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DNA end-directed and processive nuclease activities of the archaeal XPF enzyme

机译:XPF酶的DNA末端定向和进行性核酸酶活性

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The XPF/Mus81 family of structure-specific nucleases cleaves branched or nicked DNA substrates and are implicated in a wide range of DNA repair and recombination processes. The structure of the crenarchaeal XPF bound to a DNA duplex has revealed a plausible mechanism for DNA binding, involving DNA distortion into upstream and downstream duplexes engaged by the two helix-hairpin-helix domains that form a dimeric structure at the C-terminus of the enzyme. A flexible linker joins these to the dimeric nuclease domain, and a C-terminal motif interacts with the sliding clamp, which is essential for the activity of the enzyme. Here, we demonstrate the importance of the downstream duplex in directing the endonuclease activity of crenarchaeal XPF, which is similar to that of Mus81-Eme1, and suggest a mechanistic basis for this control. Furthermore, our data reveal that the enzyme can digest a nicked DNA strand processively over at least 60 nt in a 3'-5' direction and can remove varied types of DNA lesions and blocked DNA termini. This in vitro activity suggests a potential role for crenarchaeal XPF in a variety of repair processes for which there are no clear pathways in archaea.
机译:XPF / Mus81家族的结构特异性核酸酶可裂解分支或有缺口的DNA底物,并涉及广泛的DNA修复和重组过程。绑定到DNA双链体的crenarchaeal XPF的结构揭示了DNA结合的合理机制,涉及DNA畸变到由两个螺旋-发夹-螺旋结构域结合的上游和下游双链体,这两个螺旋结构在C的C端形成二聚体结构。酶。柔性接头将它们连接至二聚体核酸酶结构域,并且C末端基序与滑动夹具相互作用,这对酶的活性至关重要。在这里,我们证明了下游双链体在指导crenarchaeal XPF的核酸内切酶活性方面的重要性,这与Mus81-Eme1相似,并为这种控制提供了机理基础。此外,我们的数据表明,该酶可以在3'-5'方向上至少60 nt上逐步消化一条有缺口的DNA链,并且可以去除各种类型的DNA损伤和封闭的DNA末端。这种体外活性表明,在古细菌中没有明确途径的多种修复过程中,crenarchaeal XPF具有潜在的作用。

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