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Integrated Microscale Analysis System for Targeted Liquid Chromatography Mass Spectrometry Proteomics on Limited Amounts of Enriched Cell Populations

机译:有限量富集细胞群体的靶向液相色谱质谱蛋白质组学的集成微型分析系统

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摘要

Limited samples, such as those that are in vivo sourced via biopsy, are closely representative of biological systems and contain valuable information for drug discovery. However, these precious samples are often heterogeneous and require cellular prefractionation prior to proteomic analysis to isolate specific subpopulations of interest. Enriched cells from in vivo samples are often very limited (<10~4 cells) and pose a significant challenge to proteomic nanoliquid chromatography mass spectrometry (nanoLCMS) sample preparation. To enable the streamlined analysis of these limited samples, we have developed an online cell enrichment, microscale sample preparation, nanoLCMS proteomics workflow by integrating fluorescence activated cell sorting (FACS), focused ultrasonication, microfluidics, immobilized trypsin digestion, and nanoLCMS. To assess the performance of the online FACS-Chip-LCMS workflow, 5000 fluorescent labeled cells were enriched from a 5% heterogeneous cell population and processed for LCMS proteomics in less than 2 h. Within these 5000 enriched cells, 30 peptides corresponding to 17 proteins spanning more than 4 orders of magnitude of cellular abundance were quantified using a QExactive MS. The results from the online FACS-Chip-LCMS workflow starting from 5000 enriched cells were directly compared to results from a traditional macroscale sample preparation workflow starting from 2.0 × 10~6 cells. The microscale FACS-Chip-LCMS workflow demonstrated high cellular enrichment efficiency and high peptide recovery across the wide dynamic range of targeted peptides. Overall the microscale FACS-Chip-LCMS workflow has shown effectiveness in efficiently preparing limited amounts of FACS enriched cells in an online manner for proteomic LCMS.
机译:有限的样本(例如,通过活检从体内获取的样本)可以很好地代表生物系统,并包含用于药物发现的有价值的信息。但是,这些珍贵的样品通常是异质的,需要在进行蛋白质组学分析之前进行细胞预分离,以分离出特定的目标亚群。来自体内样品的富集细胞通常非常有限(<10〜4个细胞),这对蛋白质组学纳米液相色谱质谱法(nanoLCMS)样品制备提出了重大挑战。为了简化对这些有限样品的分析,我们开发了在线细胞富集,微型样品制备,nanoLCMS蛋白质组学工作流程,它集成了荧光激活细胞分选(FACS),聚焦超声,微流控,固定化胰蛋白酶消化和nanoLCMS。为了评估在线FACS-Chip-LCMS工作流程的性能,从5%异种细胞群体中富集了5000个荧光标记细胞,并在不到2小时的时间内对其进行了LCMS蛋白质组学处理。在这5000个富集的细胞中,使用QExactive MS对对应于17种蛋白的30种肽进行了定量,这些蛋白跨越了4个数量级以上的细胞丰度。将在线FACS-Chip-LCMS工作流程从5000个富集细胞开始的结果与传统的大规模样品制备工作流程从2.0×10〜6个细胞开始的结果直接进行比较。微型FACS-Chip-LCMS工作流程在广泛的靶向肽动态范围内显示出高细胞富集效率和高肽回收率。总体而言,微型FACS-Chip-LCMS工作流程已显示出在线有效地制备蛋白质组LCMS有限数量的FACS富集细胞的有效性。

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