首页> 美国卫生研究院文献>Nucleic Acids Research >Topoisomerase I is preferentially associated with normal SV40 replicative intermediates but is associated with both replicating and nonreplicating SV40 DNAs which are deficient in histones.
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Topoisomerase I is preferentially associated with normal SV40 replicative intermediates but is associated with both replicating and nonreplicating SV40 DNAs which are deficient in histones.

机译:拓扑异构酶I优先与正常的SV40复制中间体相关但与组蛋白缺乏的复制和非复制SV40 DNA相关。

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摘要

Based on the use of equilibrium centrifugation in CsCl to separate covalent complexes between topoisomerase I and DNA from protein-free DNA, it was concluded previously that the topoisomerase is preferentially associated with replicating SV40 DNA (Champoux, J. J. 1988. J. Virol. 62:3675-3683). One explanation for the failure to find the enzyme associated with nonreplicating viral DNA is that most of the completed DNA is rapidly sequestered for encapsidation and inaccessible to topoisomerase I. This explanation has been ruled out in the present work by the finding that topoisomerase I in COS-1 cells is also preferentially associated with the replicative form of an SV40 origin-containing plasmid that lacks the genes coding for the virion structural proteins and therefore cannot be encapsidated. Thus it appears that some structural feature of the replicating DNA or the replication complex specifically recruits the topoisomerase to the DNA. SV40 DNA which is produced in the presence of the protein synthesis inhibitor, puromycin, is deficient in histones and as a result lacks normal chromatin structure. Topoisomerase I was found to be associated with SV40 DNA under these conditions whether or not it was replicating. This observation is interpreted as an indication that under normal conditions, chromatin structure limits access of topoisomerase I to the nonreplicating viral DNA.
机译:基于在CsCl中使用平衡离心将拓扑异构酶I和DNA之间的共价复合物与无蛋白的DNA分离,先前得出的结论是拓扑异构酶优先与复制SV40 DNA相关(Champoux,JJ 1988.J.Virol.62: 3675-3683)。未能找到与非复制型病毒DNA相关的酶的一种解释是,大多数完成的DNA被快速螯合用于衣壳化和拓扑异构酶I难以接近。目前的研究已通过发现COS中的拓扑异构酶I排除了这一解释。 -1细胞还优先与含有SV40起点的质粒的复制形式相关,该质粒缺乏编码病毒粒子结构蛋白的基​​因,因此不能被衣壳化。因此,似乎复制DNA或复制复合物的某些结构特征特异性地将拓扑异构酶募集至DNA。在蛋白质合成抑制剂嘌呤霉素存在下产生的SV40 DNA缺乏组蛋白,因此缺乏正常的染色质结构。发现拓扑异构酶I在这些条件下与SV40 DNA相关,无论它是否正在复制。该观察结果被解释为在正常条件下染色质结构限制了拓扑异构酶I进入非复制型病毒DNA的指示。

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