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Exploring Salt Bridge Structures of Gas-Phase Protein Ions using Multiple Stages of Electron Transfer and Collision Induced Dissociation

机译:利用电子转移和碰撞诱导解离的多阶段探索气相蛋白离子的盐桥结构

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摘要

The gas-phase structures of protein ions have been studied by electron transfer dissociation (ETD) and collision-induced dissociation (CID) after electrospraying these proteins from native-like solutions into a quadrupole ion trap mass spectrometer. Because ETD can break covalent bonds while minimally disrupting non-covalent interactions, we have investigated the ability of this dissociation technique together with CID to probe the sites of electrostatic interactions in gas phase protein ions. By comparing spectra from ETD with spectra from ETD followed by CID, we find that several proteins, including ubiquitin, CRABP I, azurin, and β-2-microglobulin, appear to maintain many of the salt bridge contacts known to exist in solution. To support this conclusion, we also performed calculations to consider all possible salt bridge patterns for each protein, and we find that the native salt bridge pattern explains the experimental ETD data better than nearly all other possible salt bridge patterns. Overall, our data suggest that ETD and ETD/CID of native protein ions can provide some insight into approximate location of salt bridges in the gas phase.
机译:在将蛋白质从天然溶液中电喷雾到四极离子阱质谱仪中之后,已经通过电子转移解离(ETD)和碰撞诱导解离(CID)研究了蛋白质离子的气相结构。因为ETD可以破坏共价键,同时最小化非共价键的相互作用,所以我们研究了这种离解技术与CID一起探测气相蛋白质离子中静电相互作用位点的能力。通过将ETD的光谱与ETD的光谱以及随后的CID进行比较,我们发现包括泛素,CRABP I,天青蛋白和β-2-微球蛋白在内的几种蛋白质似乎可以维持已知存在于溶液中的许多盐桥接触。为了支持该结论,我们还进行了计算以考虑每种蛋白质的所有可能的盐桥模式,并且发现天然盐桥模式比几乎所有其他可能的盐桥模式更好地解释了实验性ETD数据。总体而言,我们的数据表明,天然蛋白离子的ETD和ETD / CID可以提供一些有关气相中盐桥近似位置的信息。

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