Department of Molecular Biology & Biochemistry, UC-Irvine, Irvine, CA 92697, USA.
Rapid Commun Mass Spectrom. 2010 Dec 15;24(23):3373-9. doi: 10.1002/rcm.4750.
Two tools are described for integrating LC elution position with mass-based data in hydrogen-deuterium exchange (HDX) experiments by nano-liquid chromatography/matrix-assisted laser desorption/ionization mass spectrometry (nanoLC/MALDI-MS, a novel approach to HDX-MS). The first of these, 'TOF2H-Z Comparator', highlights peptides in HDX experiments that are potentially misidentified on the basis of mass alone. The program first calculates normalized values for the organic solvent concentration responsible for the elution of ions in nanoLC/MALDI HDX experiments. It then allows the solvent gradients for the multiple experiments contributing to an MS/MS-confirmed peptic peptide library to be brought into mutual alignment by iteratively re-modeling variables among LC parameters such as gradient shape, solvent species, fraction duration and LC dead time. Finally, using the program, high-probability chromatographic outliers can be flagged within HDX experimental data. The role of the second tool, 'TOF2H-XIC Comparator', is to normalize the LC chromatograms corresponding to all deuteration timepoints of all HDX experiments of a project, to a common reference. Accurate normalization facilitates the verification of chromatographic consistency between all ions whose spectral segments contribute to particular deuterium uptake plots. Gradient normalization in this manner revealed chromatographic inconsistencies between ions whose masses were either indistinguishable or separated by precise isotopic increments.
描述了两种工具,用于通过纳升液相色谱/基质辅助激光解吸/电离质谱(nanoLC/MALDI-MS)将 LC 洗脱位置与氢氘交换(HDX)实验中的基于质量的数据整合,这是一种新颖的 HDX-MS 方法。其中第一个工具是“TOF2H-Z 比较器”,它突出显示了仅基于质量可能被错误识别的 HDX 实验中的肽。该程序首先计算负责 nanoLC/MALDI HDX 实验中离子洗脱的有机溶剂浓度的归一化值。然后,它允许通过迭代重新建模 LC 参数(如梯度形状、溶剂种类、馏分持续时间和 LC 死时间)之间的变量,使参与 MS/MS 确认肽库的多个实验的溶剂梯度相互对齐。最后,使用该程序可以在 HDX 实验数据中标记高概率色谱离群值。第二个工具“TOF2H-XIC 比较器”的作用是将项目中所有 HDX 实验的所有氘化时间点的 LC 色谱图归一化为共同参考。准确的归一化有助于验证对特定氘吸收率图有贡献的所有离子的色谱一致性。以这种方式进行梯度归一化,揭示了质量要么无法区分要么通过精确的同位素增量分离的离子之间的色谱不一致性。