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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Gas phase ion chemistry of biomolecules. Part 37 - Gas-phase reactions of protonated tryptophan
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Gas phase ion chemistry of biomolecules. Part 37 - Gas-phase reactions of protonated tryptophan

机译:生物分子的气相离子化学。第37部分-质子化色氨酸的气相反应

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The gas phase reactions of protonated tryptophan have been examined in a quadrupole ion trap using a combination of collision induced dissociation, hydrogen-deuterium exchange, regiospecific deuterium labeling and molecular orbital calculations (at the B3LYP/6-31G* level of theory). The loss of ammonia from protonated tryptophan is observed as the primary fragmentation pathway, with concomitant formation of a [M + H - NH3](+) ion by nucleophilic attack from the C3 position of the indole side chain. Hydrogen-deuterium exchange and regiospecific deuterium labeling reveals that scrambling of protons in the C2 and C4 positions of the indole ring, via intramolecular proton transfer from the thermodynamically preferred site of protonation at the amino nitrogen, precedes ammonia loss. Molecular orbital calculations have been employed to demonstrate that the activation barriers to intramolecular proton transfer are lower than that for NH3 loss.
机译:已通过碰撞诱导解离,氢-氘交换,区域特异性氘标记和分子轨道计算(在理论上为B3LYP / 6-31G *的水平)的组合在四极离子阱中检查了质子化色氨酸的气相反应。观察到质子化色氨酸中氨的损失是主要的裂解途径,并伴随着由吲哚侧链C3位置的亲核攻击形成[M + H-NH3](+)离子。氢-氘交换和区域特异性氘标记显示,吲哚环的C2和C4位置上的质子通过分子内质子从氨基上氮的质子热力学上优选的质子转移而发生扰乱。分子轨道计算已被用来证明分子内质子转移的活化势垒低于NH3的损失。

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