首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Comprehensive Gas-Phase Peptide Ion Structure Studies Using Ion Mobility Techniques: Part 2. Gas-Phase Hydrogen/Deuterium Exchange for Ion Population Estimation
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Comprehensive Gas-Phase Peptide Ion Structure Studies Using Ion Mobility Techniques: Part 2. Gas-Phase Hydrogen/Deuterium Exchange for Ion Population Estimation

机译:使用离子迁移率技术的综合气相肽离子结构研究:第2部分。气相氢气/离子群体的氘交换

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Gas-phase hydrogen/deuterium exchange (HDX) using D2O reagent and collision cross-section (CCS) measurements are utilized to monitor the ion conformers of the model peptide acetyl-PAAAAKAAAAKAAAAKAAAAK. The measurements are carried out on a home-built ion mobility instrument coupled to a linear ion trap mass spectrometer containing electron transfer dissociation (ETD) capabilities. ETD is utilized to obtain per-residue deuterium uptake data for select ion conformers, and a new algorithm is presented for interpreting the HDX data. Using molecular dynamics (MD) production data and a hydrogen accessibility scoring (HAS)-number of effective collisions (NEC) model, hypothetical HDX behavior is attributed to various in-silico candidate (CCS match) structures. The HAS-NEC model is applied to all candidate structures, and non-negative linear regression is employed to determine structure contributions resulting in the best match to deuterium uptake. The accuracy of the HAS-NEC model is tested with the comparison of predicted and experimental isotopic envelopes for several of the observed c-ions. It is proposed that gas-phase HDX can be utilized effectively as a second criterion (after CCS matching) for filtering suitable MD candidate structures. In this study, the second step of structure elucidation, 13 nominal structures were selected (from a pool of 300 candidate structures) and each with a population contribution proposed for these ions.
机译:使用D2O试剂和碰撞横截面(CCS)测量的气相氢/氘交换(HDX)用于监测模型肽乙酰帕卡坦-aakaaak的离子簇。测量在耦合到包含电子转移解离(ETD)能力的线性离子阱质谱仪上耦合的自制离子迁移仪器上进行。 ETD用于获得用于选择离子蜂窝形式的每残基的氘摄取数据,并提出了一种用于解释HDX数据的新算法。使用分子动力学(MD)生产数据和氢气访问评分(具有)有效碰撞(NEC)模型,假设的HDX行为归因于各种硅候选(CCS匹配)结构。 Has-Nec模型应用于所有候选结构,并且采用非负线性回归来确定导致氘摄取最佳匹配的结构贡献。通过对几个观察到的C-离子的预测和实验同位素包络进行比较来测试HAS-NEC模型的准确性。提出,可以有效地使用气相HDX作为用于过滤合适的MD候选结构的第二标准(在CCS匹配之后)。在该研究中,选择了第二步骤,选择了13个标称结构(来自300次候选结构的池),每个都有针对这些离子提出的人口贡献。

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