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α-碳中心和π-中心甘氨酰甘氨酰色氨酸自由基阳离子的形成、异构化和离解。

Formation, isomerization, and dissociation of alpha-carbon-centered and pi-centered glycylglycyltryptophan radical cations.

机构信息

Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, China.

出版信息

J Phys Chem B. 2010 Feb 18;114(6):2270-80. doi: 10.1021/jp908599a.

Abstract

Gas phase fragmentations of two isomeric radical cationic tripeptides of glycylglycyltryptophan-G(*)GW and GGW-with well-defined initial radical sites at the alpha-carbon atom and the 3-methylindole ring, respectively, have been studied using collision-induced dissociation (CID), density functional theory (DFT), and Rice-Ramsperger-Kassel-Marcus (RRKM) theory. Substantially different low-energy CID spectra were obtained for these two isomeric GGW structures, suggesting that they did not interconvert on the time scale of these experiments. DFT and RRKM calculations were used to investigate the influence of the kinetics, stabilities, and locations of the radicals on the competition between the isomerization and dissociation channels. The calculated isomerization barrier between the GGW radical cations (>35.4 kcal/mol) was slightly higher than the barrier for competitive dissociation of these species (<30.5 kcal/mol); the corresponding microcanonical rate constants for isomerization obtained from RRKM calculations were all considerably lower than the dissociation rates at all internal energies. Thus, interconversion between the GGW isomers examined in this study cannot compete with their fragmentations.

摘要

使用碰撞诱导解离(CID)、密度泛函理论(DFT)和 Rice-Ramsperger-Kassel-Marcus(RRKM)理论研究了具有明确初始自由基位点的两种异构的三肽甘氨酰甘氨酰色氨酰-G(*)GWGGW-的气相碎片。这两种异构的 GGW 结构得到了截然不同的低能 CID 谱,表明它们在这些实验的时间尺度内没有相互转化。DFT 和 RRKM 计算用于研究动力学、稳定性和自由基位置对异构化和离解通道竞争的影响。GGW 正离子之间的异构化势垒(>35.4 kcal/mol)略高于这些物种的竞争离解势垒(<30.5 kcal/mol);从 RRKM 计算得出的异构化的微观正则速率常数在所有内能下均明显低于离解速率。因此,本研究中检查的 GGW 异构体之间的互变异构不能与其片段化竞争。

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