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腺病毒5型DNA复制和细胞DNA复制对ATP的需求。

The ATP requirements of adenovirus type 5 DNA replication and cellular DNA replication.

作者信息

De Jong P J, Kwant M M, van Driel W, Jansz H S, van der Vliet P C

出版信息

Virology. 1983 Jan 15;124(1):45-58. doi: 10.1016/0042-6822(83)90289-1.

Abstract

Several in vitro DNA replication systems were employed to characterize the ATP dependency of adenovirus type 5 (Ad5) DNA replication. Ad5 DNA synthesis in isolated nuclei, representing the elongation of nascent DNA chains, was slightly ATP dependent. Reduction of the ATP concentration from the optimum (8 mM) to the endogenous value (0.16 microM) reduced Ad5 DNA replication only to 70%. No change in the pattern of replication was observed as indicated by the analysis of replicative intermediates using agarose gel electrophoresis. ATP could be replaced by dATP, but not by GTP or other nucleoside triphosphates. By contrast, cellular DNA replication in isolated nuclei from HeLa cells was reduced to 12% by the omission of ATP. These differences could not be explained by different ATP pools or by effects of ATP on dNTP pools. Cellular DNA replication in contrast to viral DNA replication was sensitive to low concentrations of adenosine 5'-O-(3-thiotriphosphate). Inhibition by this ATP analog was competitive with ATP (Ki = 0.4 mM). Adenovirus DNA replication by DNA-free nuclear extracts, representing initiation plus elongation (Challberg and Kelly, Proc. Nat. Acad. Sci. USA 76, 655-659, 1979), exhibited a nearly absolute requirement for ATP. ATP could be substituted not only by dATP, but also by GTP and dGTP and to a lesser extent by pyrimidine triphosphates. Similar results were found when the formation of a covalent complex between dCTP and the precursor terminal protein was studied. This reaction is essential for the initiation of Ad5 DNA replication. The results indicate that different ATP-requiring functions are employed during the initiation and elongation stages of adenovirus DNA replication.

摘要

使用了几种体外DNA复制系统来表征5型腺病毒(Ad5)DNA复制的ATP依赖性。在分离的细胞核中进行的Ad5 DNA合成代表新生DNA链的延伸,对ATP有轻微依赖性。将ATP浓度从最佳值(8 mM)降至内源性值(0.16 microM)时,Ad5 DNA复制仅减少至70%。使用琼脂糖凝胶电泳分析复制中间体表明,复制模式没有变化。ATP可以被dATP替代,但不能被GTP或其他核苷三磷酸替代。相比之下,通过省略ATP,HeLa细胞分离细胞核中的细胞DNA复制减少至12%。这些差异无法用不同的ATP池或ATP对dNTP池的影响来解释。与病毒DNA复制不同,细胞DNA复制对低浓度的腺苷5'-O-(3-硫代三磷酸)敏感。这种ATP类似物的抑制作用与ATP竞争(Ki = 0.4 mM)。无DNA的核提取物进行的腺病毒DNA复制代表起始加延伸(Challberg和Kelly,《美国国家科学院院刊》76,655 - 659,1979),对ATP表现出近乎绝对的需求。ATP不仅可以被dATP替代,还可以被GTP和dGTP替代,嘧啶三磷酸在较小程度上也可以替代。在研究dCTP与前体末端蛋白之间共价复合物的形成时也发现了类似结果。该反应对于Ad5 DNA复制的起始至关重要。结果表明,腺病毒DNA复制的起始和延伸阶段使用了不同的ATP需求功能。

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