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Pressure-Assisted Capillary Electrophoresis Coupling with Matrix-Assisted Laser Desorption/Ionization-Mass Spectrometric Imaging for Quantitative Analysis of Complex Peptide Mixtures

机译:压力辅助毛细管电泳耦合与基质辅助激光解吸/电离质谱光谱成像,用于复杂肽混合物的定量分析

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Herein, we report a pressure-assisted capillary electrophoresis-mass spectrometric imaging (PACE-MSI) platform for peptide analysis. This new platform has addressed the sample diffusion and peak splitting problems that appeared in our previous groove design, and it enables homogeneous deposition of the CE trace for high-throughput MALDI imaging. In the coupling of CE to MSI, individual peaks (m/z) can be visualized as discrete colored image regions and extracted from the MS imaging data, thus eliminating issues with peak overlapping and reducing reliance on an ultrahigh mass resolution mass spectrometer. Through a PACE separation, 46 tryptic peptides from bovine serum albumin and 150 putative neuropeptides from the pericardial organs of a model organism blue crab Callinectes sapidus were detected from the MALDI MS imaging traces, enabling a 4- to 6-fold increase of peptide coverage as compared with direct MALDI MS analysis. For the first time, quantitation with high accuracy was obtained using PACE-MSI for both digested tryptic peptides and endogenous neuropeptides from complex biological samples in combination with isotopic formaldehyde labeling. Although MSI is typically employed in tissue imaging, we show in this report that it offers a unique tool for quantitative analysis of complex trace-level analytes with CE separation. These results demonstrate a great potential of the PACE-MSI platform for enhanced quantitative proteomics and neuropeptidomics.
机译:在此,我们报告了一种用于肽分析的压力辅助毛细管电泳质谱光谱(PACE-MSI)平台。这个新平台已经解决了我们以前的凹槽设计中出现的样品扩散和峰分裂问题,并且它可以均匀沉积CE迹线,以进行高通量MALDI成像。在CE与MSI的耦合中,单个峰(m / z)可以显示为离散的彩色图像区域,并可以从MS成像数据中提取出来,从而消除了峰重叠的问题,并减少了对超高分辨率质谱仪的依赖。通过PACE分离,从MALDI MS成像痕迹中检测到来自牛血清白蛋白的46种胰蛋白酶肽和来自模型生物蓝蟹Call的心包器官的150种假定的神经肽,使肽覆盖率提高了4至6倍。与直接MALDI MS分析相比。首次使用PACE-MSI结合同位素甲醛标记,从复杂的生物样品中对消化的胰蛋白酶肽和内源性神经肽进行了高精度定量。尽管MSI通常用于组织成像,但我们在本报告中表明,它提供了一种独特的工具,可通过CE分离对复杂的痕量分析物进行定量分析。这些结果证明了PACE-MSI平台在增强定量蛋白质组学和神经肽组学方面的巨大潜力。

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