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Characterization of protein phosphorylation by mass spectrometry using immobilized metal ion affinity chromatography with on-resin beta-elimination and Michael addition

机译:使用固定化的金属离子亲和色谱,通过树脂上的β消除和Michael加成,通过质谱表征蛋白质的磷酸化

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A protocol combining immobilized metal ion affinity chromatography and beta-elimination with concurrent Michael addition has been developed for enhanced analysis of protein phosphorylation. Immobilized metal ion affinity chromatography was initially used to enrich for phosphorylated peptides. beta-Elimination,with or without concurrent Michael addition, was then subsequently used to simultaneously elute and derivatize phosphopeptides bound to the chromatography resin. Derivatization of the phosphate facilitated the precise determination of phosphorylation sites by MALDI-PSD/LIFT tandem mass spectrometry, avoiding complications due to ion suppression and phosphate lability in mass spectrometric analysis of phosphopeptides. Complementary use of immobilized metal ion affinity chromatography and beta-elimination with concurrent Michael addition in this manner circumvented several inherent disadvantages of the individual methods. In particular, (i) the protocol discriminated O-linked glycosylated peptides from phosphopeptides prior to beta-elimination/Michael addition and(ii) the elution of peptides from the chromatography resin as derivatized phosphopeptides distinguished them from unphosphorylated species that were also retained. The chemical derivatization of phosphopeptides greatly increased the information obtained during peptide sequencing by mass spectrometry. The combined protocol enabled the detection and sequencing of phosphopeptides from protein digests at low femtomole concentrations of initial sample and was employed to identify novel phosphorylation sites on the cell adhesion protein p120 catenin and the glycoprotein fetuin. [References: 51]
机译:已经开发了一种结合固定化金属离子亲和色谱和β-消除与同时迈克尔加成的方案,用于增强蛋白质磷酸化的分析。固定化金属离子亲和层析最初用于富集磷酸化的肽。然后,在同时进行或不进行迈克尔加成的情况下,使用β-消除技术同时洗脱和衍生化与色谱树脂结合的磷酸肽。磷酸酯的衍生化有助于通过MALDI-PSD / LIFT串联质谱法精确测定磷酸化位点,避免了在磷酸肽质谱分析中由于离子抑制和磷酸盐不稳定性而导致的复杂情况。固定化金属离子亲和色谱法的同时使用和同时进行迈克尔加成的β-消除可避免单个方法的一些固有缺点。特别是,(i)方案在β-消除/迈克尔加成之前从磷酸肽中区分了O-连接的糖基化肽,和(ii)从色谱树脂中洗脱肽,因为衍生化的磷酸肽将它们与未保留的未磷酸化物质区分开。磷酸肽的化学衍生极大地增加了通过质谱法进行肽测序过程中获得的信息。结合的协议能够在低样品浓度的初始样品中从蛋白消化物中检测磷酸肽并对其进行测序,并用于鉴定细胞粘附蛋白p120 catenin和糖蛋白胎球蛋白上的新磷酸化位点。 [参考:51]

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