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Spermidine biases the resolution of Holliday junctions by phage lambda integrase

机译:亚精胺通过噬菌体λ整合酶偏向Holliday连接的分辨率

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Holliday junctions are a central intermediate in diverse pathways of DNA repair and recombination. The isomerization of a junction determines the directionality of the recombination event. Previous studies have shown that the identity of the central sequence of the junction may favor one of the two isomers, in turn controlling the direction of the pathway. Here we demonstrate that, in the absence of DNA sequence-mediated isomer preference, polycations are the major contributor to biasing strand cleavage during junction resolution. In the case of wild-type phage lambda excision junctions, spermidine plays the dominant role in controlling the isomerization state of the junction and increases the rate of junction resolution. Spermidine also counteracts the sequence-imposed bias on resolution. The spermidine-induced bias is seen equally on supercoiled and linear excisive recombination junction intermediates, and thus is not just an artefact of in vitro recombination conditions. The contribution of spermidine requires the presence of accessory factors, and results in the repositioning of Int's core-binding domains on junctions, perhaps due to DNA-spermidine-protein interactions, or by influencing DNA conformation in the core region. Our results lead us to propose that spermidine together with accessory factors promotes the formation of the second junction isomer. We propose that this rearrangement triggers the activation of the second pair of Int active sites necessary to resolve Holliday junctions during phage lambda Int-mediated recombination.
机译:霍利迪接头是DNA修复和重组的多种途径的主要中间产物。连接的异构化决定了重组事件的方向性。先前的研究表明,连接中心序列的同一性可能有利于两个异构体之一,进而控制该途径的方向。在这里,我们证明,在没有DNA序列介导的异构体偏好的情况下,聚阳离子是在连接分辨过程中偏向链断裂的主要因素。在野生型噬菌体λ切除连接的情况下,亚精胺在控制连接的异构化状态中起主导作用,并提高连接分辨率。亚精胺还抵消了对分辨率施加的序列偏倚。在超螺旋和线性兴奋性重组连接中间产物上,亚精胺诱导的偏见相同,因此,这不仅仅是体外重组条件的假象。亚精胺的贡献需要存在辅助因子,并可能导致Int核心结合结构域在连接处的重新定位,这可能是由于DNA-亚精胺-蛋白质相互作用或通过影响核心区域的DNA构象而引起的。我们的结果使我们提出亚精胺与辅助因子一起促进第二连接异构体的形成。我们建议这种重排触发第二对Int活性位点的激活,这是解决噬菌体λInt介导的重组过程中霍利迪结的必要条件。

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