首页> 美国卫生研究院文献>The EMBO Journal >X-ray structure of T4 endonuclease VII: a DNA junction resolvase with a novel fold and unusual domain-swapped dimer architecture.
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X-ray structure of T4 endonuclease VII: a DNA junction resolvase with a novel fold and unusual domain-swapped dimer architecture.

机译:T4核酸内切酶VII的X射线结构:具有新的折叠和不寻常的域交换二聚体结构的DNA连接分辨酶。

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摘要

Phage T4 endonuclease VII (Endo VII), the first enzyme shown to resolve Holliday junctions, recognizes a broad spectrum of DNA substrates ranging from branched DNAs to single base mismatches. We have determined the crystal structures of the Ca2+-bound wild-type and the inactive N62D mutant enzymes at 2.4 and 2.1 A, respectively. The Endo VII monomers form an elongated, highly intertwined molecular dimer exhibiting extreme domain swapping. The major dimerization elements are two pairs of antiparallel helices forming a novel 'four-helix cross' motif. The unique monomer fold, almost completely lacking beta-sheet structure and containing a zinc ion tetrahedrally coordinated to four cysteines, does not resemble any of the known junction-resolving enzymes, including the Escherichia coli RuvC and lambda integrase-type recombinases. The S-shaped dimer has two 'binding bays' separated by approximately 25 A which are lined by positively charged residues and contain near their base residues known to be essential for activity. These include Asp40 and Asn62, which function as ligands for the bound calcium ions. A pronounced bipolar charge distribution suggests that branched DNA substrates bind to the positively charged face with the scissile phosphates located near the divalent cations. A model for the complex with a four-way DNA junction is presented.
机译:噬菌体T4核酸内切酶VII(Endo VII)是第一种被证明可解决霍利迪连接的酶,可识别从分支DNA到单碱基错配的广泛DNA底物。我们已经确定了分别在2.4和2.1 A下与Ca2 +结合的野生型和非活性N62D突变酶的晶体结构。 Endo VII单体形成伸长的,高度交织的分子二聚体,表现出极端的结构域交换。主要的二聚化元素是两对反平行的螺旋,形成一个新颖的“四螺旋交叉”图案。独特的单体折叠,几乎完全缺乏β-折叠结构,并且含有与四个半胱氨酸四面体配位的锌离子,与任何已知的连接分辨酶都不相似,包括大肠杆菌RuvC和λ整合酶型重组酶。 S形二聚体有两个大约25 A隔开的“结合区”,两边带有带正电的残基,并在其碱基附近含有已知对活性至关重要的残基。这些包括Asp40和Asn62,它们充当结合的钙离子的配体。显着的双极性电荷分布表明,分支的DNA底物通过位于二价阳离子附近的易裂解的磷酸盐与带正电荷的表面结合。提出了具有四向DNA连接的复合物模型。

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