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在杆状病毒系统中表达的部分纯化的爱泼斯坦-巴尔病毒DNA聚合酶的功能特性

Functional characterization of partially purified Epstein-Barr virus DNA polymerase expressed in the baculovirus system.

作者信息

Lin J C, De B K, Mar E C

机构信息

Division of Viral and Rickettsial Diseases, Centers for Disease Control and Prevention, Atlanta, GA 30333.

出版信息

Virus Genes. 1994 Jul;8(3):231-41. doi: 10.1007/BF01704517.

Abstract

The DNA polymerase gene of Epstein-Barr virus (EBV) was cloned into baculovirus transfer vector (pBlueBac). The recombinant baculovirus (AcEBP-15) was obtained by cotransfection of Spodoptera frugiperda (Sf9) cells with infectious DNA from Autographa californica multiple nuclear polyhedrin virus (AcMNPV) and pBlueBac plasmid carrying EBV polymerase gene. Infection of Sf9 cells with the recombinant virus produced substantial quantities of the EBV DNA polymerase protein of the expected size (110 kD). The identity of the EBV polymerase 110-kD polypeptide was determined by (a) immunoprecipitation and Western blot analyses with rabbit polyclonal antiserum specific for a synthetic peptide derived from the coding sequence of the polymerase gene; (b) identification of a polypeptide of identical size (110 kD) from EBV-infected cells; (c) measurement of DNA polymerase activity similar to that of the enzyme induced in EBV-infected cells; and (d) neutralization of the enzymatic activity by the rabbit antiserum and inhibition by phosphonoacetic acid. Our results indicate that the baculovirus expression system provides large quantities of functional polymerase suitable for biochemical and structural analyses, thereby furthering our understanding of the mechanism of viral DNA replication and its inhibition by antiviral drugs.

摘要

爱泼斯坦-巴尔病毒(EBV)的DNA聚合酶基因被克隆到杆状病毒转移载体(pBlueBac)中。通过将草地贪夜蛾(Sf9)细胞与来自苜蓿银纹夜蛾多核多角体病毒(AcMNPV)的感染性DNA以及携带EBV聚合酶基因的pBlueBac质粒共转染,获得了重组杆状病毒(AcEBP-15)。用重组病毒感染Sf9细胞产生了大量预期大小(110 kD)的EBV DNA聚合酶蛋白。EBV聚合酶110-kD多肽的身份通过以下方法确定:(a)用针对源自聚合酶基因编码序列的合成肽的兔多克隆抗血清进行免疫沉淀和蛋白质印迹分析;(b)从EBV感染的细胞中鉴定出相同大小(110 kD)的多肽;(c)测量与EBV感染细胞中诱导的酶相似的DNA聚合酶活性;(d)用兔抗血清中和酶活性并被膦甲酸抑制。我们 的结果表明,杆状病毒表达系统提供了大量适合进行生化和结构分析的功能性聚合酶,从而加深了我们对病毒DNA复制机制及其被抗病毒药物抑制的理解。

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