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Investigation of disulfide bond cleavage, water-cluster cations and phosphorus-oxygen bonds in phosphates using ab initio electronic structure calculations.

机译:使用从头算电子结构计算研究磷酸盐中的二硫键断裂,水簇阳离子和磷-氧键。

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摘要

The chemical bonds that cleave in proteins and peptides during electron capture dissociation (ECD) and electron transfer dissociation (ETD) mass spectrometry are N-C&agr; and disulfide bonds. These types of bonds cleave at a significantly higher rate in ECD and ETD as compared to other types of mass spectrometry, such as collisionally activated dissociation (CAD) mass spectrometry.;The mechanism of bond cleavage in ECD and ETD has been a subject of debate. The original mechanism proposed involves a hydrogen atom transfer from the positive site of electron capture to either an SS or N-C&agr; bond. This mechanism came under scrutiny after further investigation. Described herein, is the use of Hartree-Fock and second order Moller-Plesset perturbation calculations to investigate the mechanism of bond cleavage in proteins and peptides during ECD and ETD.;The behavior of water-cluster cations of the form [M(H2O) n]2+ were studied in ECD experiments and the outcomes of these experiments were investigated using ab initio electronic structure calculations. These calculations were done in order to understand ECD experiments performed by the Williams group. These experiments were performed with different alkaline earth metals and various numbers of water molecules. Mass-selected doubly charged cations containing alkaline earth metals were subjected to ECD and the mass-to-charge ratios and abundances of the fragmentation ions were determined. For the Ca2+-containing clusters, ECD mass spectrometry was carried out on clusters with 4 to 47 water molecules. It was shown that two different outcomes were possible for these metal-cluster cations, depending on the number of water molecules that were in the cluster. Described herein, is the investigation of the mechanism involved in the two possible reaction pathways.;The nature of phosphorus oxygen bonds in phosphates is also described. Hartree-Fock and Moller-Plesset perturbation calculations were employed to examine several systems.
机译:在电子捕获解离(ECD)和电子转移解离(ETD)质谱过程中,蛋白质和肽中裂解的化学键为N-C&agr;和二硫键。与其他类型的质谱法(例如碰撞活化解离(CAD)质谱法)相比,这些类型的键在ECD和ETD中的裂解速率显着更高;; ECD和ETD中的键裂解机理一直是争论的话题。最初提出的机制涉及氢原子从电子捕获的正位转移到SS或N-C&agr;键。进一步调查后,对该机制进行了审查。本文描述的是使用Hartree-Fock和二阶Moller-Plesset扰动计算来研究ECD和ETD期间蛋白质和肽键断裂的机理。[M(H2O)形式的水簇阳离子的行为在ECD实验中研究了n] 2+,并使用从头算电子结构计算研究了这些实验的结果。进行这些计算是为了了解Williams小组进行的ECD实验。这些实验是使用不同的碱土金属和各种数量的水分子进行的。对质量选择的含碱土金属的双电荷阳离子进行ECD,并测定碎片离子的质荷比和丰度。对于含Ca2 +的团簇,对具有4至47个水分子的团簇进行ECD质谱分析。结果表明,取决于簇中水分子的数量,这些金属簇阳离子可能有两种不同的结果。本文描述了涉及两种可能的反应途径的机理的研究。;还描述了磷酸盐中磷氧键的性质。使用Hartree-Fock和Moller-Plesset摄动计算来检查几个系统。

著录项

  • 作者

    Neff, Diane Louise.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Chemistry General.;Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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