Department of Chemistry & Biochemistry, University of Maryland, College Park, Maryland 20742, United States.
Anal Chem. 2024 Oct 1;96(39):15581-15587. doi: 10.1021/acs.analchem.4c02330. Epub 2024 Sep 18.
Capillary zone electrophoresis (CE) combines high separation power, scalability, and speed to limited proteome analyses by mass spectrometry (MS). However, compressed separation in CE challenges the duty cycle of tandem MS, even during data-independent acquisition (DIA). To help remedy this limitation, we introduce the concept of lectrophoresis-rrelative (Eco) data acquisition for CE-MS. We recognize CE electrospray ionization (ESI) to sort peptide ions into reproducible mass-to-charge (/) vs migration time (MT) trends in the solution phase, before subsequent ionization and / analysis. We proposed that such a correlation can be leveraged to improve the economy of data acquisition. We test this hypothesis using DIA frames that are tailored to the observed /-MT trends. The resulting Eco-DIA method substantially improves the bandwidth utilization of tandem MS during CE-MS. In proof-of-principle studies, Eco-DIA identified and quantified ∼38% more proteins from 1 ng of the HeLa proteome digest compared to the classical DIA, without the assistance of a project-specific tandem MS spectral library. Eco-DIA was able to quantify ∼51% more proteins with <10% coefficient of variation vs the control DIA approach. Based on label-free quantification, the proteins that were exclusively measured by Eco-MS occupied the lower dynamic range of the detected proteome concentration, revealing sensitivity enhancement. In addition to marking the inception of Eco-MS, this work lays the foundation for the development of next-generation data acquisition strategies that leverage electrophoretic ion sorting for high-sensitivity proteomics.
毛细管区带电泳(CE)将高分离能力、可扩展性和速度与质谱(MS)的有限蛋白质组分析相结合。然而,CE 中的压缩分离对串联 MS 的工作周期提出了挑战,即使在数据独立采集(DIA)期间也是如此。为了帮助弥补这一限制,我们引入了 CE-MS 中电泳相关(Eco)数据采集的概念。我们认识到 CE 电喷雾电离(ESI)可将肽离子按可重复的质荷比(m/z)与迁移时间(MT)趋势在溶液相进行分类,然后进行后续的离子化和 m/z 分析。我们提出,可以利用这种相关性来提高数据采集的经济性。我们使用针对观察到的 m/z-MT 趋势定制的 DIA 框架来测试这一假设。这种 Eco-DIA 方法在 CE-MS 期间大大提高了串联 MS 的带宽利用率。在原理验证研究中,与经典 DIA 相比,Eco-DIA 从 1ng HeLa 蛋白质组消化物中鉴定和定量了约 38%的蛋白质,而无需特定于项目的串联 MS 光谱库的帮助。与对照 DIA 方法相比,Eco-DIA 能够定量约 51%的蛋白质,其变异系数<10%。基于无标记定量,仅由 Eco-MS 测量的蛋白质占据了检测蛋白质组浓度的较低动态范围,表明灵敏度增强。除了标志着 Eco-MS 的开始外,这项工作还为开发下一代数据采集策略奠定了基础,这些策略利用电泳离子分选进行高灵敏度蛋白质组学研究。