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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Proton mobility in protonated glycylglycine and N-formylglycylglycinamide: a combined quantum chemical and RKKM study
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Proton mobility in protonated glycylglycine and N-formylglycylglycinamide: a combined quantum chemical and RKKM study

机译:质子化的甘氨酰甘氨酸和N-甲酰基甘氨酰甘氨酰胺中的质子迁移率:量子化学和RKKM的组合研究

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Theoretical model calculations were performed to investigate the degree of validity of the mobile proton model of protonated peptides. The structures and energies of the most important minima corresponding to different structural isomers of protonated diglycine and their conformers, as well as the barriers separating them, were determined by DFT calculations. The rate coefficients of the proton transfer reactions between the isomers were calculated using the RRKM method in order to obtain a quantitative measure of the time scale of these processes. The proton transfer reactions were found to be very fast already at and above the threshold to the lowest energy decomposition pathway. Two possible mechanisms of b(2)(+)-ion formation via water loss from the dipeptide are also discussed. The rate-determining step of the proton migration along a peptide chain is also investigated using the mo del compound N-formylglycylglycinamide. The investigations revealed that this process very possibly occurs via the protonation of the carbonyl oxygens of the amide bonds, and its rate-determining step is an internal rotation-type transition of the protonated C=O-H group between two adjacent C=O-H . . .O=C bridges. Copyright (C) 2001 John Wiley & Sons, Ltd. [References: 28]
机译:进行理论模型计算以研究质子化肽的移动质子模型的有效性。通过DFT计算确定了对应于质子化二甘氨酸的不同结构异构体及其构象异构体的最重要极小值的结构和能量,以及将它们分隔开的势垒。使用RRKM方法计算异构体之间质子转移反应的速率系数,以便获得这些过程时间尺度的定量度量。发现质子转移反应已经非常快,并且已经达到最低能量分解途径的阈值。还讨论了通过二肽失水形成b(2)(+)离子的两种可能机理。还使用模型化合物N-甲酰基甘氨酰甘氨酰胺研究了质子沿肽链迁移的速率确定步骤。研究表明,该过程很可能是通过酰胺键羰基氧的质子化而发生的,其速率确定步骤是两个相邻的C = O-H之间质子化的C = O-H基团的内旋转型转变。 。 .O = C桥。版权所有(C)2001 John Wiley&Sons,Ltd. [引用:28]

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