首页> 美国卫生研究院文献>The EMBO Journal >The Holliday junction intermediates of lambda integrative and excisive recombination respond differently to the bending proteins integration host factor and excisionase.
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The Holliday junction intermediates of lambda integrative and excisive recombination respond differently to the bending proteins integration host factor and excisionase.

机译:Lambda整合和激进重组的霍利迪连接中间体对弯曲蛋白整合宿主因子和切除酶的反应不同。

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摘要

In lambda site-specific recombination, the integrative and excisive reactions proceed via two different Holliday junction intermediates, both of which are generated and resolved by a pair of sequentially ordered single strand exchanges. Factors affecting the directionality and efficiency of the second pair of strand exchanges were examined using artificial Holliday junctions (chi-forms). The integrative and excisive recombination intermediates respond differently to the accessory DNA bending proteins integration host factor and excisionase (Xis). These differences between the two recombination intermediates result from a different interaction pattern between proteins binding to the left (P arm) and right (P' arm) of the crossover region. The effect of Xis protein on the directionality of resolution, i.e. the choice of which strands are exchanged, is consistent with a role in promoting the second strand exchange during excision. Proteins binding to the left of the crossover region (P arm) primarily influence the directionality of resolution, while proteins binding to the right (P' arm) have a greater effect on the overall efficiency of resolution. Together, the effect of proteins binding to sites in the P and P' arms is to greatly enhance resolution of the two different Holliday intermediates and to favor resolution in the 'forward' direction for both integrative and excisive recombination.
机译:在λ位点特异性重组中,整合反应和激发反应通过两个不同的霍利迪连接中间体进行,两者均通过一对顺序排列的单链交换产生并分解。使用人工霍利迪结(chi形式)检查了影响第二对链交换的方向性和效率的因素。整合重组和重组重组中间体对辅助DNA弯曲蛋白整合宿主因子和切除酶(Xis)的反应不同。两种重组中间体之间的这些差异是由于结合至交叉区左侧(P臂)和右侧(P'臂)的蛋白质之间的相互作用方式不同而引起的。 Xis蛋白对分辨率方向性的影响,即交换哪些链的选择,与在切除过程中促进第二链交换的作用是一致的。结合到交叉区域左侧(P臂)的蛋白质主要影响分辨率的方向性,而结合到右侧(P'臂)的蛋白质对分辨率的整体效率影响更大。总之,蛋白质结合到P和P'臂上的位点的作用是大大提高两种不同的Holliday中间体的分离度,并有利于整合重组和转移重组的“前进”方向的分离。

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