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Methods for the analysis of high precision differential hydrogen-deuterium exchange data

机译:高精度氢氘交换数据分析方法

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Hydrogen/deuterium exchange (HDX) mass spectrometry has been widely applied to the characterization of protein dynamics. More recently, differential HDX has been shown to be effective for the characterization of ligand binding. Previously we have described a fully automated HDX system for use as a ligand screening platform. Here we describe and validate the required data analysis workflow to facilitate the use of HDX as a robust approach for ligand screening. Following acquisition of HDX data at a single on-exchange time point (n ≥ 3), one way analysis of variance in conjunction with the Tukey multiple comparison procedure is used to establish the significance of any measured difference. Analysis results are graphed with respect to a single peptide, ligand or group of ligands, or displayed as an overview within a heat map. For the heat map display, only Δ%D values with a Tukey-adjusted P-value less than 0.05 are colored. Hierarchical clustering is used to bin compounds with highly similar HDX signatures. The workflow is evaluated with a small dataset showing the ligand binding domain (LDB) of the nuclear receptor peroxisome proliferator-activated receptor gamma (PPARγ) screened against 10 functionally selective ligands. More significantly, data for the vitamin D receptor (VDR) in complex with 87 ligands are presented. To highlight the robustness and precision of our automated HDX platform we analyzed the data from 4191 replicate HDX measurements acquired over an eight month timeframe. Ninety six percent of these measurements were within 10% of the mean value. Work has begun to integrate these analysis and graphing components within our HDX software suite.
机译:氢/氘交换(HDX)质谱已广泛应用于蛋白质动力学的表征。最近,差分HDX已显示对配体结合的表征有效。以前,我们已经描述了用作配体筛选平台的全自动HDX系统。在这里,我们描述并验证所需的数据分析工作流程,以促进将HDX用作配体筛选的可靠方法。在单个交换时间点(n≥3)上获取HDX数据后,结合Tukey多重比较程序使用方差分析的一种方法来确定任何测得差异的重要性。分析结果针对单个肽,配体或配体组作图,或显示为热图内的概图。对于热图显示,仅涂有Tukey调整的P值小于0.05的Δ%D值。层次聚类用于对具有高度相似的HDX签名的化合物进行分类。用一个小的数据集评估工作流程,该数据集显示了针对10个功能选择性配体筛选的核受体过氧化物酶体增殖物激活受体γ(PPARγ)的配体结合域(LDB)。更重要的是,提供了与87个配体复合的维生素D受体(VDR)的数据。为了突出我们的自动化HDX平台的鲁棒性和精度,我们分析了在八个月的时间范围内获得的4191个复制HDX测量数据。这些测量的百分之九十六在平均值的百分之十以内。已经开始将这些分析和图形组件集成到我们的HDX软件套件中的工作。

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