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Tandem Mass Tag Labeling Facilitates Reversed-Phase Liquid Chromatography-Mass Spectrometry Analysis of Hydrophilic Phosphopeptides

机译:串联质量标记标记有助于亲水性磷酸肽的反相液相色谱 - 质谱分析

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摘要

Protein phosphorylation is a critical post-translational modification (PTM). Despite recent technological advances in reversed-phase liquid chromatography (RPLC)-mass spectrometry (MS)-based proteomics, comprehensive phosphoproteomic coverage in complex biological systems remains challenging, especially for hydrophilic phosphopeptides with enriched regions of serines, threonines, and tyrosines that often orchestrate critical biological functions. To address this issue, we developed a simple, easily implemented method to introduce a commonly used tandem mass tag (TMT) to increase peptide hydrophobicity, effectively enhancing RPLC-MS analysis of hydrophilic peptides. Different from conventional TMT labeling, this method capitalizes on using a nonprimary amine buffer and TMT labeling occurring before C18-based solid phase extraction. Through phosphoproteomic analyses of MCF7 cells, we have demonstrated that this method can greatly increase the number of identified hydrophilic phosphopeptides and improve MS detection signals. We applied this method to study the peptide QPSSSR, a very hydrophilic tryptic peptide located on the C-terminus of the G protein-coupled receptor (GPCR) CXCR3. Identification of QPSSSR has never been reported, and we were unable to detect it by traditional methods. We validated our TMT labeling strategy by comparative RPLC-MS analyses of both a hydrophilic QPSSSR peptide library as well as common phosphopeptides. We further confirmed the utility of this method by quantifying QPSSSR phosphorylation abundances in HEK 293 cells under different treatment conditions predicted to alter QPSSSR phosphorylation. We anticipate that this simple TMT labeling method can be broadly used not only for decoding GPCR phosphoproteome but also for effective RPLC-MS analysis of other highly hydrophilic analytes.
机译:蛋白质磷酸化是关键的翻译后修饰(PTM)。尽管最近在反相液相色谱(RPLC) - 基质光谱(MS)的蛋白质组学中进行了最近的技术进步,但复杂生物系统中的综合磷蛋白质覆盖物仍然挑战,特别是对于经常协调的富含丝氨酸,苏氨酸和酪氨酸的亲水性磷肽,特别是富集的亲水性磷肽关键的生物学功能。为了解决这个问题,我们开发了一种简单,易于实现的方法来引入常用的串联质量标签(TMT)以增加肽疏水性,有效增强亲水性肽的RPLC-MS分析。与常规TMT标记不同,该方法利用在基于C18的固相提取之前发生的非胺胺缓冲液和TMT标记。通过MCF7细胞的磷蛋白酶分析,我们已经证明了该方法可以大大增加所鉴定的亲水性磷酸肽的数量并改善MS检测信号。我们应用该方法来研究肽QPSSSR,位于G蛋白偶联受体(GPCR)CXCR3的C-末端上的非常亲水的胰蛋白酶。从未报告过QPSSSR的识别,我们无法通过传统方法检测到它。我们通过对亲水性QPSSSR肽库以及常见的磷酸肽的比较RPLC-MS分析来验证了我们的TMT标记策略。我们进一步通过在预测的不同处理条件下量化了HEK 293细胞中的QPSSSR磷酸化丰度来进一步证实了该方法的实用性。我们预期这种简单的TMT标记方法不仅可以用于解码GPCR磷酸酯组,而且可以广泛地用于对其他高亲水分析物的有效RPLC-MS分析。

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  • 来源
    《Analytical chemistry》 |2019年第18期|共8页
  • 作者单位

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Duke Univ Dept Biochem Durham NC 27710 USA;

    Univ North Carolina Chapel Hill Dept Biochem &

    Biophys Chapel Hill NC 27599 USA;

    Pacific Northwest Natl Lab Environm Mol Sci Lab Richland WA 99354 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Duke Univ Dept Biochem Durham NC 27710 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

    Duke Univ Dept Biochem Durham NC 27710 USA;

    Pacific Northwest Natl Lab Biol Sci Div Richland WA 99354 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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