terminal region of EBNA1 encompassing the nuclear localization signal, whereas clones of EBNA1 devoid of the nuclear localization signal failed to bind to karyopherin alpha2. The interaction was biochemically confirmed by far-Western analysis using bacterially expressed karyopherin alpha2 and karyopherin alpha2-specific monoclonal antibodies. The nuclear transport of EBNA1 was impaired by expression of N-terminally truncated karyopherin alpha2. Zone velocity sedimentation in a sucrose gradient indicated that: (i) EBNA1 and Rch1 colocalize; and (ii) the association of karyopherin alpha2 with high molecular weight protein complexes might be impeded by the presence of EBNA1.

摘要

爱泼斯坦-巴尔病毒(EBV)与多种恶性肿瘤的发生有关。核抗原1(EBNA1)是唯一在所有EBV相关肿瘤中持续表达的病毒蛋白。EBNA1参与病毒附加体在感染细胞中的复制和维持,并在转基因小鼠中表现出致癌活性。在此,我们报告利用酵母“双杂交系统”鉴定出核转运蛋白核转运受体α2作为EBNA1的细胞伴侣。核转运受体α2也被称为输入蛋白α或Rch1。与核转运受体α2的结合是通过EBNA1包含核定位信号的C末端区域介导的,而缺乏核定位信号的EBNA1克隆则无法与核转运受体α2结合。使用细菌表达的核转运受体α2和核转运受体α2特异性单克隆抗体进行的远 Western 分析从生化角度证实了这种相互作用。N末端截短的核转运受体α2的表达会损害EBNA1的核转运。蔗糖梯度中的区带速度沉降表明:(i)EBNA1和Rch1共定位;(ii)EBNA1的存在可能会阻碍核转运受体α2与高分子量蛋白复合物的结合。

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