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Development and implementation of a FT-ICR mass spectrometer for the investigation of ion conformations of peptide sequence isomers containing basic amino acid residues by gas-phase hydrogen/deuterium exchange

机译:FT-ICR质谱仪的开发和实现,用于通过气相氢/氘交换研究含碱性氨基酸残基的肽序列异构体的离子构象

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摘要

The gas-phase hydrogen/deuterium (H/D) exchange of protonated di- and tripeptides containing a basic amino acid residue has been studied with a Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometer. Bimolecular reactions are monitored as a function of time providing exchange efficiencies and temporal distributions for the peptide ions. Results from these experiments indicated that position of the basic residue within the peptide (i.e. N-terminal, internal, or C-terminal) influences gas-phase H/D exchange, suggesting unique peptide ion conformations. The FT-ICR mass spectrometer employed for these gas-phase H/D exchange studies was modified from its original design. Instrument modifications include development of an internal matrix assisted laser desorption ionization (MALDI) source for peptide protonation. In addition, a two-section cell was utilized, allowing control of ion motion and factors affecting gas-phase ion molecule reactions. Systems investigated in these gas-phase H/D exchange studies are peptides containing the same amino acid residues but different sequences. These sequence isomers display dissimilar reaction efficiencies and temporal distributions for deuterium incorporation depending on the primary structure of the peptide ion. Specifically, [M+H]+ peptide ions containing a N-terminal basic residue demonstrate unique H/D exchange behavior when compared to their internal and C-terminal counterparts. These differences are attributed to dissimilar intramolecular bridging interactions involved with inductive stabilization of the charge site. Gas-phase H/D exchange of peptide sequence isomers was also probed with various deuterium reagents. Findings suggest that different reagents also influence H/D exchange reaction rate efficiencies and temporal distributions. These dissimilarities are ascribed to relative gas-phase basicity and proposed mechanistic exchange differences for the deuterium reagents.
机译:已使用傅立叶变换离子回旋共振(FT-ICR)质谱仪研究了含碱性氨基酸残基的质子化二肽和三肽的气相氢/氘(H / D)交换。根据时间监测双分子反应,从而为肽离子提供交换效率和时间分布。这些实验的结果表明,肽中碱性残基的位置(即N-末端,内部或C-末端)影响气相H / D交换,表明独特的肽离子构象。用于这些气相H / D交换研究的FT-ICR质谱仪是从其原始设计修改而来的。仪器修改包括开发用于肽质子化的内部基质辅助激光解吸电离(MALDI)源。此外,采用了两节式电解槽,可控制离子运动和影响气相离子分子反应的因素。在这些气相H / D交换研究中研究的系统是含有相同氨基酸残基但序列不同的肽。这些序列异构体对于氘掺入显示出不同的反应效率和时间分布,这取决于肽离子的一级结构。具体而言,与它们的内部和C端对应物相比,包含N端碱性残基的[M + H] +肽离子表现出独特的H / D交换行为。这些差异归因于与电荷位点的感应稳定有关的不同的分子内桥接相互作用。还用各种氘试剂探测了肽序列异构体的气相H / D交换。研究结果表明,不同的试剂也会影响H / D交换反应速率的效率和时间分布。这些差异归因于相对的气相碱度和提出的氘试剂的机械交换差异。

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    Marini Joseph Thomas;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en_US
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