Purdue University, Department of Chemistry, West Lafayette, IN 47907, USA.
Merck & Co., Inc., Analytical Research and Development, Rahway, NJ 07065, USA.
Angew Chem Int Ed Engl. 2024 Feb 26;63(9):e202315904. doi: 10.1002/anie.202315904. Epub 2024 Jan 24.
Biopolymer analysis, including proteomics and glycomics, relies heavily on the use of mass spectrometry for structural elucidation, including sequence determination. Novel methods to improve sample workup, instrument performance, and data analysis continue to be developed to address shortcomings associated with sample preparation, analysis time, data quality, and data interpretation. Here, we present a new method that couples in-source collision-induced dissociation (IS-CID) with two-dimensional tandem mass spectrometry (2D MS/MS) as a way to simplify proteomics and glycomics workflows while also providing additional insight into analyte structures over traditional MS/MS experiments. Specifically, IS-CID is employed as a gas-phase digestion method, i.e., to break down intact full-length polysaccharide or peptide ions prior to mass analysis. The resulting mixtures of oligomeric ions are analyzed by 2D-MS/MS, a technique that allows association of product ions with their precursor ions without isolation of the latter. A novel data analysis strategy is introduced to leverage the second dimension of 2D MS/MS spectra, in which stairstep patterns, representing outputs of a molecule's MS scans, are extracted for structural interconnectivity information on the oligomer. The results demonstrate the potential applicability of 2D MS/MS strategies to the modern omics workflow and structural analysis of various classes of biopolymers.
生物聚合物分析,包括蛋白质组学和糖组学,严重依赖于使用质谱法进行结构阐明,包括序列测定。为了解决与样品制备、分析时间、数据质量和数据解释相关的缺点,继续开发新的方法来改进样品处理、仪器性能和数据分析。在这里,我们提出了一种新的方法,即将源内碰撞诱导解离(IS-CID)与二维串联质谱(2D MS/MS)相结合,作为一种简化蛋白质组学和糖组学工作流程的方法,同时还提供了比传统 MS/MS 实验更深入的分析物结构见解。具体而言,IS-CID 被用作气相消化方法,即在质量分析之前分解完整的全长多糖或肽离子。所得的低聚物离子混合物通过二维 MS/MS 进行分析,该技术允许在不分离后者的情况下将产物离子与它们的前体离子关联。引入了一种新的数据分析策略来利用 2D MS/MS 谱的第二维,其中阶梯式图案表示分子 MS 扫描的输出,用于提取低聚物的结构连接信息。结果表明,2D MS/MS 策略在各种生物聚合物的现代组学工作流程和结构分析中具有潜在的适用性。