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Mapping phosphorylation sites: a new strategy based on the use of isotopically labelled DTT and mass spectrometry

机译:定位磷酸化位点:基于同位素标记的DTT和质谱法的新策略

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Phosphoproteomics, nowadays, represents a front line in functional proteomics as testified by the number of papers recently appearing in the literature. In an attempt to improve and simplify the methods so far suggested we have set up a simple isotope-coded approach to label and quantitate phospho-Ser/-Thr residues in protein mixtures. First of all, after appropriate oxidation of cysteine/cystine residues followed by tryptic hydrolysis, we have optimised and simplified theβ-elimination reaction to get the corresponding alkene moiety from the phosphate esters. This was achieved by (a) separating the elimination reaction from the addition reaction, (b) the use of Ba(OH)_2 as alkali reagent and (c) its further elimination by the simple addition of solid CO_2 to the peptide mixture. The Michael reaction was then performed, after the removal of BaCO_3 by centrifugation, by adding dithiothreitol (DTT) to the peptide mixture. Finally, the direct purification of the modified phosphopeptides was performed on a thiol-sepharose column. The availability of fully deuterated DTT, introducing a 6 Da difference with respect to the non-deuterated species, allows quantitation of the differential extent of signalling modification when analysed by matrix-assisted laser desorption/ionisation mass spectrometry (MALDI-MS) and liquid chromatography/mass spectrometry. The entire procedure has been set up by using bovine α-casein, and resulted in the identification of all the phosphorylated tryptic peptides, including the tetraphosphorylated peptides, which escaped all previously reported procedures.
机译:如今,磷酸化蛋白质组学已成为功能蛋白质组学的前沿领域,最近文献中发表的论文数量证明了这一点。为了改进和简化迄今为止提出的方法,我们建立了一种简单的同位素编码方法来标记和定量蛋白质混合物中的磷酸化Ser / -Thr残基。首先,在对半胱氨酸/胱氨酸残基进行适当的氧化,然后进行胰蛋白酶水解之后,我们优化并简化了β-消除反应,从而从磷酸酯中获得了相应的烯烃部分。这是通过(a)将消除反应与加成反应分开,(b)使用Ba(OH)_2作为碱性试剂,以及(c)通过简单地将固体CO_2加到肽混合物中来进一步消除的。在通过离心除去BaCO 3之后,通过向肽混合物中加入二硫苏糖醇(DTT)进行迈克尔反应。最后,在硫醇-琼脂糖柱上直接进行修饰的磷酸肽的纯化。完全氘化DTT的可用性,相对于非氘化物种而言,相差6 Da,可在通过基质辅助激光解吸/电离质谱(MALDI-MS)和液相色谱分析时量化信号修饰的差异程度/质谱。整个过程已通过使用牛α-酪蛋白建立,并导致鉴定了所有磷酸化的胰蛋白酶肽,包括四磷酸化的肽,而这些肽逃脱了所有先前报道的程序。

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