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Novel investigations with infrared multiphoton dissociation (IRMPD) and collisionally activated dissociation (CAD) in a quadrupole ion trap.

机译:在四极离子阱中进行红外多光子解离(IRMPD)和碰撞激活解离(CAD)的新颖研究。

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摘要

Infrared multiphoton dissociation (IRMPD) has been compared to collisionally activated dissociation (CAD) in a quadrupole ion trap for the structural characterization of macrolide antibiotics and for the sequencing of modified and unmodified peptides. The larger effective m/z range in IRMPD tandem mass spectrometry experiments as compared to CAD allows more effective characterization of macrolide antibiotics, particularly for identifying aminoglycoside substituents which result in fragment ions below the low-m/z cutoff in CAD experiments. For the same reason, IRMPD also allows for the acquisition of more peptide sequence information than CAD, and it is easier to implement because, unlike CAD, it is not necessary to match a supplemental AC signal to a trapped ion's frequency of motion.; In addition, the strong absorption attributed to the P-O stretch of the phosphate moiety for 10.6 mum (the wavelength used for IRMPD) allows the selective dissociation of phosphorylated peptides in complex mixtures. This technique has been used to differentiate phosphorylated and unphosphorylated peptides in direct infusion ESI-MS experiments and following HPLC separations. This has allowed the determination of the phosphorylation status of peptides in complex mixtures including tryptic digests of a phosphoprotein, alpha-casein; shown in Chapter 4 for a direct infusion experiment and in Chapter 5 following HPLC fractionation of the tryptic fragments.; Energy-resolved CAD has been applied for the determination of gas-phase basicities of peptide basic sites via the gas-phase dissociation of [peptide+H ++polyether]+ complexes. These results showed that not only the type of amino acid, but also its position relative to the N and C termini and any intramolecular hydrogen bonding that occurs with the peptide of interest, affect the gas-phase basicities and that these differences are observed based on threshold CAD measurements. Collisionally activated dissociation and energy-resolved dissociation were also applied to carbamoylmethylphosphine oxide (CMPO) ligands complexed with rare earth ions. These studies show that it is possible to determine the favorable binding stoichiometries for various ligands bound to trivalent lanthanides. In addition, energy-resolved CAD experiments and studies of post-dissociation solvent adduction showed that the CMPO ligands are able to more completely solvate the lanthanide ions as their ionic radii decrease.
机译:红外多光子解离(IRMPD)已与四极杆离子阱中的碰撞活化解离(CAD)进行了比较,用于大环内酯类抗生素的结构表征以及修饰和未修饰肽的测序。与CAD相比,IRMPD串联质谱实验的有效m / z范围更大,可以更有效地表征大环内酯类抗生素,特别是用于鉴定氨基糖苷取代基,从而导致片段离子低于CAD实验中的低m / z临界值。出于同样的原因,IRMPD还可以比CAD捕获更多的肽序列信息,并且易于实现,因为与CAD不同,不需要将补充AC信号与捕获离子的运动频率进行匹配。另外,归因于磷酸盐部分的P-O伸展达10.6μm(用于IRMPD的波长)的强吸收允许复杂混合物中磷酸化肽的选择性解离。在直接输注ESI-MS实验和HPLC分离后,已使用该技术区分磷酸化和非磷酸化的肽。这使得可以测定复杂混合物中肽的磷酸化状态,这些混合物包括磷蛋白的胰蛋白酶消化物,α-酪蛋白;在第4章中显示了直接输注实验,在HPLC分离胰蛋白酶片段后显示了第5章。能量分辨CAD已通过[肽+ H ++聚醚] +络合物的气相解离用于确定肽碱性位点的气相碱性。这些结果表明,不仅氨基酸的类型,而且氨基酸相对于N和C末端的位置以及与目标肽一起发生的任何分子内氢键均会影响气相碱性,并且基于阈值CAD测量。碰撞活化解离和能量分辨解离也适用于与稀土离子络合的氨基甲酰基甲基氧化膦(CMPO)配体。这些研究表明,可以确定与三价镧系元素结合的各种配体的有利结合化学计量。此外,能量分解的CAD实验和解离后溶剂加合的研究表明,随着CMPO配体的离子半径减小,它们能够更完全地溶解镧系离子。

著录项

  • 作者

    Crowe, Matthew Cooper.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 234 p.
  • 总页数 234
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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