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Direct analysis of Holliday junction resolving enzyme in a DNA origami nanostructure.

机译:直接分析DNA折纸纳米结构中的霍利迪连接解析酶。

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摘要

Holliday junction (HJ) resolution is a fundamental step for completion of homologous recombination. HJ resolving enzymes (resolvases) distort the junction structure upon binding and prior cleavage, raising the possibility that the reactivity of the enzyme can be affected by a particular geometry and topology at the junction. Here, we employed a DNA origami nano-scaffold in which each arm of a HJ was tethered through the base-pair hybridization, allowing us to make the junction core either flexible or inflexible by adjusting the length of the DNA arms. Both flexible and inflexible junctions bound to Bacillus subtilis RecU HJ resolvase, while only the flexible junction was efficiently resolved into two duplexes by this enzyme. This result indicates the importance of the structural malleability of the junction core for the reaction to proceed. Moreover, cleavage preferences of RecU-mediated reaction were addressed by analyzing morphology of the reaction products.
机译:霍利迪结(HJ)解析是完成同源重组的基本步骤。 HJ分解酶(resolvas)在结合和事先切割后会扭曲连接结构,从而增加了酶的反应性可能受连接处特定的几何形状和拓扑结构影响的可能性。在这里,我们使用了一种DNA折纸纳米支架,其中HJ的每个臂通过碱基对杂交进行束缚,从而允许我们通过调节DNA臂的长度来使连接核心灵活或不灵活。柔性和非柔性连接都与枯草芽孢杆菌RecU HJ溶解酶结合,而只有柔性连接被该酶有效分解为两个双链体。该结果表明结核的结构可延展性对于反应进行的重要性。此外,通过分析反应产物的形态来解决RecU介导的反应的裂解偏好。

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