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猿猴病毒40脱氧核糖核酸的复制:一步生长周期分析

Replication of simian virus 40 deoxyribonucleic acid: analysis of the one-step growth cycle.

作者信息

Manteuil S, Pages J, Stehelin D, Girard M

出版信息

J Virol. 1973 Jan;11(1):98-106. doi: 10.1128/JVI.11.1.98-106.1973.

Abstract

The time course of replication of simian virus 40 deoxyribonucleic acid (DNA) was investigated in growing monolayer cultures of subcloned CV1 cells. At multiplicities of infection of 30 to 60 plaque-forming units (PFU)/cell, first progeny DNA molecules (component 1) were detected by 10 hr after infection. During the following 10 to 12 hr, accumulation of virus DNA proceeded at ever increasing rates, albeit in a non-exponential fashion. The rate of synthesis then remained constant, until approximately the 40th hour postinfection, when DNA replication stopped. Under these conditions, the duration of the virus growth cycle was approximately 50 hr. The time needed for the synthesis of one DNA molecule was found to be approximately 15 min. At multiplicities of infection of 1 or less than 1 PFU/cell, the onset of the linear phase of DNA accumulation was delayed, but the final rate of DNA synthesis was the same, independent of the input multiplicity. This was taken as a proof that templates for the synthesis of viral DNA multiply in the cell during the early phase of replication. However, the probability for every replicated DNA molecule to become in turn replicative decreased constantly during that phase. This could be accounted for by assuming a limited number of replication sites in the infected cell.

摘要

在亚克隆的CV1细胞生长的单层培养物中研究了猴病毒40脱氧核糖核酸(DNA)的复制时间进程。在感染复数为30至60个蚀斑形成单位(PFU)/细胞时,感染后10小时可检测到第一代子代DNA分子(组分1)。在接下来的10至12小时内,病毒DNA的积累以不断增加的速率进行,尽管是非指数方式。然后合成速率保持恒定,直到感染后约40小时DNA复制停止。在这些条件下,病毒生长周期的持续时间约为50小时。发现合成一个DNA分子所需的时间约为15分钟。在感染复数为1或小于1 PFU/细胞时,DNA积累线性阶段的开始延迟,但DNA合成的最终速率相同,与输入复数无关。这被视为病毒DNA合成模板在复制早期在细胞中倍增的证据。然而,在该阶段每个复制的DNA分子依次成为复制性分子的概率不断降低。这可以通过假设感染细胞中复制位点数量有限来解释。

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