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首页> 外文期刊>Journal of Molecular Biology >EFFECT OF DNA TOPOLOGY ON HOLLIDAY JUNCTION RESOLUTION BY ESCHERICHIA COLI RUVC AND BACTERIOPHAGE T7 ENDONUCLEASE I
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EFFECT OF DNA TOPOLOGY ON HOLLIDAY JUNCTION RESOLUTION BY ESCHERICHIA COLI RUVC AND BACTERIOPHAGE T7 ENDONUCLEASE I

机译:DNA拓扑学对大肠埃希氏菌和细菌噬菌体T7核糖核酸酶I的节假日结分辨率的影响

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摘要

Holliday junctions are key intermediates in homologous genetic recombination. Their resolution requires specialised nucleases that nick pairs of strands at the junction point, leading to the separation of mature recombinants. Resolution occurs in either of two orientations, according to which DNA strands are cut. We show that DNA topology can determine the efficiency and outcome of a recombination reaction. Using two Holliday junction resolvases, Escherichia coli RuvC protein and T7 endonuclease I, we observed that supercoiled figure-8 DNA molecules containing Holliday junctions were resolved with a specific orientation bias, and that this bias was reversed by the presence of a topological tether (catenation). In contrast, when all topological constraints were removed by restriction digestion, the recombination intermediates were resolved equally in the two orientations. These results show that topological constraints affecting Holliday junction structure influence the orientation of resolution by cellular resolvases. (C) 1997 Academic Press Limited. [References: 49]
机译:霍利迪连接是同源基因重组的关键中间体。它们的分离需要专门的核酸酶,这些酶在连接点形成双链切口,从而导致成熟重组体的分离。解析以两个方向中的任何一个发生,根据该方向切割DNA链。我们表明DNA拓扑可以确定效率和重组反应的结果。使用两个霍利迪交界区解决方案,大肠杆菌RuvC蛋白和T7核酸内切酶I,我们观察到含有霍利迪交界处的超螺旋图8 DNA分子以特定的方向偏向得以解决,并且这种拓扑偏向因拓扑系链的存在而被逆转(串联)。相反,当通过限制性消化去除所有拓扑约束时,重组中间体在两个方向上均等分离。这些结果表明影响霍利迪结结构的拓扑约束影响细胞分辨力的分辨率的方向。 (C)1997 Academic Press Limited。 [参考:49]

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