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A Structural Model of the Urease Activation Complex Derived from Ion Mobility-Mass Spectrometry and Integrative Modeling

机译:离子迁移质谱和整合模型衍生脲酶活性复合物的结构模型

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摘要

The synthesis of active Klebsiella aerogenes urease via an 18-subunit enzyme apoprotein-accessory protein pre-activation complex has been well studied biochemically, but thus far this complex has remained refractory to direct structural characterization. Using ion mobility-mass spectrometry, we characterized several protein complexes between the core urease apoprotein and its accessory proteins, including the 610-kDa (UreABC)(3)(UreDFG)(3) complex. Using our recently developed computational modeling workflow, we generated ensembles of putative (UreABC)(3)(UreDFG)(3) species consistent with experimental restraints and characterized the structural ambiguity present in these models. By integrating structural information from previous studies, we increased the resolution of the ion mobility-mass spectrometry-derived models substantially, and we observe a discrete population of structures consistent with all of the available data for this complex.
机译:通过18-亚基酶诱发蛋白质预活化复合物的活性Klebsiella Airogenes脲酶的合成已经很好地生物化学,但到目前为止,这综合体仍然是直接结构表征的难治度。 使用离子迁移率质谱法,在核心脲酶诱发蛋白及其附带蛋白质之间表征了几种蛋白质复合物,包括610-kda(脲会)(3)(3)(3)络合物。 使用我们最近开发的计算建模工作流程,我们产生了符合实验限制的推定(尿素)(3)(3)(3)种的集合,并表征了这些模型中存在的结构模糊性。 通过将结构信息与先前的研究集成,我们基本上增加了离子迁移率质谱衍生模型的分辨率,并且我们观察到与该复合物的所有可用数据一致的离散结构。

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