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1型单纯疱疹病毒感染的HeLa细胞中存在的DNA引发酶活性的鉴定与特性分析

Identification and characterization of a DNA primase activity present in herpes simplex virus type 1-infected HeLa cells.

作者信息

Holmes A M, Wietstock S M, Ruyechan W T

机构信息

Department of Biochemistry, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20814-4799.

出版信息

J Virol. 1988 Mar;62(3):1038-45. doi: 10.1128/JVI.62.3.1038-1045.1988.

Abstract

A novel DNA primase activity has been identified in HeLa cells infected with herpes simplex virus type 1 (HSV-1). Such an activity has not been detected in mock-infected cells. The primase activity coeluted with a portion of HSV-1 DNA polymerase from single-stranded DNA agarose columns loaded with high-salt extracts derived from infected cells. This DNA primase activity could be distinguished from host HeLa cell DNA primase by several criteria. First, the pH optimum of the HSV primase was relatively broad and peaked at 8.2 to 8.7 pH units. In contrast, the pH optimum of the HeLa DNA primase was very sharp and fell between pH 7.9 and 8.2. Second, freshly isolated HSV DNA primase was less salt sensitive than the HeLa primase and was eluted from single-stranded DNA agarose at higher salt concentrations than the host primase. Third, antibodies raised against individual peptides of the calf thymus DNA polymerase:primase complex cross-reacted with the HeLa primase but did not react with the HSV DNA primase. Fourth, freshly prepared HSV DNA primase appeared to be associated with the HSV polymerase, but after storage at 4 degrees C for several weeks, the DNA primase separated from the viral DNA polymerase. Separation or decoupling could also be achieved by gel filtration of the HSV polymerase:primase. This free DNA primase had an apparent molecular size of approximately 40 kilodaltons, whereas free HeLa DNA primase had an apparent molecular size of approximately 110 kilodaltons. On the basis of these data, we believe that the novel DNA primase activity in HSV-infected cells may be virus coded and that this enzyme represents a new and important function involved in the replication of HSV DNA.

摘要

在感染单纯疱疹病毒1型(HSV-1)的HeLa细胞中发现了一种新型DNA引发酶活性。在模拟感染的细胞中未检测到这种活性。该引发酶活性与一部分HSV-1 DNA聚合酶从装有感染细胞高盐提取物的单链DNA琼脂糖柱上共同洗脱。这种DNA引发酶活性可通过几个标准与宿主HeLa细胞DNA引发酶区分开来。首先,HSV引发酶的最适pH相对较宽,在pH 8.2至8.7单位时达到峰值。相比之下,HeLa DNA引发酶的最适pH非常尖锐,在pH 7.9至8.2之间。其次,新分离的HSV DNA引发酶比HeLa引发酶对盐更不敏感,并且在比宿主引发酶更高的盐浓度下从单链DNA琼脂糖上洗脱。第三,针对小牛胸腺DNA聚合酶:引发酶复合物的单个肽产生的抗体与HeLa引发酶发生交叉反应,但不与HSV DNA引发酶反应。第四,新制备的HSV DNA引发酶似乎与HSV聚合酶相关,但在4℃下储存几周后,DNA引发酶与病毒DNA聚合酶分离。通过HSV聚合酶:引发酶的凝胶过滤也可以实现分离或解偶联。这种游离的DNA引发酶的表观分子大小约为40千道尔顿,而游离的HeLa DNA引发酶的表观分子大小约为110千道尔顿。基于这些数据,我们认为HSV感染细胞中的新型DNA引发酶活性可能是病毒编码的,并且这种酶代表了参与HSV DNA复制的一种新的重要功能。

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