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Topological complexity of different populations of pBR322 as visualized by two-dimensional agarose gel electrophoresis.

机译:二维琼脂糖凝胶电泳显示,pBR322不同种群的拓扑复杂性。

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Neutraleutral two-dimensional (2D) agarose gelelectrophoresis was used to investigate populations of the different topological conformations that pBR322 can adopt in vivo in bacterial cells as well as in Xenopus egg extracts. To help in interpretation and identification of all the different signals, undigested as well as DNA samples pretreated with DNase I, topoisomerase I and topoisomerase II were analyzed. The second dimension of the 2D gel system was run with or without ethidium bromide to account for any possible changes in the migration behavior of DNA molecules caused by intercalation of this planar agent. Finally, DNA samples were isolated from a recA-strain of Escherichia coli , as well as after direct labeling of the replication intermediates in extracts of Xenopus laevis eggs. Altogether, the results obtained demonstrated that 2D gels can be readily used to identify most of the complex topological populations that circular molecules can adopt in vivo in both bacteria and eukaryotic cells.
机译:使用中性/中性二维(2D)琼脂糖凝胶电泳来研究pBR322在细菌细胞以及爪蟾卵提取物中可在体内采用的不同拓扑构象的种群。为了帮助解释和识别所有不同的信号,分析了未消化的DNA样品以及用DNase I,拓扑异构酶I和拓扑异构酶II预处理的DNA样品。 2D凝胶系统的第二维在有或没有溴化乙锭的情况下运行,以说明由这种平面试剂的插入引起的DNA分子迁移行为的任何可能变化。最后,从大肠杆菌的recA菌株中分离出DNA样品,以及在非洲爪蟾卵提取物中直接复制中间产物的标记后。总而言之,获得的结果表明2D凝胶可轻松用于鉴定环形分子可在细菌和真核细胞中体内采用的大多数复杂拓扑种群。

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