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固相萃取-毛细管区带电泳-质谱联用技术可对磷酸化肽的zeptomole浓度进行定量分析。

SPE-CZE-MS quantifies zeptomole concentrations of phosphorylated peptides.

作者信息

Serrano Lia R, Mellors J Scott, Thompson J Will, Lancaster Noah M, Robinson Margaret Lea, Overmyer Katherine A, Quarmby Scott T, Coon Joshua J

出版信息

bioRxiv. 2024 Dec 14:2024.12.07.627347. doi: 10.1101/2024.12.07.627347.

Abstract

Capillary zone electrophoresis (CZE) is gaining attention in the field of single-cell proteomics for its ultra-low-flow and high-resolution separation abilities. Even more sample-limited yet rich in biological information are phosphoproteomics experiments, as the phosphoproteome composes only a fraction of the whole cellular proteome. Rapid analysis, high sensitivity, and maximization of sample utilization are paramount for single-cell analysis. Some challenges of coupling CZE analysis with mass spectrometry analysis (MS) of complex mixtures include 1. sensitivity due to volume loading limitations of CZE and 2. incompatibility of MS duty cycles with electrophoretic timescales. Here, we address these two challenges as applied to single-cell equivalent phosphoproteomics experiments by interfacing a microchip-based CZE device integrated with a solid-phase-extraction (SPE) bed with the Orbitrap Astral mass spectrometer. Using 225 phosphorylated peptide standards and phosphorylated peptide-enriched mouse brain tissue, we investigate microchip-based SPE-CZE functionality, quantitative performance, and complementarity to nano-LC-MS (nLC-MS) analysis. We highlight unique SPE-CZE separation mechanisms that can empower fit-for-purpose applications in single-cell-equivalent phosphoproteomics.

摘要

毛细管区带电泳(CZE)因其超低流速和高分辨率分离能力,在单细胞蛋白质组学领域正受到关注。磷酸化蛋白质组学实验的样本量甚至更少,但生物信息丰富,因为磷酸化蛋白质组仅占整个细胞蛋白质组的一小部分。快速分析、高灵敏度以及样本利用率最大化对于单细胞分析至关重要。将CZE分析与复杂混合物的质谱分析(MS)相结合存在一些挑战,包括:1. 由于CZE的进样量限制导致灵敏度问题;2. MS的工作周期与电泳时间尺度不兼容。在此,我们通过将基于微芯片的CZE装置与固相萃取(SPE)床集成,并与Orbitrap Astral质谱仪连接,来解决应用于单细胞等效磷酸化蛋白质组学实验中的这两个挑战。我们使用225种磷酸化肽标准品和富含磷酸化肽的小鼠脑组织,研究基于微芯片的SPE-CZE功能、定量性能以及与纳升液相色谱-质谱联用(nLC-MS)分析的互补性。我们强调了独特的SPE-CZE分离机制,这些机制能够推动在单细胞等效磷酸化蛋白质组学中实现适用的应用。

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