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首页> 外文期刊>Journal of Molecular Biology >Crystal Structure of the Excisionase-DNA Complex from Bacteriophage Lambda.
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Crystal Structure of the Excisionase-DNA Complex from Bacteriophage Lambda.

机译:噬菌体λ的Excisionase-DNA复合物的晶体结构。

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摘要

The excisionase (Xis) protein from bacteriophage lambda is the best characterized member of a large family of recombination directionality factors that control integrase-mediated DNA rearrangements. It triggers phage excision by cooperatively binding to sites X1 and X2 within the phage, bending DNA significantly and recruiting the phage-encoded integrase (Int) protein to site P2. We have determined the co-crystal structure of Xis with its X2 DNA-binding site at 1.7A resolution. Xis forms a unique winged-helix motif that interacts with the major and minor grooves of its binding site using an alpha-helix and an ordered beta-hairpin (wing), respectively. Recognition is achieved through an elaborate water-mediated hydrogen-bonding network at the major groove interface, while the preformed hairpin forms largely non-specific interactions with the minor groove. The structure of the complex provides insights into how Xis recruits Int cooperatively, and suggests a plausible mechanism by which it may distort longer DNA fragments significantly. It reveals a surface on the protein that is likely to mediate Xis-Xis interactions required for its cooperative binding to DNA.
机译:来自噬菌体λ的切除酶(Xis)蛋白是控制整合酶介导的DNA重排的重组方向性家族大家族中最具特征的成员。它通过与噬菌体中的位点X1和X2协同结合,显着弯曲DNA并将噬菌体编码的整合酶(Int)蛋白募集到位点P2来触发噬菌体切除。我们已经确定了Xis的共晶体结构及其X2 DNA结合位点,分辨率为1.7A。 Xis形成独特的翼状螺旋基序,分别使用α螺旋和有序的β型发夹(翼)与其结合位点的主要和次要凹槽相互作用。识别是通过在主凹槽界面处的精细水介导的氢键网络实现的,而预先形成的发夹与次凹槽之间形成了非特异性相互作用。该复合物的结构提供了有关Xis如何合作募集Int的见解,并提出了一种可行的机制,可以使它显着地扭曲更长的DNA片段。它揭示了蛋白质上的一个表面,该表面可能介导其与DNA的协同结合所需的Xis-Xis相互作用。

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