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Integrative Network Analysis of Signaling in Human CD34+ Hematopoietic Progenitor Cells by Global Phosphoproteomic Profiling Using TiO2 Enrichment Combined with 2D LC-MS/MS and Pathway Mapping

机译:通过使用TiO2富集的全局磷蛋白质分析与2D LC-MS / MS和途径测绘的全球磷蛋白质分析

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摘要

Protein kinase signaling regulates human hematopoietic stem/progenitor cell (HSPC) fate, yet little is known about critical pathway substrates. To address this, we have developed and applied a large-scale, empirically-optimized phosphopeptide affinity enrichment strategy with high-throughput 2D LC-MS/MS screening to evaluate the phosphoproteome of an isolated human CD34+ HSPC population. We first used hydrophilic interaction chromatography (HILIC) as a first dimension separation to separate and simplify protein digest mixtures into discrete fractions. Phosphopeptides were then enriched offline using TiO2-coated magnetic beads and subsequently detected online by C18 reverse phase nanoflow HPLC using data-dependent MS/MS High-Energy Collision-activated Dissociation (HCD) fragmentation on a high performance Orbitrap hybrid tandem mass spectrometer. We identified 15533 unique phosphopeptides in 3574 putative phosphoproteins. Systematic computational analysis revealed biological pathways and phosphopeptides motifs enriched in CD34+ HSPC that are markedly different from those observed in an analogous parallel analysis of isolated human T cells, pointing to the possible involvement of specific kinase-substrate relationships within activated cascades driving hematopoietic renewal, commitment and differentiation.
机译:蛋白激酶信号传导调节人类造血干/祖细胞(HSPC)的命运,但对关键途径底物知之甚少。为了解决这个问题,我们开发并应用了大规模,经验优化的磷酸肽亲和力富集策略,并通过高通量二维LC-MS / MS筛选来评估分离的人CD34 + HSPC的磷酸化蛋白质组人口。我们首先使用亲水相互作用色谱(HILIC)作为一维分离,以将蛋白质消化混合物分离并简化为离散部分。然后使用TiO2包被的磁珠离线富集磷酸肽,随后通过C18反相纳米流HPLC在线检测,该数据使用数据依赖的MS / MS高能碰撞激活解离(HCD)片段在高性能Orbitrap混合串联质谱仪上进行。我们在3574个假定的磷蛋白中鉴定了15533个独特的磷肽。系统的计算分析表明,富含CD34 + HSPC的生物途径和磷酸肽基序与分离的人类T细胞类似平行分析中观察到的显着不同,这表明可能涉及特定的激酶-底物关系在激活的级联内驱动造血细胞更新,承诺和分化。

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