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首页> 外文期刊>International journal of mass spectrometry >Gas-phase protein salt bridge stabilities from collisional activation and electron transfer dissociation
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Gas-phase protein salt bridge stabilities from collisional activation and electron transfer dissociation

机译:来自碰撞激活和电子转移解离的气相蛋白盐桥稳定性

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Graphical abstract Display Omitted Abstract The gas phase structures of several proteins have been studied by electron transfer dissociation (ETD) with and without prior collisional heating after electrospraying these proteins from native-like solutions into a quadrupole ion trap mass spectrometer. Without prior collisional heating, we find that ETD fragmentation is mostly limited to regions of the protein that are not spanned by the salt bridges known to form in solution. When protein ions are collisionally heated before ETD, new product ions are observed, and in almost all cases, these new ions arise from protein regions that are spanned by the salt bridges. Together these results confirm the existence of salt bridges in protein ions and demonstrate that a sufficient amount energy is required to disrupt these salt bridges in the gas phase. More interestingly, we also show that different salt bridges require different collisional activation voltages to be disrupted, suggesting that they have variable stabilities in the gas phase. These stabilities appear to be influenced by the gas-phase basicities of the involved residues and the presence of nearby charged residues. We also find that higher collisional activation voltages are needed to enable the formation of new product from sites spanned by multiple salt bridges. ]]>
机译:<![cdata [ 图形抽象 显示省略 Abstract 已经通过电子转移解离(ETD)和无需先前碰撞从天然样溶液电喷雾后的碰撞加热来研究几种蛋白质的气相结构进入四极离子阱质谱仪。在没有先前的碰撞加热的情况下,我们发现ETD碎片大部分限于未被已知在溶液中形成的盐桥跨越的蛋白质的区域。当在ETD之前被牢固地加热蛋白质离子时,观察到新的产物离子,并且在几乎所有情况下,这些新的离子由盐桥跨越的蛋白质区出现。这些结果共同证实了蛋白质离子中的盐桥的存在,并证明需要足够的量能量来破坏气相中的这些盐桥。更有趣的是,我们还表明,不同的盐桥需要不同的碰撞激活电压被破坏,表明它们在气相中具有可变的稳定性。这些稳定性似乎受到所涉及的残留物的气相碱性以及附近带电残留物的存在的影响。我们还发现,需要更高的碰撞激活电压来实现从多个盐桥跨越的网站形成新产品。 ]>

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