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Improved sensitivity for phosphopeptide mapping using capillary column HPLC and microionspray mass spectrometry: Comparative phosphorylation site mapping from gel-derived proteins

机译:使用毛细管柱HPLC和微离子质谱仪提高磷酸肽图谱的灵敏度:凝胶衍生蛋白的比较磷酸化位点图谱

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Reversible, protein phosphorylation regulates many cellular processes. Understanding how, phosphorylation controls a given pathway usually involves specific knowledge of-which amino acid residues are phosphorylated on a given protein. This is often a nontrivial task. In addition to the difficulties involved in purifying sufficient amounts of any given protein, most phosphoproteins contain multiple, substoichiometric sites of phosphorylation., In this paper, we describe substantial improvements made to our previously reported multidimensional electrospray MS-based phosphopeptide mapping technique that have resulted in a 20-fold increase in sensitivity for the overall process. Chief among these improvements are the incorporation of capillary chromatography and a microionspray source for the mass spectrometer into the first dimension of the analysis. In the first dimension of the process, phosphopeptides present in the proteolytic digest of a protein are selectively detected and collected into fractions during on-fine LC/ESMS, which monitors for phosphopeptide specific marker ions. The phosphopeptide containing fractions are then analyzed in the second dimension by either MALDI-PSD or nano-ES with precursor ion scanning. The relative merits and limitations of these. two techniques for phosphopeptide detection are demonstrated. The enhancement, in sensitivity of the method under the new experimental conditions makes it suitable for phosphorylation mapping (from selective detection through sequencing) on gel-separated phosphoproteins where the level of phosphorylation at any given site is <200 fmol. Furthermore, this method detects serine, threonine, and tyrosine phosphorylation equally well. We have successfully employed this new configuration to map 11 in vivo sites of phosphorylation on the Saccharomyces cerevisiae protein kinase YAK1. YAK1 peptides containing all five YAK1 PKA consensus sites are phosphorylated, suggesting that YAK1 is an in vivo substrate for PKA. In addition, four peptides containing cdk sites and the autophosphorylation site at Tyr(530) were found to be phosphorylated. Because the first dimension of this method generates a phosphorylation profile that can be used for A semiquantitative evaluation of site specific phosphorylation, we evaluated its ability to detect site-specific changes in the phosphorylation profile of a protein in response to altered cellular conditions. This comparative phosphopeptide mapping strategy allowed us to detect a change in phosphorylation stoichiometry on the motor protein myosin-V in response to treatment with either mitotic or interphase Xenopus egg extracts and to identify the single functionally significant phosphorylation site that regulates myosin-V cargo binding. [References: 29]
机译:可逆的蛋白质磷酸化调节许多细胞过程。了解磷酸化如何控制给定途径的方法通常涉及特定知识,即哪些氨基酸残基在给定蛋白质上被磷酸化。这通常是一项艰巨的任务。除了难以纯化足够量的任何给定蛋白质外,大多数磷蛋白还包含多个亚化学计量的磷酸化位点。在本文中,我们描述了对先前报道的基于多维电喷雾质谱的磷酸肽图技术的实质性改进整个过程的灵敏度提高了20倍。这些改进中最主要的是将毛细管色谱法和用于质谱仪的微离子喷雾源并入了分析的第一维。在该方法的第一个维度中,蛋白质的蛋白水解消化物中存在的磷酸肽被选择性检测,并在精细LC / ESMS过程中被收集到馏分中,该LC / ESMS监测磷酸肽特异性标志物离子。然后,通过MALDI-PSD或nano-ES进行二维扫描,并通过前体离子扫描对含磷酸肽的馏分进行第二维分析。这些的相对优缺点。展示了两种检测磷酸肽的技术。在新的实验条件下,该方法灵敏度的提高使其适用于凝胶分离的磷酸蛋白的磷酸化作图(从选择性检测到测序),其中任何给定位点的磷酸化水平均<200 fmol。此外,该方法同样可以很好地检测丝氨酸,苏氨酸和酪氨酸的磷酸化。我们已经成功地采用了这种新的配置来映射酿酒酵母蛋白激酶YAK1上的11个体内磷酸化位点。包含所有五个YAK1 PKA共有位点的YAK1肽被磷酸化,表明YAK1是PKA的体内底物。另外,发现在Tyr(530)处具有cdk位点和自磷酸化位点的四个肽被磷酸化。因为此方法的第一个维度生成了可用于位点特异性磷酸化的半定量评估的磷酸化谱,所以我们评估了其检测蛋白质磷酸化谱中响应于细胞条件变化的位点特异性变化的能力。这种比较性的磷酸肽图分析策略使我们能够检测到响应有丝分裂或相间爪蟾卵提取物的处理,对运动蛋白肌球蛋白-V的磷酸化化学计量的变化,并鉴定了调节肌球蛋白-V货物结合的功能上重要的单个磷酸化位点。 [参考:29]

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