Proteome-wide quantita'/> Site-Specific Quantification of Protein Ubiquitination on MS2 Fragment Ion Level via Isobaric Peptide Labeling
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Site-Specific Quantification of Protein Ubiquitination on MS2 Fragment Ion Level via Isobaric Peptide Labeling

机译:通过同位肽标记,MS2碎片离子水平对蛋白质泛素的特异性定量

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ancham/2017/ancham.2017.89.issue-21/acs.analchem.7b02654/20171101/images/medium/ac-2017-026544_0008.gif">Proteome-wide quantitative analysis of protein ubiquitination is important to gain insight into its various cellular functions. However, it is still challenging to monitor how ubiquitination at each individual lysine residue is independently regulated, especially the whereabouts of peptides containing more than one ubiquitination site. In recent years, isobaric peptide termini labeling has been considered a promising strategy in quantitative proteomics, benefiting from its high accuracy by quantifying with a series of b, y fragment ion pairs. Herein, we extended the concept of isobaric peptide termini labeling to large-scale quantitative analysis of protein ubiquitination. A novel MS2 fragment ion based quantitative approach was developed, allowing the quantification of ubiquitination at site level via isobaric K-ε-GG peptide labeling, which combined metabolic labeling, K-ε-GG immunoaffinity enrichment, and site-selective N-terminus dimethylation. The feasibility of this proposed strategy was demonstrated through the ubiquitin proteome analysis of differently labeled MCF-7 cell digests. As a result, 2970 unique K-ε-GG peptides of 1383 proteins containing 2874 ubiquitinated sites were confidently quantified with high accuracy and sensitivity. In addition, we demonstrated that quantification on MS2 fragment ion level makes it possible to precisely quantify each individual ubiquitinated lysine residue in 39 K-ε-GG peptides bearing two ubiquitination sites by the use of specific ubiquitinated b, y ion pairs. It is expected that this proposed approach will serve as a powerful tool to quantify ubiquitination at the site level, especially for those multiubiquitinated peptides.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ancham/2017/acham.2017.89.issue-21/acs.analchem.7b02654/20171101/images/medium / C-2017-026544_0008.gif“甲基蛋白质的定量分析蛋白泛素化对于深入了解其各种细胞功能非常重要。然而,监测每个单独的赖氨酸残基的泛素是如何独立调节的,特别是含有多于一个泛素化位点的肽的下落仍然挑战。近年来,同学肽末端标签被认为是在定量蛋白质组学中的有希望的策略,通过用一系列B,Y片段离子对量化来利用其高精度。在此,我们延伸了同学肽末端标记的概念,以大规模定量分析蛋白质泛素化。开发了一种新的MS2片段离子基于离子的定量方法,允许通过等级k-ε-gg肽标记定量现场水平,其组合代谢标记,K-ε-gg免疫亲和富集和位点选择性N-末端二甲基化。通过不同标记的MCF-7细胞消化的泛素蛋白质组分析证明了这种拟议策略的可行性。结果,具有高精度和敏感性的含有2874个普适位点的1383个蛋白质的2970个独特的K-ε-Gg肽。此外,我们证明了MS2片段离子水平的定量使得可以通过使用特异性泛素的B,Y离子对在39k-ε-gg肽中精确地量化每种泛素赖氨酸残基。预计这一提出的方法将作为量化现场水平的强大工具,特别是对于这些多氢化肽。

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  • 来源
    《Analytical chemistry》 |2017年第21期|共8页
  • 作者单位

    Shanghai Cancer Center and Department of Chemistry Fudan University Shanghai 200032 P. R. China;

    Institutes of Biomedical Sciences and Key Laboratory of Glycoconjugates Research Ministry of Public Health Fudan University Shanghai 200032 P. R. China;

    Institutes of Biomedical Sciences and Key Laboratory of Glycoconjugates Research Ministry of Public Health Fudan University Shanghai 200032 P. R. China;

    Shanghai Cancer Center and Department of Chemistry Fudan University Shanghai 200032 P. R. China;

    Shanghai Cancer Center and Department of Chemistry Fudan University Shanghai 200032 P. R. China;

    Shanghai Cancer Center and Department of Chemistry Fudan University Shanghai 200032 P. R. China;

    Shanghai Cancer Center and Department of Chemistry Fudan University Shanghai 200032 P. R. China;

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  • 正文语种 eng
  • 中图分类 分析化学;
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