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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Trypsin catalyzed O-16-to-O-18 exchange for comparative proteomics: Tandem mass spectrometry comparison using MALDI-TOF, ESI-QTOF, and ESI-Ion trap mass spectrometers
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Trypsin catalyzed O-16-to-O-18 exchange for comparative proteomics: Tandem mass spectrometry comparison using MALDI-TOF, ESI-QTOF, and ESI-Ion trap mass spectrometers

机译:胰蛋白酶催化O-16到O-18交换,用于比较蛋白质组学:使用MALDI-TOF,ESI-QTOF和ESI-离子阱质谱仪进行串联质谱比较

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Quantitative or comparative proteome analysis was initially performed with 2-dimensional gel electrophoresis with the inherent disadvantages of being biased towards certain proteins and being labor intensive. Alternative mass spectrometry-based approaches in conjunction with gel-free protein/peptide separation have been developed in recent years using various stable isotope labeling techniques. Common to all these techniques is the incorporation, biosynthetically or chemically, of a labeling moiety having either a natural isotope distribution of hydrogen, carbon, oxygen, or nitrogen (light form) or being enriched with heavy isotopes like deuterium, C-13, O-18, or N-15, respectively. By mixing equal amounts of a control sample possessing for instance the light form of the label with a heavy-labeled case sample, differentially labeled peptides are detected by mass spectrometric methods and their intensities serve as a means for direct relative protein quantification. While each of the different labeling methods has its advantages and disadvantages, the endoprotease O-16-to-O-18 catalyzed oxygen exchange at the C-terminal carboxylic acid is extremely promising because of the specificity assured by the enzymatic reaction and the labeling of essentially every protease-derived peptide. We show here that this methodology is applicable to complex biological samples such as a subfraction of human plasma. Furthermore, despite the relatively small mass difference of 4 Da between the two labeled forms, corresponding to the exchange of two oxygen atoms by two 180 isotopes, it is possible to quantify differentially labeled proteins on an ion trap mass spectrometer with a mass resolution of about 2000 in automated data dependent LC-MS/MS acquisition mode. Post column sample deposition on a MALDI target parallel to on-line ESI-MS/MS enables the analysis of the same compounds by means of ESI-and MALDI-MS/MS. This has the potential to increase the confidence in the quantification results as well as to increase the sequence coverage of potentially interesting proteins by complementary peptide ionization techniques. Additionally the paired y-ion signals in tandem mass spectra of O-16/O-18-labeled peptide pairs provide a means to confirm automatic protein identification results or even to assist de novo sequencing of yet unknown proteins. (C) 2003 American Society for Mass Spectrometry. [References: 30]
机译:最初使用二维凝胶电泳进行定量或比较蛋白质组分析,其固有的缺点是偏向某些蛋白质且劳动强度大。近年来,已使用各种稳定的同位素标记技术开发了基于质谱的替代方法,结合无凝胶的蛋白质/肽分离技术。所有这些技术的共同点是,通过生物合成或化学方法结合具有氢,碳,氧或氮的天然同位素分布(轻型)或富含重同位素(如氘,C-13,O)的标记部分-18或N-15。通过将等量的具有轻标签形式的对照样品与重标记的病例样品混合,可以通过质谱法检测差异标记的肽,其强度可作为直接相对蛋白质定量的手段。尽管每种不同的标记方法都有其优点和缺点,但是由于酶促反应和标记的可确保的特异性,内蛋白酶在C末端羧酸上的O-16-O-18催化的氧交换非常有希望。基本上每个蛋白酶衍生的肽。我们在这里表明,该方法学适用于复杂的生物样品,例如人血浆的亚组分。此外,尽管两种标记形式之间的4 Da相对质量差异较小,对应于两个180个同位素交换两个氧原子,但仍可以在离子阱质谱仪上以质量分辨率约为2量化差异标记的蛋白质。 2000自动数据相关的LC-MS / MS采集模式。在平行于在线ESI-MS / MS的MALDI目标物上进行柱后样品沉积,可以通过ESI-和MALDI-MS / MS分析相同的化合物。这可能会增加对定量结果的信心,并可能通过互补肽电离技术增加潜在感兴趣的蛋白质的序列覆盖率。另外,在O-16 / O-18标记的肽对的串联质谱中,成对的y离子信号提供了一种手段,可以确认自动蛋白质鉴定结果,甚至有助于从头对未知蛋白质进行测序。 (C)2003年美国质谱学会。 [参考:30]

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