首页> 外文期刊>Bulletin of the Korean Chemical Society >Protein Analysis Using a Combination of an Online Monolithic Trypsin Immobilized Enzyme Reactor and Collisionally-Activated Dissociation/Electron Transfer Dissociation Dual Tandem Mass Spectrometry
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Protein Analysis Using a Combination of an Online Monolithic Trypsin Immobilized Enzyme Reactor and Collisionally-Activated Dissociation/Electron Transfer Dissociation Dual Tandem Mass Spectrometry

机译:结合在线整体式胰蛋白酶固定化酶反应器和碰撞活化解离/电子转移解离双串联质谱联用的蛋白质分析

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We demonstrated the combined applications of online protein digestion using trypsin immobilized enzyme reactor (IMER) and dual tandem mass spectrometry with collisionally activated dissociation (CAD) and electron transfer dissociation (ETD) for tryptic peptides eluted through the trypsin-IMER. For the trypsin- IMER, the organic and inorganic hybrid monolithic material was used. By employing the trypsin-IMER, the long digestion time could be saved with little or no sacrifice of the digestion efficiency, which was demonstrated for standard protein samples. For three model proteins (cytochrome c, carbonic anhydrase, and bovine serum albumin), the tryptic peptides digested by the IMER were analyzed using LC-MS/MS with the dual application of CAD and ETD. As previously shown by others, the dual application of CAD and ETD increased the sequence coverage in comparison with CAD application only. In particular, ETD was very useful for the analysis of highly-protontated peptide cations, e.g., ≥ 3+. The combination approach provided the advantages of both trypsin-IMER and CAD/ETD dual tandem mass spectrometry applications, which are rapid digestion (i.e., 10 min), good digestion efficiency, online coupling of trypsin-IMER and liquid chromatography, and high sequence coverage.
机译:我们展示了使用胰蛋白酶固定化酶反应器(IMER)和具有碰撞活化解离(CAD)和电子传递解离(ETD)的双串联质谱技术对通过胰蛋白酶-IMER洗脱的胰蛋白酶肽的在线蛋白质消化的组合应用。对于胰蛋白酶-IMER,使用有机和无机杂化整体材料。通过使用胰蛋白酶-IMER,可以节省很长的消化时间,而几乎没有或根本没有牺牲消化效率,这在标准蛋白质样品中得到了证明。对于三种模型蛋白(细胞色素c,碳酸酐酶和牛血清白蛋白),使用LC-MS / MS和CAD和ETD的双重应用,分析了由IMER消化的胰蛋白酶肽。如其他人先前所显示的,与仅使用CAD应用程序相比,CAD和ETD的双重应用增加了序列覆盖率。特别地,ETD对于分析高度质子化的肽阳离子,例如≥3+非常有用。组合方法提供了胰蛋白酶-IMER和CAD / ETD双串联质谱应用的优点,它们具有快速消化(即10分钟),良好的消化效率,胰蛋白酶-IMER和液相色谱在线偶联以及高序列覆盖率的优点。 。

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