首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Quantitative assessment of protein structural models by comparison of H/D exchange MS data with exchange behavior accurately predicted by DXCOREX
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Quantitative assessment of protein structural models by comparison of H/D exchange MS data with exchange behavior accurately predicted by DXCOREX

机译:通过比较H / D交换MS数据和DXCOREX准确预测的交换行为来定量评估蛋白质结构模型

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Peptide amide hydrogen/deuterium exchange mass spectrometry (DXMS) data are often used to qualitatively support models for protein structure. We have developed and validated a method (DXCOREX) by which exchange data can be used to quantitatively assess the accuracy of three-dimensional (3-D) models of protein structure. The method utilizes the COREX algorithm to predict a protein's amide hydrogen exchange rates by reference to a hypothesized structure, and these values are used to generate a virtual data set (deuteron incorporation per peptide) that can be quantitatively compared with the deuteration level of the peptide probes measured by hydrogen exchange experimentation. The accuracy of DXCOREX was established in studies performed with 13 proteins for which both high-resolution structures and experimental data were available. The DXCOREX-calculated and experimental data for each protein was highly correlated. We then employed correlation analysis of DXCOREX-calculated versus DXMS experimental data to assess the accuracy of a recently proposed structural model for the catalytic domain of a Ca ~(2+)-independent phospholipase A _2. The model's calculated exchange behavior was highly correlated with the experimental exchange results available for the protein, supporting the accuracy of the proposed model. This method of analysis will substantially increase the precision with which experimental hydrogen exchange data can help decipher challenging questions regarding protein structure and dynamics.
机译:肽酰胺氢/氘交换质谱(DXMS)数据通常用于定性支持蛋白质结构模型。我们已经开发并验证了一种方法(DXCOREX),通过该方法可以将交换数据用于定量评估蛋白质结构的三维(3-D)模型的准确性。该方法利用COREX算法,通过参考假设的结构预测蛋白质的酰胺氢交换速率,这些值用于生成虚拟数据集(每个肽的氘代掺入量),可以与肽的氘化水平进行定量比较通过氢交换实验测量的探针。 DXCOREX的准确性是在对13种蛋白质进行的研究中确定的,这些蛋白质均具有高分辨率的结构和实验数据。每种蛋白质的DXCOREX计算和实验数据高度相关。然后,我们采用DXCOREX计算与DXMS实验数据的相关性分析来评估最近提出的结构模型对Ca〜(2+)依赖性磷脂酶A _2催化结构域的准确性。该模型的计算交换行为与可用于蛋白质的实验交换结果高度相关,从而支持了所提出模型的准确性。这种分析方法将大大提高实验氢交换数据的精度,从而有助于破译有关蛋白质结构和动力学的挑战性问题。

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