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Mass Spectrometry-Based Strategies for Biomolecular Structure Analysis: Steroid Metabolites Structures and Protein-Protein Interactions.

机译:基于质谱的生物分子结构分析策略:类固醇代谢物结构和蛋白质-蛋白质相互作用。

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摘要

Mass spectrometry is an important method for studying the structure of both small molecules and large biomolecules (e.g., proteins). The majority of the applications prior to 1970 were focused on small molecules, owing to the limited ionization methods which posed difficulties in producing gas-phase ions for large biomolecules then. Beginning in the 1980's, with the introduction of new ionization methods (ESI and MALDI), the applications have gradually switched to biological science measuring large bioorganic molecules. Today, with the developing interest in metabolomics and proteomics, and ongoing improvement in MS-based techniques, mass spectrometry is extensively applied in the study of both small and large molecules.;The research presented in this thesis falls into two main parts, which focus on the application of MS in (1) structural analysis of steroid metabolites and (2) characterization of protein-protein interactions. In the first part, combinations of different MS methods are adopted and used to solve the structures of unknown steroid metabolites, which are the pheromones responsible for mouse communication in mouse urine. This part includes three chapters, the first two of which discuss the method development of using MS to study the structure of steroid metabolites; and the third chapter presents the application of the MS methods in solving a newly discovered steroid pheromone, which is determined as a sex-specific hormone. In the second part, two MS-based strategies, namely, hydrogen-deuterium exchange (HDX) and fast photochemical oxidation of proteins (FPOP), are applied in two studies of protein-protein interactions, including: (1) dimerization of SecA, which is a motor protein in bacteria translocation pathway; and (2) interface mapping of EGFR binding to Adnectin1. In the first chapter in Part 2, we used HDX MS to characterize the dimer interface of SecA, and, meanwhile, detected a conformational change from open to closed forms at the pre-protein binding domain upon dimerization. This conformational change provided leads for the active form of SecA. In the second chapter in Part 2, we applied FPOP, which is modified to suit therapeutic protein formulation conditions, to map the epitope of Adnectin1-EGFR interaction at amino acid residue level. The epitope identified agrees with that from both HDX study and crystallography results, presenting more evidence of the capability of FPOP in epitope mapping.;These five studies on characterization of steroid metabolites and protein-protein interactions show the successful application of mass spectrometry in the structural study of both small molecules and large proteins. Furthermore, there's a great potential for study of more complex systems.
机译:质谱法是研究小分子和大生物分子(例如蛋白质)的结构的重要方法。 1970年前的大多数应用都集中在小分子上,这归因于电离方法的局限性,这给当时生产大生物分子的气相离子带来了困难。从1980年代开始,随着新的电离方法(ESI和MALDI)的引入,应用逐渐转向生物科学来测量大型生物有机分子。如今,随着对代谢组学和蛋白质组学的兴趣不断发展,以及基于MS的技术的不断改进,质谱已广泛应用于小分子和大分子的研究。本论文的研究分为两个主要部分,重点是MS在(1)类固醇代谢产物的结构分析和(2)蛋白质-蛋白质相互作用表征中的应用研究。在第一部分中,采用了多种MS方法的组合,并用于解决未知类固醇代谢物的结构,这些类固醇代谢物是负责小鼠尿液中小鼠通讯的信息素。这部分包括三章,其中前两章讨论了使用质谱技术研究类固醇代谢物结构的方法发展。第三章介绍了质谱方法在解决新发现的类固醇信息素方面的应用,该类固醇信息素被确定为一种性别特异性激素。在第二部分中,两种基于蛋白质的策略,即氢-氘交换(HDX)和蛋白质的快速光化学氧化(FPOP),被用于两项蛋白质-蛋白质相互作用的研究中,包括:(1)SecA的二聚化,它是细菌易位途径中的运动蛋白; (2)EGFR与Adnectin1的界面映射。在第2部分的第一章中,我们使用HDX MS表征SecA的二聚体界面,同时在二聚化后检测到前蛋白结合结构域从开放形式到封闭形式的构象变化。这种构象变化提供了活性形式的SecA。在第2部分的第二章中,我们应用了经过修饰的FPOP以适应治疗性蛋白质制剂的条件,以在氨基酸残基水平上绘制Adnectin1-EGFR相互作用的表位。鉴定出的表位与HDX研究和晶体学结果相吻合,为FPOP在表位作图中的能力提供了更多证据。;这五项关于类固醇代谢产物和蛋白质-蛋白质相互作用的表征研究表明,质谱在结构分析中的成功应用研究小分子和大蛋白质。此外,研究更复杂系统的潜力很大。

著录项

  • 作者

    Yan, Yuetian.;

  • 作者单位

    Washington University in St. Louis.;

  • 授予单位 Washington University in St. Louis.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:27

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