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首页> 外文期刊>Analytical chemistry >Interpreting the Collision Cross Sections of Native-like Protein Ions: Insights from Cation-to-Anion Proton-Transfer Reactions
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Interpreting the Collision Cross Sections of Native-like Protein Ions: Insights from Cation-to-Anion Proton-Transfer Reactions

机译:解释天然样蛋白离子的碰撞横截面:阳离子对阴离子质子转移反应的见解

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摘要

The effects of charge state on structures of nativelike cations of serum albumin, streptavidin, avidin, and alcohol dehydrogenase were probed using cation-to-anion proton transfer reactions (CAPTR), ion mobility, mass spectrometry, and complementary energy -dependent experiments. The CAPTR. products all have collision cross-section (52) values that are within 5.5% of the original precursor cations. The first CAPTR event for each precursor yields products that have smaller 52 values and frequently exhibit the greatest magnitude of change in 52 resulting from a single CAPTR event. To investigate how the structures of the precursors affect the structures of the products, ions were activated as a function of energy prior to CAPTR. In each case, the Omega values of the activated precursors increase with increasing energy, but the Omega values of the CAPTR products are smaller than the activated precursors. To investigate the stabilities of the CAPTR products, the products were activated immediately prior to ion mobility. These results show that additional structures with smaller or larger 52 values can be populated and that the structures and stabilities of these ions depend most strongly on the identity of the protein and the charge state of the product, rather than the charge state of the precursor or the number of CAPTR events. Together, these results indicate that the excess charges initially present on native-like ions have a modest, but sometimes statistically significant, effect on their 52 values. Therefore, potential contributions from charge state should be considered when using experimental Omega values to elucidate structures in solution.
机译:使用阳离子 - 阴离子质子转移反应(CAPTR),离子迁移率,质谱和互补能量 - 依赖性实验,探测了充电状态对血清白蛋白,链霉抗生物素蛋白,抗氢姻和醇脱氢酶和醇脱氢酶结构的影响。 captr。产品均具有碰撞横截面(52)值,占原始前体阳离子的5.5%。每个前体的第一个CAPTR事件产生具有较小52值的产物,并且通常表现出由单个CAPTR事件产生的52中最大的变化。为了研究前体的结构如何影响产物的结构,在CAPTR之前作为能量的函数被活化。在每种情况下,活化前体的ω值随能量的增加而增加,但CAPTR产品的ω值小于活化前体。为了研究CAPTR产品的稳定性,在离子迁移率之前立即激活产物。这些结果表明,可以填充具有较小或更大的52个值的附加结构,并且这些离子的结构和稳定性最强烈地依赖于蛋白质的身份和产品的充电状态,而不是前体的充电状态或CAPTR事件的数量。这些结果表明,最初存在于天然的离子上的过量费用具有适度,但有时在统计学上显着,对其52值影响。因此,在使用实验ω值以阐明溶液中的结构时,应考虑来自充电状态的潜在贡献。

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