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腺病毒DNA结合蛋白的多种功能是高效病毒DNA合成所必需的。

Multiple functions of the adenovirus DNA-binding protein are required for efficient viral DNA synthesis.

作者信息

Brough D E, Droguett G, Horwitz M S, Klessig D F

机构信息

Waksman Institute, Rutgers, State University of New Jersey, Piscataway 08855-0759.

出版信息

Virology. 1993 Sep;196(1):269-81. doi: 10.1006/viro.1993.1475.

Abstract

Mutational analysis within the amino-terminal (N-t) domain of the adenovirus DNA-binding protein (DBP) defined a region (aa 2-38) important for DBP function. Several viruses carrying lesions in this region of DBP showed reduced accumulation of viral DNA and infectious virions. Characterization of one of these mutants, H5in800, indicated that the N-t domain affects viral DNA synthesis in vivo. The reduction in DNA synthesis was not due to a change in the amount or nuclear location of the H5in800 DBP. Expression of other early genes in H5in800-infected cells was similar to that seen in wild-type Ad5-infected cells, suggesting that the depression of DNA synthesis was not due to disruption of DBP's role in early gene expression. The H5in800 and wild-type DBP also had comparable affinities for single-stranded DNA and functioned with similar efficiencies in two DNA elongation assays. Prior studies have shown that the carboxyl-terminal (C-t) domain of DBP was responsible for these two activities. Together these results suggest that DBP has at least two separable functions in viral DNA replication in vivo and that both domains of the protein are necessary for full activity. The intragenic complementation between the N-t mutant H5in800 and the C-t mutant H5in804 supports this model.

摘要

对腺病毒DNA结合蛋白(DBP)氨基末端(N-t)结构域进行的突变分析确定了一个对DBP功能很重要的区域(氨基酸2 - 38)。几种在DBP这个区域携带损伤的病毒显示出病毒DNA和感染性病毒粒子的积累减少。对其中一个突变体H5in800的特性分析表明,N-t结构域在体内影响病毒DNA合成。DNA合成的减少并非由于H5in800 DBP的量或核定位发生变化。在H5in800感染细胞中其他早期基因的表达与野生型Ad5感染细胞中的情况相似,这表明DNA合成的抑制并非由于DBP在早期基因表达中的作用受到破坏。H5in800和野生型DBP对单链DNA也具有相当的亲和力,并且在两种DNA延伸测定中具有相似的效率。先前的研究表明,DBP的羧基末端(C-t)结构域负责这两种活性。这些结果共同表明,DBP在体内病毒DNA复制中至少具有两种可分离的功能,并且该蛋白的两个结构域对于充分发挥活性都是必需的。N-t突变体H5in800和C-t突变体H5in804之间的基因内互补支持了这一模型。

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