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Chemical labeling strategies for mass spectrometry-based biomolecular identification, characterization and quantification.

机译:基于质谱的生物分子识别,表征和定量的化学标记策略。

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摘要

Advances in the development of mass spectrometry (MS) and tandem mass spectrometry (MS/MS) instrumentation have made this technique a versatile analytical tool to identify, characterize and quantify biomolecules including peptides, proteins, lipids, nucleic acids, oligosaccharides and other metabolites. However, based on the individual physicochemical properties of various biomolecules, biomolecular MS or MS/MS on its own may not necessarily give the desired analytical information. Therefore, chemical labeling strategies which alter the behavior of analytes with respect to their ionization, fragmentation and mass analysis are commonly used to facilitate MS-based analysis of biomolecules. This dissertation focuses on the development of biomolecular chemical labeling strategies for lipids, peptides and proteins, to provide improved capabilities for MS-based qualitative and quantitative analysis.;Structural labeling via gas phase ion chemistry provides a convenient and rapid modification method for structural and reactivity characterization of modified biomolecular ions. Here, a novel photo-induced inter-molecular gas-phase cross-linking reaction has been developed to investigate the cross-linking reactivity of individual triacylglyceride (TG) molecules as a function of their structures. Ultraviolet photodissociation tandem mass spectrometry (UVPD-MS/MS) of non-covalent complex ions consisting of TG dimers and protonated diiodoaniline resulted in the formation of multiple cross-linked TG products via homolysis of carbon-iodine bonds, hydrogen abstraction and radical recombination. The efficiency of the UVPD reaction depended on the number of unsaturation sites present within the TG lipids.;For MS-based quantification, an approach for the multiplexed relative quantification of aminophospholipids from within two different crude lipid extracts was developed. Relative quantification at the 'sum composition' and/or 'molecular lipid' levels was achieved using high resolution/accurate mass MS/MS by ratiometric measurement of pairs of 'reporter' ions formed via the neutral loss from isobaric stable isotope-labeled d6-'heavy' and d6-'light' S,S?-dimethylthiobutanoylhydroxysuccinimide and iodine/methanol derivatized aminophospholipid ions.;In addition, absolute quantification of full length parathyroid hormone (PTH 1-84), a clinical protein biomarker of secondary hyperparathyroidism, and its in vivo oxidized and truncated variants was achieved using a dual stable isotope-labeled internal standard approach coupled with immunocapture and high resolution LC-MS and MS/MS. Analysis of clinical PTH samples using this strategy revealed that no oxidation or PTH 7-84 occurred in vivo. However, several novel sites of in vivo PTH truncation were discovered. At last, stable isotope-containing dimethyl labeling and multi-dimensional LC-MS/MS were applied for proteomic profiling of human RPMI-8226 cells treated with competitive (i.e., Bortezomib) and non-competitive (i.e., TCH-013) proteasome inhibitors to evaluate their distinct mechanisms of action. Four proteins closely related to the regulation of mitochondrial functions and growth and division of cancer cells were observed to be selectively down-regulated after TCH-013 treatment compared to Bortezomib or vehicle control treatment.
机译:质谱仪(MS)和串联质谱仪(MS / MS)的开发进展使该技术成为一种通用的分析工具,可以鉴定,表征和定量生物分子,包括肽,蛋白质,脂质,核酸,寡糖和其他代谢产物。但是,基于各种生物分子的各自理化性质,生物分子MS或MS / MS本身不一定可以提供所需的分析信息。因此,通常使用改变化学分析物的电离,裂解和质量分析行为的化学标记策略来促进基于MS的生物分子分析。本文主要研究脂类,肽类和蛋白质的生物分子化学标记策略的发展,为基于质谱的定性和定量分析提供了改进的能力。气相离子化学结构标记为结构和反应性提供了一种方便快捷的修饰方法改性生物分子离子的表征。在这里,已经开发了一种新型的光诱导分子间气相交联反应,以研究各个甘油三酸酯(TG)分子作为其结构的功能的交联反应性。由TG二聚体和质子化二碘苯胺组成的非共价络合物离子的紫外光解离串联质谱(UVPD-MS / MS)通过碳-碘键的均化,氢的提取和自由基的重组形成了多个交联的TG产物。 UVPD反应的效率取决于TG脂质中存在的不饱和位点的数量。对于基于MS的定量,开发了一种对来自两种不同粗脂质提取物中的氨基磷脂进行多重相对定量的方法。使用高分辨率/精确质量数的MS / MS,通过对通过等压稳定同位素标记的d6-同位素的中性损失形成的``报告''离子对进行比例测量,可以实现``总组成''和/或``分子脂质''水平的相对定量'重'和d6-'轻'的S,S'-二甲基硫代丁酰基羟基琥珀酰亚胺和碘/甲醇衍生的氨基磷脂离子;此外,对甲状旁腺功能亢进的临床蛋白质生物标志物全长甲状旁腺激素(PTH 1-84)进行绝对定量,以及使用双重稳定同位素标记的内标方法,结合免疫捕获和高分辨率LC-MS和MS / MS,可实现其体内氧化和截短的变体。使用此策略对临床PTH样品进行的分析显示,体内没有发生氧化或PTH 7-84。但是,发现了体内PTH截断的几个新位点。最后,将稳定的含同位素二甲基标记和多维LC-MS / MS用于经竞争性(即Bortezomib)和非竞争性(即TCH-013)蛋白酶体抑制剂处理的人RPMI-8226细胞的蛋白质组学分析。评估他们独特的作用机制。与Bortezomib或媒介物对照治疗相比,在TCH-013治疗后观察到四种与线粒体功能调节以及癌细胞生长和分裂密切相关的蛋白质被选择性下调。

著录项

  • 作者

    Nie, Shuai.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Analytical chemistry.;Biochemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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