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Analysis of Glycosyl Bond Cleavage and Related Isotope Effects in Collision-Induced Dissociation Quadrupole-Time-of-Flight Mass Spectrometry of Isomeric Trehaloses

机译:异构海藻糖碰撞诱导的解离四极杆飞行时间质谱中的糖基键裂解和相关同位素效应分析

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摘要

The configuration isomers alpha,alpha-, alpha,beta-, and beta,beta-trehalose are distinguishable by a relative ion abundance analysis using collision-induced dissociation MS/MS measurements in electrospray ionization quadrupole-time-of-flight mass spectrometry. The relative abundance of the Y-type fragment ion of alpha,alpha-trehalose is the highest and that of beta,beta-trehalose is the lowest, indicating that alpha-glycosyl bonds cleave more easily than beta-glycosyl bonds. The relative ion abundance depends on both the alpha- and beta-glycosyl linkage type and the number of alpha-glycosyl bonds. The reaction path of glycosyl bond cleavage is calculated computationally using the molecular orbital method in the form of Hartree-Fock theory in conjunction with the 6-31G(d) basis set. The results are consistent with the experimental data. Isotope effects on the fragmentation of the glycosyl bonds are detected in the experiments of the H_(2)O/D_(2)O solvent systems. Furthermore, the isotope effect regarding beta,beta-trehalose is larger than those of alpha,alpha- and alpha,beta-trehalose, indicating that the isotope effect on the beta-glycosyl bond cleavage is larger than that on the alpha-glycosyl bond cleavage. The thermal energy increase in trehalose-d_(8) molecules over the corresponding trehalose molecules is calculated from the vibrational modes.
机译:通过在电喷雾电离四极杆飞行时间质谱中使用碰撞诱导的解离MS / MS测量进行相对离子丰度分析,可以区分构型异构体α,α,β,β和β-海藻糖。 α,α-海藻糖的Y型片段离子的相对丰度最高,而β,β-海藻糖的Y型片段离子的相对丰度最低,表明α-糖基键比β-糖基键更容易裂解。相对离子丰度取决于α-糖基键和β-糖基键的类型以及α-糖基键的数量。糖基键断裂的反应路径是通过分子轨道方法以Hartree-Fock理论的形式结合6-31G(d)基础计算得出的。结果与实验数据一致。在H_(2)O / D_(2)O溶剂系统的实验中检测到同位素对糖基键断裂的影响。此外,关于β,β-海藻糖的同位素效应大于α,α-和α,β-海藻糖的同位素效应,表明同位素对β-糖基键裂解的影响大于对α-糖基键裂解的影响。 。根据振动模式计算海藻糖-d_(8)分子相对于相应海藻糖分子的热能增加。

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