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首页> 外文期刊>Analytica chimica acta >Automation of dimethylation after guanidination labeling chemistry and its compatibility with common buffers and surfactants for mass spectrometry-based shotgun quantitative proteome analysis
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Automation of dimethylation after guanidination labeling chemistry and its compatibility with common buffers and surfactants for mass spectrometry-based shotgun quantitative proteome analysis

机译:胍基标记化学后的二甲基化自动化及其与常用缓冲液和表面活性剂的兼容性,可用于基于质谱的shot弹枪定量蛋白质组分析

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摘要

Isotope labeling liquid chromatography-mass spectrometry (LC-MS) is a major analytical platform for quantitative proteome analysis. Incorporation of isotopes used to distinguish samples plays a critical role in the success of this strategy. In this work, we optimized and automated a chemical derivatization protocol (dimethylation after guanidination, 2MEGA) to increase the labeling reproducibility and reduce human intervention. We also evaluated the reagent compatibility of this protocol to handle biological samples in different types of buffers and surfactants. A commercially available liquid handler was used for reagent dispensation to minimize analyst intervention and at least twenty protein digest samples could be prepared in a single run. Different front-end sample preparation methods for protein solubilization (SDS, urea, Rapigest~(TM), and ProteaseMAX~(TM)) and two commercially available cell lysis buffers were evaluated for compatibility with the automated protocol. It was found that better than 94% desired labeling could be obtained in all conditions studied except urea, where the rate was reduced to about 92% due to carbamylation on the peptide amines. This work illustrates the automated 2MEGA labeling process can be used to handle a wide range of protein samples containing various reagents that are often encountered in protein sample preparation for quantitative proteome analysis.
机译:同位素标记液相色谱-质谱法(LC-MS)是定量蛋白质组分析的主要分析平台。用于区分样品的同位素的结合在该策略的成功中起着至关重要的作用。在这项工作中,我们优化并自动化了化学衍生化方案(胍基化后进行二甲基化,2MEGA),以提高标记的可重复性并减少人工干预。我们还评估了该协议在不同类型的缓冲液和表面活性剂中处理生物样品的试剂兼容性。使用可商购的液体处理器进行试剂分配,以最大程度减少分析人员的干预,并且一次即可制备至少20个蛋白质消化样品。评价了用于蛋白质溶解的不同前端样品制备方法(SDS,尿素,RapigestTM和ProteaseMAXTM)和两种市售细胞裂解缓冲液与自动化方案的兼容性。已经发现,在所有研究的条件下,除尿素外,在所有条件下均可获得优于94%的所需标记,尿素的比例由于肽胺上的氨基甲酰化而降低至约92%。这项工作说明了自动2MEGA标记过程可用于处理各种蛋白质样品,其中包含在定量蛋白质组分析的蛋白质样品制备中经常遇到的各种试剂。

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