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爱泼斯坦-巴尔病毒BBLF4、BSLF1和BBLF2/3蛋白的组装及其相互作用特性。

Assembly of the epstein-barr virus BBLF4, BSLF1 and BBLF2/3 proteins and their interactive properties.

作者信息

Yokoyama Naoaki, Fujii Ken, Hirata Mineo, Tamai Katsuyuki, Kiyono Tohru, Kuzushima Kiyotaka, Nishiyama Yukihiro, Fujita Masatoshi, Tsurumi Tatsuya

机构信息

Division of Virology, Aichi Cancer Center Research Institute, 1-1 Kanokoden, Chikusa-ku, Nagoya 464-8681, Japan1.

Research and Development Department, Medical and Biological Laboratories, Ohara, Terasawaoka, Ina 396-0002, Japan2.

出版信息

J Gen Virol. 1999 Nov;80 ( Pt 11):2879-2887. doi: 10.1099/0022-1317-80-11-2879.

Abstract

Epstein-Barr virus (EBV) encodes putative helicase-primase proteins BBLF4, BSLF1 and BBLF2/3, which are essential for the lytic phase of viral DNA replication. The BSLF1, BBLF4 and BBLF2/3 proteins were expressed in B95-8 cells after induction of a virus productive cycle, possessing apparent molecular masses of 89 kDa, 90 kDa and 80 kDa, respectively. The anti-BSLF1 or anti-BBLF2/3 protein-specific antibody, which recognizes its target protein in both Western blotting and immunoprecipitation analyses, immunoprecipitated all of the BSLF1, BBLF4 and BBLF2/3 proteins from the extract of the cells with a virus productive cycle, indicating that these viral proteins are assembled together in vivo. To characterize their protein-protein interactions in detail, recombinant baculoviruses capable of expressing each of these viral gene products in insect cells were constructed. The assembly of the three virus replication proteins was reproduced in insect cells co- infected with the three recombinant baculoviruses, indicating that complex formation does not require other EBV replication proteins. Furthermore, experiments performed by using the extracts from insect cells co-infected with each pair of the recombinant viruses demonstrated that the BSLF1 protein could interact separately with both the BBLF4 and BBLF2/3 proteins and that the BBLF2/3 protein also interacted with the BBLF4 protein. These observations strongly suggest that within the BBLF4-BSLF1-BBLF2/3 complex each component interacts directly with the other two, resulting in helicase-primase enzyme activity.

摘要

爱泼斯坦-巴尔病毒(EBV)编码假定的解旋酶-引发酶蛋白BBLF4、BSLF1和BBLF2/3,这些蛋白对于病毒DNA复制的裂解阶段至关重要。在诱导病毒生产周期后,BSLF1、BBLF4和BBLF2/3蛋白在B95-8细胞中表达,其表观分子量分别为89 kDa、90 kDa和80 kDa。抗BSLF1或抗BBLF2/3蛋白特异性抗体在蛋白质印迹和免疫沉淀分析中均能识别其靶蛋白,该抗体从具有病毒生产周期的细胞提取物中免疫沉淀出所有的BSLF1、BBLF4和BBLF2/3蛋白,表明这些病毒蛋白在体内组装在一起。为了详细表征它们的蛋白质-蛋白质相互作用,构建了能够在昆虫细胞中表达这些病毒基因产物的重组杆状病毒。在同时感染三种重组杆状病毒的昆虫细胞中重现了这三种病毒复制蛋白的组装,这表明复合物的形成不需要其他EBV复制蛋白。此外,使用同时感染每对重组病毒的昆虫细胞提取物进行的实验表明,BSLF1蛋白可以分别与BBLF4和BBLF2/3蛋白相互作用,并且BBLF2/3蛋白也与BBLF4蛋白相互作用。这些观察结果强烈表明,在BBLF4-BSLF1-BBLF2/3复合物中,每个组分都直接与其他两个组分相互作用,从而产生解旋酶-引发酶活性。

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