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λ整合酶的两个结构特征对于多聚体而非单体进行DNA切割至关重要。

Two structural features of lambda integrase that are critical for DNA cleavage by multimers but not by monomers.

作者信息

Lee Sang Yeol, Aihara Hideki, Ellenberger Tom, Landy Arthur

机构信息

Division of Biology and Medicine, Brown University, 69 Brown Street, Providence, RI 02912, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Mar 2;101(9):2770-5. doi: 10.1073/pnas.0400135101. Epub 2004 Feb 19.

Abstract

Despite many years of genetic and biochemical studies on the lambda integrase (Int) recombination system, it is still not known whether the Int protein is competent for DNA cleavage as a monomer. We have addressed this question, as part of a larger study of Int functions critical for the formation of higher-order complexes, by isolating "multimer-specific" mutants. We identify a pair of oppositely charged residues, E153 and R169, that comprise an intermolecular salt bridge within a functional Int multimer. Mutation of either of these residues significantly reduces both the cleavage of full-att sites and the resolution of Holliday junctions without compromising the cleavage of half-att site substrates. Allele-specific suppressor mutations were generated at these residues. Their interaction with wild-type Int on preformed Holliday junctions indicates that the mutated residues comprise an intermolecular salt bridge. We have also shown that the most C-terminal seven residues of Int, which comprise another previously identified subunit interface, inhibit DNA cleavage by monomeric but not multimeric Int. Taken together, our results lead us to conclude that Int can cleave DNA as a monomer. We also identify and discuss unique structural features of Int that act negatively to reduce its activity as a monomer and other features that act positively to enhance its activity as a multimer.

摘要

尽管对λ整合酶(Int)重组系统进行了多年的遗传学和生物化学研究,但Int蛋白作为单体是否具备DNA切割能力仍不清楚。作为对Int在高阶复合物形成中起关键作用的功能进行更广泛研究的一部分,我们通过分离“多聚体特异性”突变体来解决这个问题。我们鉴定出一对带相反电荷的残基E153和R169,它们在功能性Int多聚体内形成分子间盐桥。这两个残基中任何一个发生突变,都会显著降低完整附着位点的切割以及霍利迪连接体的拆分,同时又不影响半附着位点底物的切割。在这些残基处产生了等位基因特异性抑制突变。它们与预先形成的霍利迪连接体上的野生型Int的相互作用表明,突变后的残基构成了分子间盐桥。我们还表明,Int最末端的七个残基构成了另一个先前鉴定的亚基界面,它能抑制单体Int的DNA切割,但不能抑制多聚体Int的DNA切割。综合来看,我们的结果使我们得出结论,Int可以作为单体切割DNA。我们还鉴定并讨论了Int的独特结构特征,这些特征对其单体活性起负向作用,会降低其活性,而其他特征则对其多聚体活性起正向作用,会增强其活性。

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