Department of Chemistry, The University of Kansas, 1567 Irving Hill Road, Lawrence, Kansas 66045, United States.
J Am Soc Mass Spectrom. 2021 Jul 7;32(7):1610-1617. doi: 10.1021/jasms.0c00475. Epub 2021 Mar 25.
Hydrogen exchange-mass spectrometry (HX-MS) is used widely to characterize higher-order protein structure and to locate changes in protein structure and dynamics that accompany, for example, ligand binding and protein-protein interactions. Quantitative differences in the amount of hydrogen exchange between two states (i.e., differential HX) are taken as evidence of significant differences in higher-order structure or dynamics. The quantitative measures range from simple mass differences at one HX labeling time to differences averaged across an HX time course with correction for deuterium recovery. This work applies the principles of uncertainty propagation to differential HX measurements to facilitate the identification of significant differences. Furthermore, it is shown that pooled estimates of experimental uncertainty result in a lower false positive rate than estimates of uncertainty based on individual standard deviations.
氢氚交换质谱(HX-MS)广泛用于研究蛋白质的高级结构,以定位蛋白质结构和动力学的变化,例如配体结合和蛋白质-蛋白质相互作用。两个状态之间氢氚交换量的定量差异(即差异 HX)被视为高级结构或动力学显著差异的证据。定量测量范围从一个 HX 标记时间的简单质量差异到 HX 时间过程的平均值,并用氘回收率校正。这项工作将不确定性传播原理应用于差异 HX 测量,以促进显著差异的识别。此外,研究表明,与基于单个标准偏差的不确定性估计相比,实验不确定性的汇总估计会导致更低的假阳性率。