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J Am Soc Mass Spectrom. 2021 Dec 1;32(12):2711-2727. doi: 10.1021/jasms.1c00216. Epub 2021 Nov 8.
This Account describes considerations for the data generation, data analysis, and data interpretation of a hydrogen/deuterium exchange-mass spectrometry (HDX-MS) experiment to have a quantitative argument. Although HDX-MS has gained its popularity as a biophysical tool, the argument from its data often remains qualitative. To generate HDX-MS data that are more suitable for a quantitative argument, the sequence coverage and sequence resolution should be optimized during the feasibility stage, and the time window coverage and time window resolution should be improved during the HDX stage. To extract biophysically meaningful values for a certain perturbation from medium-resolution HDX-MS data, there are two major ways: (i) estimating the area between the two deuterium buildup curves using centroid values with and without the perturbation when plotted against log time scale and (ii) dissecting into multiple single-exponential curves using the isotope envelopes. To have more accurate arguments for an HDX-MS perturbation study, (i) false negatives due to sequence coverage, (ii) false negatives due to time window coverage, (iii) false positives due to sequence resolution, and (iv) false positives due to allosteric effects should be carefully examined.
本账户描述了在进行氢/氘交换-质谱(HDX-MS)实验时,为了进行定量论证,在数据生成、数据分析和数据解释方面需要考虑的因素。尽管 HDX-MS 已作为一种生物物理工具而广受欢迎,但它的数据论证往往仍然是定性的。为了生成更适合定量论证的数据,在可行性阶段应优化序列覆盖率和序列分辨率,在 HDX 阶段应提高时间窗口覆盖率和时间窗口分辨率。为了从中等分辨率的 HDX-MS 数据中提取对特定扰动具有生物学意义的值,有两种主要方法:(i)当用有无扰动的质心值绘制到对数时间标度时,估计两个氘积累曲线之间的面积,以及 (ii) 使用同位素包络线将其分解为多个单指数曲线。为了对 HDX-MS 扰动研究进行更准确的论证,应仔细检查 (i) 由于序列覆盖率而导致的假阴性,(ii) 由于时间窗口覆盖率而导致的假阴性,(iii) 由于序列分辨率而导致的假阳性,以及 (iv) 由于变构效应而导致的假阳性。