Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, ON, Canada.
Proteomics. 2013 Apr;13(8):1325-33. doi: 10.1002/pmic.201200369. Epub 2013 Mar 6.
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 as a first dimension separation to separate and simplify protein digest mixtures into discrete fractions. Phosphopeptides were then enriched off-line using TiO2 -coated magnetic beads and subsequently detected online by C18 RP nanoflow HPLC using data-dependent MS/MS high-energy collision-activated dissociation fragmentation on a high-performance Orbitrap hybrid tandem mass spectrometer. We identified 15 533 unique phosphopeptides in 3574 putative phosphoproteins. Systematic computational analysis revealed biological pathways and phosphopeptide 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.
蛋白激酶信号转导调节人类造血干/祖细胞(HSPC)的命运,但对于关键途径底物知之甚少。为了解决这个问题,我们开发并应用了一种大规模的、经验优化的磷酸肽亲和富集策略,结合高通量 2D LC-MS/MS 筛选,以评估分离的人 CD34(+) HSPC 群体的磷酸蛋白质组。我们首先使用亲水相互作用色谱作为第一维分离,将蛋白质消化混合物分离并简化为离散的馏分。然后使用 TiO2 涂覆的磁性珠离线富集磷酸肽,然后通过 C18 RP 纳流 HPLC 在线检测,在高性能轨道阱混合串联质谱仪上使用数据依赖性 MS/MS 高能碰撞激活解离碎裂。我们在 3574 种假定的磷酸蛋白中鉴定了 15533 种独特的磷酸肽。系统的计算分析揭示了在分离的人 T 细胞中类似的平行分析中观察到的明显不同的 CD34(+) HSPC 中的生物学途径和磷酸肽基序,这表明在激活级联中可能涉及特定的激酶-底物关系,从而驱动造血更新、承诺和分化。