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气相中天然离子的结构动力学:细胞色素 c 的串联离子迁移的结果。

Structural Dynamics of Native-Like Ions in the Gas Phase: Results from Tandem Ion Mobility of Cytochrome c.

机构信息

University of Washington , Department of Chemistry, Box 351700, Seattle, Washington 98195-1700, United States.

出版信息

Anal Chem. 2017 Jul 18;89(14):7527-7534. doi: 10.1021/acs.analchem.7b01234. Epub 2017 Jul 5.

Abstract

Ion mobility (IM) is a gas-phase separation technique that is used to determine the collision cross sections of native-like ions of proteins and protein complexes, which are in turn used as restraints for modeling the structures of those analytes in solution. Here, we evaluate the stability of native-like ions using tandem IM experiments implemented using structures for lossless ion manipulations (SLIM). In this implementation of tandem IM, ions undergo a first dimension of IM up to a switch that is used to selectively transmit ions of a desired mobility. Selected ions are accumulated in a trap and then released after a delay to initiate the second dimension of IM. For delays ranging from 16 to 33 231 ms, the collision cross sections of native-like, 7+ cytochrome c ions increase monotonically from 15.1 to 17.1 nm. The largest products formed in these experiments at near-ambient temperature are still far smaller than those formed in energy-dependent experiments (∼21 nm). However, the collision cross section increases by ∼2% between delay times of 16 and 211 ms, which may have implications for other IM experiments on these time scales. Finally, two subpopulations from the full population were each mobility selected and analyzed as a function of delay time, showing that the three populations can be differentiated for at least 1 s. Together, these results suggest that elements of native-like structure can have long lifetimes at near-ambient temperature in the gas phase but that gas-phase dynamics should be considered when interpreting results from IM.

摘要

离子淌度(IM)是一种气相分离技术,用于确定蛋白质和蛋白质复合物的天然离子的碰撞截面,这些截面反过来又被用作模型构建的约束条件,以确定这些分析物在溶液中的结构。在这里,我们使用无损离子操纵结构(SLIM)来评估天然离子的稳定性。在这种串联 IM 的实现中,离子在第一个维度上进行 IM,直到达到一个用于选择性传输所需迁移率的离子的开关。选定的离子在阱中积累,然后在延迟后释放,以启动第二个维度的 IM。对于延迟时间从 16 到 33 231 ms 的范围,天然状态的 7+细胞色素 c 离子的碰撞截面从 15.1 到 17.1nm 单调增加。在这些接近环境温度的实验中形成的最大产物仍然远小于能量依赖实验中形成的产物(约 21nm)。然而,在 16 到 211ms 的延迟时间之间,碰撞截面增加了约 2%,这可能对这些时间尺度上的其他 IM 实验有影响。最后,对完整种群中的两个亚群分别进行迁移选择,并作为延迟时间的函数进行分析,结果表明这三个种群至少可以在 1 秒内区分开来。总之,这些结果表明,在气相中接近环境温度下,天然状态结构的某些元素可以具有较长的寿命,但在解释 IM 结果时应考虑气相动力学。

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