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Competing gas-phase fragmentation pathways of asparagine-, glutamine-, and lysine-containing protonated dipeptides

机译:竞争的含天冬酰胺,谷氨酰胺和赖氨酸的质子化二肽气相裂解途径

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The fragmentation chemistry of protonated H-Val-Asn-OH, H-Val-Gln-OH and H-Val-Lys-OH is investigated in this work by means of modeling and density functional theory calculations. Former experimental studies indicate that the ratio of a1 and y1 ions cannot be explained by considering the proton affinities of the corresponding dissociating species on the a1-y1 pathway, while the fragmentation of other dipeptides can be understood in this way. We demonstrate that considering the correct PA value for H-Asn-OH eliminates the deviation observed for H-Val-Asn-OH. The larger than expected a1/y1 ratio of H-Val-Gln-OH is explained by considering the dissociation kinetics of the proton-bound dimers formed on the a1-y1 pathway and competition of the deamidation and a1-y1 channels. For H-Val-Lys-OH, it is proposed that a1 ions are indeed formed from one of the primary products, protonated H-Val-Cap-OH.
机译:通过建模和密度泛函理论计算,研究了质子化的H-Val-Asn-OH,H-Val-Gln-OH和H-Val-Lys-OH的裂解化学。以前的实验研究表明,无法通过考虑a1-y1途径上相应解离物种的质子亲和力来解释a1和y1离子的比率,而其他二肽的片段化可以通过这种方式理解。我们证明,考虑到H-Asn-OH的正确PA值可以消除H-Val-Asn-OH的偏差。 H-Val-Gln-OH的大于预期的a1 / y1比值是通过考虑在a1-y1途径上形成的质子结合二聚体的解离动力学以及脱酰胺基和a1-y1通道的竞争来解释的。对于H-Val-Lys-OH,建议确实由一种主要产物质子化的H-Val-Cap-OH形成a1离子。

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