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导致JC病毒DNA复制活性受限的因素。

Factors contributing to the restricted DNA replicating activity of JC virus.

作者信息

Lynch K J, Frisque R J

机构信息

Department of Molecular and Cell Biology, Pennsylvania State University, University Park 16802.

出版信息

Virology. 1991 Jan;180(1):306-17. doi: 10.1016/0042-6822(91)90035-a.

Abstract

The basis for the restricted host range behavior of JC virus (JCV) in vitro was investigated by focusing on its DNA replicating activity and comparing it to that of simian virus 40 (SV40). Prototype, mutant, and hybrid JCV and SV40 DNAs were tested for their replicating activity in cells permissive for one or both of the viruses. Results from these experiments indicated that, relative to its SV40 counterpart, the JCV T antigen functioned less efficiently and was more specific in its interactions with polyomavirus DNA replication origins. The JCV T antigen exhibited a lower specific DNA binding activity than did the SV40 T antigen, which might contribute to this virus' reduced DNA replicating activity. However, the JCV protein did bind to both the JCV and SV40 replication origins with similar efficiency, indicating that the ability of the JCV T antigen to discriminate between the JCV and SV40 origins involved a step subsequent to specific DNA binding. The results also suggested that the failure of JCV to replicate to detectable levels in monkey kidney cells was due to the inefficient interactions of its T protein with the viral origin and the host replication machinery. The inability of the JCV T antigen to carry out one or more of these DNA replication functions efficiently contributes to the restricted lytic behavior of this virus.

摘要

通过关注JC病毒(JCV)的DNA复制活性并将其与猿猴病毒40(SV40)的DNA复制活性进行比较,研究了JCV在体外宿主范围受限行为的基础。对原型、突变型和杂交型JCV及SV40 DNA在对其中一种或两种病毒敏感的细胞中的复制活性进行了测试。这些实验结果表明,相对于其SV40对应物,JCV T抗原的功能效率较低,并且在与多瘤病毒DNA复制起点的相互作用中更具特异性。JCV T抗原表现出比SV40 T抗原更低的特异性DNA结合活性,这可能导致该病毒DNA复制活性降低。然而,JCV蛋白以相似的效率与JCV和SV40复制起点结合,这表明JCV T抗原区分JCV和SV40起点的能力涉及特异性DNA结合之后的步骤。结果还表明,JCV在猴肾细胞中无法复制到可检测水平是由于其T蛋白与病毒起点及宿主复制机制的相互作用效率低下。JCV T抗原无法有效执行这些DNA复制功能中的一项或多项,这导致了该病毒有限的裂解行为。

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