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首页> 外文期刊>Proteomics >Increased quantitative proteome coverage with (13)C/(12)C-based, acid-cleavable isotope-coded affinity tag reagent and modified data acquisition scheme
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Increased quantitative proteome coverage with (13)C/(12)C-based, acid-cleavable isotope-coded affinity tag reagent and modified data acquisition scheme

机译:使用基于(13)C /(12)C的酸可裂解同位素编码的亲和标签试剂和改良的数据采集方案来提高定量蛋白质组学覆盖率

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Quantitative protein profiling using the isotope-coded affinity tag (ICAT) method and tandem mass spectrometry (MS) enables the pair-wise comparison of protein expression levels in biological samples. A new version of the ICAT reagent with an acid-cleavable bond, which allows removal of the biotin moiety prior to MS and which utilizes (13)C substitution for (12)C in the heavy-ICAT reagent rather than (2)H (for (1)H) as in the original reagent, was investigated. We developed and validated an MS data acquisition strategy using this new reagent that results in an increased number of protein identifications per experiment, without losing the accuracy of protein quantification. This was achieved by following a single survey (precursor) ion scan and serial collision induced dissociations (CIDs) of four different precursor ions observed in the prior survey scan. This strategy is common to many high-performance liquid chromatography-electrospray ionization (HPLC-ESI)-MS shotgun proteomic strategies, but heretofore not to ICAT experiments. This advance is possible because the new ICAT reagent uses (13)C as the "heavy" element rather than (2)H, thus, eliminating the slight delay in retention time of ICAT-labeled "light" peptides on a C18-based HPLC separation that occurs with (2)H and (1)H. Analyses using this new scheme of an ICAT-labeled trypsin-digested six protein mixture as well as a tryptic digest of a total yeast lysate, indicated that about two times more proteins were identified in a single analysis, and that there was no loss in accuracy of quantification.
机译:使用同位素编码亲和标记(ICAT)方法和串联质谱(MS)进行定量蛋白质谱分析,可以成对比较生物样品中蛋白质的表达水平。具有酸可裂解键的ICAT试剂的新版本,它允许在MS之前去除生物素部分,并利用(13)C取代重ICAT试剂中的(12)C而不是(2)H(研究了与(1)H)相同的原始试剂。我们使用这种新试剂开发并验证了MS数据采集策略,该策略可增加每个实验中蛋白质鉴定的数量,而又不会损失蛋白质定量的准确性。这是通过对单次调查(前体)离子扫描和在先前的调查扫描中观察到的四个不同前体离子进行系列碰撞诱导解离(CID)来实现的。该策略是许多高性能液相色谱-电喷雾电离(HPLC-ESI)-MS gun弹枪蛋白质组学策略所共有的,但迄今为止,这对ICAT实验还没有。这种进步是可能的,因为新的ICAT试剂使用(13)C作为“重”元素,而不是(2)H,从而消除了ICAT标记的“轻”肽在基于C18的HPLC上保留时间的轻微延迟(2)H和(1)H发生分离。使用这种新方案对ICAT标记的胰蛋白酶消化的六种蛋白质混合物以及整个酵母裂解液的胰蛋白酶消化液进行分析,结果表明,在一次分析中鉴定出的蛋白质大约多了两倍,并且准确性没有损失量化。

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