首页> 美国卫生研究院文献>Molecular Cellular Proteomics : MCP >Label-free Quantification of Proteins in Single Embryonic Cells with Neural Fate in the Cleavage-Stage Frog (Xenopus laevis) Embryo using Capillary Electrophoresis Electrospray Ionization High-Resolution Mass Spectrometry (CE-ESI-HRMS)
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Label-free Quantification of Proteins in Single Embryonic Cells with Neural Fate in the Cleavage-Stage Frog (Xenopus laevis) Embryo using Capillary Electrophoresis Electrospray Ionization High-Resolution Mass Spectrometry (CE-ESI-HRMS)

机译:使用毛细管电泳电喷雾电离高分辨率质谱(CE-ESI-HRMS)对具有分裂期蛙(Xenopus laevis)胚胎的神经命运的单个胚胎细胞中的蛋白质进行无标签定量

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摘要

Quantification of protein expression in single cells promises to advance a systems-level understanding of normal development. Using a bottom-up proteomic workflow and multiplexing quantification by tandem mass tags, we recently demonstrated relative quantification between single embryonic cells (blastomeres) in the frog (Xenopus laevis) embryo. In this study, we minimize derivatization steps to enhance analytical sensitivity and use label-free quantification (LFQ) for single Xenopus cells. The technology builds on a custom-designed capillary electrophoresis microflow-electrospray ionization high-resolution mass spectrometry platform and LFQ by MaxLFQ (MaxQuant). By judiciously tailoring performance to peptide separation, ionization, and data-dependent acquisition, we demonstrate an ∼75-amol (∼11 nm) lower limit of detection and quantification for proteins in complex cell digests. The platform enabled the identification of 438 nonredundant protein groups by measuring 16 ng of protein digest, or <0.2% of the total protein contained in a blastomere in the 16-cell embryo. LFQ intensity was validated as a quantitative proxy for protein abundance. Correlation analysis was performed to compare protein quantities between the embryo and n = 3 different single D11 blastomeres, which are fated to develop into the nervous system. A total of 335 nonredundant protein groups were quantified in union between the single D11 cells spanning a 4 log-order concentration range. LFQ and correlation analysis detected expected proteomic differences between the whole embryo and blastomeres, and also found translational differences between individual D11 cells. LFQ on single cells raises exciting possibilities to study gene expression in other cells and models to help better understand cell processes on a systems biology level.
机译:定量分析单细胞中的蛋白质表达有望促进系统水平的正常发育理解。使用自下而上的蛋白质组学工作流程并通过串联质量标签进行多重量化,我们最近证明了青蛙(Xenopus laevis)胚胎中单个胚胎细胞(卵裂球)之间的相对定量。在这项研究中,我们最小化衍生步骤以增强分析灵敏度,并对单个爪蟾细胞使用无标记定量(LFQ)。该技术基于定制设计的毛细管电泳微流-电喷雾电离高分辨率质谱平台和MaxLFQ(MaxQuant)的LFQ。通过明智地调整肽分离,电离和数据依赖性采集的性能,我们证明了复杂细胞消化液中蛋白质检测和定量的下限约为75 amol(约11 nm)。该平台可通过测量16 ng蛋白质消化液(或16细胞胚胎中卵裂球中总蛋白质的<0.2%)来鉴定438个非冗余蛋白质组。 LFQ强度被验证为蛋白质丰度的定量替代指标。进行了相关分析,以比较胚胎与n = 3个不同的单个D11卵裂球之间的蛋白质数量,这些卵子注定会发展为神经系统。在单个D11细胞之间的结合中,共有335个非冗余蛋白组被定量,其跨度为4个对数浓度范围。 LFQ和相关分析检测了整个胚胎和卵裂球之间的预期蛋白质组差异,还发现了单个D11细胞之间的翻译差异。单细胞上的LFQ为研究其他细胞和模型中的基因表达提供了令人兴奋的可能性,以帮助更好地了解系统生物学水平的细胞过程。

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