首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Reproducible microwave-assisted acid hydrolysis of proteins using a household microwave oven and its combination with LC-ESI MS/MS for mapping protein sequences and modifications
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Reproducible microwave-assisted acid hydrolysis of proteins using a household microwave oven and its combination with LC-ESI MS/MS for mapping protein sequences and modifications

机译:使用家用微波炉可再生的微波辅助酸水解蛋白质,并将其与LC-ESI MS / MS结合使用以绘制蛋白质序列和修饰图

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A new set-up for microwave-assisted acid hydrolysis (MAAH) with high efficiency and reproducibility to degrade proteins into peptides for mass spectrometry analysis is described. It is based on the use of an inexpensive domestic microwave oven and can be used for low volume protein solution digestion. This set-up has been combined with liquid chromatography electrospray ionization quadrupole time-of-flight mass spectrometry (LC-ESI QTOF MS) for mapping protein sequences and characterizing phosphoproteins. It is demonstrated that for bovine serum albumin (BSA), with a molecular mass of about 67,000 Da, 1292 peptides (669 unique sequences) can be detected from a 2 μg hydrolysate generated by trifluoroacetic acid (TFA) MAAH. These peptides cover the entire protein sequence, allowing the identification of an amino acid substitution in a natural variant of BSA. It is shown that for a simple phosphoprotein containing one phosphoform, β-casein, direct analysis of the hydrolysate generates a comprehensive peptide map that can be used to identify all five known phosphorylation sites. For characterizing a complex phosphoprotein consisting of different phosphoforms with varying numbers of phosphate groups and/or phosphorylation sites, such as bovine α_(S1)-casein, immobilized metal-ion affinity chromatography (IMAC) is used to enrich the phosphopeptides from the hydrolysate, followed by LC-ESI MS analysis. The MS/MS data generated from the initial hydrolysate and the phosphopeptide-enriched fraction, in combination with MS analysis of the intact protein sample, allow us to reveal the presence of three different phosphoforms of bovine α_(S1)-casein and assign the phosphorylation sites to each phosphoform with high confidence.
机译:描述了一种新型的微波辅助酸水解(MAAH)装置,该装置具有高效率和可重现性,可将蛋白质降解为肽进行质谱分析。它基于便宜的家用微波炉的使用,可用于小体积蛋白质溶液的消化。该设置已与液相色谱电喷雾电离四极杆飞行时间质谱(LC-ESI QTOF MS)结合使用,可绘制蛋白质序列并鉴定磷蛋白。已证明,对于分子量约为67,000 Da的牛血清白蛋白(BSA),可以从由三氟乙酸(TFA)MAAH产生的2μg水解物中检测到1292个肽(669个独特序列)。这些肽覆盖了整个蛋白质序列,从而可以鉴定BSA天然变体中的氨基酸取代。结果表明,对于一种简单的含有一种磷酸化形式的β-酪蛋白的磷蛋白,水解产物的直接分析可产生全面的肽图,可用于鉴定所有五个已知的磷酸化位点。为了表征由具有不同数量磷酸基团和/或磷酸化位点的不同磷酸酯组成的复杂磷蛋白(例如牛α_(S1)-酪蛋白),使用固定化的金属离子亲和色谱(IMAC)从水解产物中富集磷酸肽,然后进行LC-ESI MS分析。由初始水解产物和富含磷酸肽的馏分产生的MS / MS数据,结合完整蛋白质样品的MS分析,使我们能够揭示牛α_(S1)-酪蛋白的三种不同磷酸化形式的存在并指定磷酸化位点具有较高的可信度。

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