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Combining H/D exchange mass spectroscopy and computational docking reveals extended DNA-binding surface on uracil-DNA glycosylase

机译:结合H / D交换质谱和计算对接,发现尿嘧啶DNA糖基化酶上的DNA结合表面扩展

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X-ray crystallography provides excellent structural data on protein-DNA interfaces, but crystallographic complexes typically contain only small fragments of large DNA molecules. We present a new approach that can use longer DNA substrates and reveal new protein-DNA interactions even in extensively studied systems. Our approach combines rigid-body computational docking with hydrogen/deuterium exchange mass spectrometry (DXMS). DXMS identifies solvent-exposed protein surfaces; docking is used to create a 3-dimensional model of the protein-DNA interaction. We investigated the enzyme uracil-DNA glycosylase (UNG), which detects and cleaves uracil from DNA. UNG was incubated with a 30 bp DNA fragment containing a single uracil, giving the complex with the abasic DNA product. Compared with free UNG, the UNG-DNA complex showed increased solvent protection at the UNG active site and at two regions outside the active site: residues 210-220 and 251-264. Computational docking also identified these two DNA-binding surfaces, but neither shows DNA contact in UNG-DNA crystallographic structures. Our results can be explained by separation of the two DNA strands on one side of the active site. These non-sequence-specific DNA-binding surfaces may aid local uracil search, contribute to binding the abasic DNA product and help present the DNA product to APE-1, the next enzyme on the DNA-repair pathway.
机译:X射线晶体学在蛋白质-DNA界面上提供了出色的结构数据,但是晶体学复合物通常仅包含大DNA分子的小片段。我们提出了一种新方法,即使在广泛研究的系统中,也可以使用更长的DNA底物并揭示新的蛋白质-DNA相互作用。我们的方法将刚体计算对接与氢/氘交换质谱(DXMS)相结合。 DXMS识别暴露于溶剂的蛋白质表面;对接用于创建蛋白质-DNA相互作用的3维模型。我们研究了尿嘧啶-DNA糖基化酶(UNG),该酶可检测和切割DNA中的尿嘧啶。 UNG与一个含有单个尿嘧啶的30 bp DNA片段一起孵育,产生了与无碱基DNA产物的复合物。与游离的UNG相比,UNG-DNA复合物在UNG活性位点和活性位点以外的两个区域显示出更高的溶剂保护:残基210-220和251-264。计算对接还确定了这两个DNA结合表面,但均未显示UNG-DNA晶体结构中的DNA接触。我们的结果可以通过在活性位点一侧分离两条DNA链来解释。这些非序列特异的DNA结合表面可能有助于局部尿嘧啶搜索,有助于结合无碱基的DNA产物,并有助于将DNA产物呈递给APE-1(DNA修复途径中的下一个酶)。

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