Department of Biotechnology and Life Science, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.
Human Metabolome Technologies Inc., 246-2 Mizukami, Kakuganji, Tsuruoka, Yamagata 997-0052, Japan.
J Am Soc Mass Spectrom. 2024 Sep 4;35(9):2118-2127. doi: 10.1021/jasms.4c00132. Epub 2024 Aug 13.
Capillary electrophoresis coupled with tandem mass spectrometry (CE-MS/MS) offers advantages in peak capacity and sensitivity for metabolic profiling owing to the electroosmotic flow-based separation. However, the utilization of data-independent MS/MS acquisition (DIA) is restricted due to the absence of an optimal procedure for analytical chemistry and its related informatics framework. We assessed the mass spectral quality using two DIA techniques, namely, all-ion fragmentation (AIF) and variable DIA (vDIA), to isolate 60-800 Da precursor ions with respect to annotation rates. Our findings indicate that vDIA, coupled with the updated MS-DIAL chromatogram deconvolution algorithm, yields higher spectral matching scores and annotation rates compared to AIF. Additionally, we evaluated a linear migration time (MT) correction method using internal standards to accurately align chromatographic peaks in a data set. Postcorrection, the data set exhibited less than 0.1 min MT drifts, a difference mostly equivalent to that of conventional reverse-phase liquid chromatography techniques. Moreover, we conducted MT prediction for metabolites recorded in mass spectral libraries and metabolite structure databases containing a total of 469,870 compounds, achieving an accuracy of less than 1.5 min root mean squares. Our platform provides a peak annotation platform utilizing MT information, accurate precursor /, and the MS/MS spectrum recommended by the metabolomics standards initiative. Applying this procedure, we investigated metabolic alterations in lipopolysaccharide (LPS)-induced macrophages, characterizing 170 metabolites. Furthermore, we assigned metabolite information to unannotated peaks using an structure elucidation tool, MS-FINDER. The results were integrated into the nodes in the molecular spectrum network based on the MS/MS similarity score. Consequently, we identified significantly altered metabolites in the LPS-administration group, where glycinamide ribonucleotide, not present in any spectral libraries, was newly characterized. Additionally, we retrieved metabolites of false-negative hits during the initial spectral annotation procedure. Overall, our study underscores the potential of CE-MS/MS with DIA and computational mass spectrometry techniques for metabolic profiling.
毛细管电泳与串联质谱联用(CE-MS/MS)由于基于电渗流的分离,在代谢物分析中具有更高的峰容量和灵敏度优势。然而,由于缺乏分析化学的最佳方法和相关信息学框架,数据非依赖性 MS/MS 采集(DIA)的应用受到限制。我们使用两种 DIA 技术,即全离子碎裂(AIF)和可变 DIA(vDIA),评估了质谱质量,以相对于注释率分离 60-800 Da 的前体离子。我们的研究结果表明,与 AIF 相比,vDIA 与更新的 MS-DIAL 色谱图解卷积算法相结合,可产生更高的光谱匹配评分和注释率。此外,我们还评估了使用内标进行线性迁移时间(MT)校正的方法,以准确对齐数据集内的色谱峰。校正后,数据集的 MT 漂移小于 0.1 分钟,与传统反相液相色谱技术的差异大致相同。此外,我们对记录在质谱文库和代谢物结构数据库中的代谢物进行了 MT 预测,包含 469870 种化合物,精度小于 1.5 分钟均方根。我们的平台提供了一个利用 MT 信息进行峰注释的平台,以及代谢组学标准倡议推荐的准确前体离子和 MS/MS 谱。应用该方法,我们研究了脂多糖(LPS)诱导的巨噬细胞中的代谢变化,鉴定了 170 种代谢物。此外,我们使用 MS-FINDER 结构解析工具将代谢物信息分配给未注释的峰。结果根据 MS/MS 相似性评分集成到分子光谱网络的节点中。因此,我们确定了 LPS 给药组中发生显著变化的代谢物,其中甘氨酰胺核苷酸是新鉴定的,在任何光谱库中都不存在。此外,我们还检索了在初始光谱注释过程中出现假阴性的代谢物。总的来说,我们的研究强调了 CE-MS/MS 与 DIA 和计算质谱技术在代谢组学中的应用潜力。