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A general method for predicting amino acid residues experiencing hydrogen exchange

机译:预测经历氢交换的氨基酸残基的一般方法

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Information on protein hydrogen exchange can help delineate key regions involved in protein-protein inter-actions and provides important insight towards determining functional roles of genetic variants and their possible mechanisms in disease processes. Previous studies have shown that the degree of hydrogen exchange is affected by hydrogen bond formations, solvent accessibility, proximity to other residues, and experimental conditions. However, a general predictive method for identifying residues capable of hydrogen exchange transferable to a broad set of proteins is lacking. We have developed a machine learning method based on random forest that can predict whether a residue experiences hydrogen exchange. Using data from the START2FOLD database, which contains information on 13,306 residues (3,790 of which experience hydrogen exchange and 9,516 which do not exchange), our method achieves good performance. Specifically, we achieve an overall out-of-bag (OOB) error, an unbiased estimate of the test set error, of 20.3 percent. Using a randomly selected test data set consisting of 500 residues experiencing hydrogen exchange and 500 which do not, our method achieves an accuracy of 0.79, a recall of 0.74, a precision of 0.82, and an F1 score of 0.78.
机译:蛋白质氢交换信息可以帮助参与蛋白质 - 蛋白质间的行动描出重点区域,并提供对确定的遗传变异与疾病过程中的可能机制的功能性作用的重要见解。先前的研究已经表明,氢交换程度被氢键形成,溶剂可接近性,接近其它残基,并且实验条件的影响。然而,用于鉴定能够氢交换转移的残基以一套广泛的蛋白质的一般方法的预测缺乏。我们已经开发了基于随机森林机器学习方法,可以预测是否残留经验氢交换。从START2FOLD数据库,其中包含在13306个残基(其中3,790的不交流经验氢交换和9,516),我们的方法取得了良好的绩效信息使用的数据。具体而言,我们实现20.3%的总体外的袋(OOB)错误,测试仪误差的无偏估计。使用由500个残基经历氢交换和500,其不这样做,我们的方法实现的0.79的精度,0.74召回,0.82的精度,和0.78的F1得分的随机选择的测试数据集。

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