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首页> 外文期刊>Nucleic acids research >X-ray analysis of a complex of Escherichia coli uracil DNA glycosylase (EcUDG) with a proteinaceous inhibitor. The structure elucidation of a prokaryotic UDG
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X-ray analysis of a complex of Escherichia coli uracil DNA glycosylase (EcUDG) with a proteinaceous inhibitor. The structure elucidation of a prokaryotic UDG

机译:大肠杆菌尿嘧啶DNA糖基化酶(EcUDG)与蛋白质抑制剂的复合物的X射线分析。 UDG原核生物的结构解析

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Uracil-DNA glycosylase (UDG), a key highly conserved DNA repair enzyme involved in uracil excision repair, was discovered in Escherichia coli. The Bacillus subtilis bacteriophage, PBS-1 and PBS-2, which contain dUMP residues in their DNA, express a UDG inhibitor protein, Ugi which binds to UDG very tightly to form a physiologically irreversible complex. The X-ray analysis of the E.coli UDG (EcUDG)-Ugi complex at 3.2 ? resolution, leads to the first structure elucidation of a bacterial UDG molecule. This structure is similar to the enzymes from human and viral sources. A comparison of the available structures involving UDG permits the delineation of the constant and the variable regions of the molecule. Structural comparison and mutational analysis also indicate that the mode of action of the enzyme from these sources are the same. The crystal structure shows a remarkable spatial conservation of the active site residues involved in DNA binding in spite of significant differences in the structure of the enzyme-inhibitor complex, in comparison with those from the mammalian and viral sources. EcUDG could serve as a prototype for UDGs from pathogenic prokaryotes, and provide a framework for possible drug development against such pathogens with emphasis on features of the molecule that differ from those in the human enzyme.
机译:在大肠杆菌中发现了尿嘧啶DNA糖基化酶(UDG),这是一种涉及尿嘧啶切除修复的重要的高度保守的DNA修复酶。枯草芽孢杆菌噬菌体PBS-1和PBS-2在其DNA中含有dUMP残基,它们表达UDG抑制剂蛋白Ugi,它非常紧密地与UDG结合形成生理上不可逆的复合物。大肠杆菌UDG(EcUDG)-Ugi复合物在3.2?的X射线分析分辨率,导致细菌UDG分子的第一个结构阐明。这种结构类似于人和病毒来源的酶。对涉及UDG的可用结构的比较允许描述分子的恒定区和可变区。结构比较和突变分析也表明来自这些来源的酶的作用方式是相同的。与来自哺乳动物和病毒来源的酶抑制剂复合物在结构上有显着差异的情况下,晶体结构显示出与DNA结合有关的活性位点残基具有明显的空间保守性。 EcUDG可以用作致病原核生物UDG的原型,并为针对此类病原体的可能药物开发提供框架,重点是与人类酶不同的分子特征。

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