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Creating Directed Double-strand Breaks with the Ref Protein: A NOVEL RecA-DEPENDENT NUCLEASE FROM BACTERIOPHAGE P1*

机译:使用Ref蛋白创建定向双链断裂:一种细菌噬菌体P1的新型Reca依赖性核酸酶*

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摘要

The bacteriophage P1-encoded Ref protein enhances RecA-dependent recombination in vivo by an unknown mechanism. We demonstrate that Ref is a new type of enzyme; that is, a RecA-dependent nuclease. Ref binds to ss- and dsDNA but does not cleave any DNA substrate until RecA protein and ATP are added to form RecA nucleoprotein filaments. Ref cleaves only where RecA protein is bound. RecA functions as a co-nuclease in the Ref/RecA system. Ref nuclease activity can be limited to the targeted strands of short RecA-containing D-loops. The result is a uniquely programmable endonuclease activity, producing targeted double-strand breaks at any chosen DNA sequence in an oligonucleotide-directed fashion. We present evidence indicating that cleavage occurs in the RecA filament groove. The structure of the Ref protein has been determined to 1.4 Å resolution. The core structure, consisting of residues 77–186, consists of a central 2-stranded β-hairpin that is sandwiched between several α-helical and extended loop elements. The N-terminal 76 amino acid residues are disordered; this flexible region is required for optimal activity. The overall structure of Ref, including several putative active site histidine residues, defines a new subclass of HNH-family nucleases. We propose that enhancement of recombination by Ref reflects the introduction of directed, recombinogenic double-strand breaks.
机译:噬菌体P1编码的Ref蛋白通过未知机制增强了RecA依赖的体内重组。我们证明Ref是一种新型的酶。即,RecA依赖性核酸酶。 Ref与ss和dsDNA结合,但在添加RecA蛋白和ATP形成RecA核蛋白丝之前不会切割任何DNA底物。 Ref仅在结合RecA蛋白的位置切割。 RecA在Ref / RecA系统中充当共核酸酶。 Ref核酸酶活性可以限于短的含RecA的D-环的靶链。结果是独特的可编程核酸内切酶活性,以寡核苷酸定向的方式在任何选定的DNA序列上产生靶向的双链断裂。我们提供的证据表明在RecA细丝凹槽中发生切割。 Ref蛋白的结构已确定为1.4Å分辨率。核心结构由残基77–186组成,由中心的2链β-发夹结构组成,该结构夹在多个α-螺旋和延伸的环元素之间。 N末端的76个氨基酸残基是无序的;这个灵活的区域是最佳活动所必需的。 Ref的整体结构,包括几个假定的活性位点组氨酸残基,定义了HNH家族核酸酶的新亚类。我们建议通过Ref的重组增强反映了有向,重组的双链断裂的引入。

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