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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Gas-Phase Structure of Amyloid-β (12 - 28) Peptide Investigated by Infrared Spectroscopy, Electron Capture Dissociation and Ion Mobility Mass Spectrometry
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Gas-Phase Structure of Amyloid-β (12 - 28) Peptide Investigated by Infrared Spectroscopy, Electron Capture Dissociation and Ion Mobility Mass Spectrometry

机译:淀粉样β(12-28)肽的气相结构的红外光谱,电子捕获解离和离子迁移质谱研究。

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摘要

The gas-phase structures of doubly and triply protonated Amyloid-β_(12-28) peptides have been investigated through the combination of ion mobility (IM), electron capture dissociation (ECD) mass spectrometry, and infrared multi-photon dissociation (IRMPD) spectroscopy together with theoretical modeling. Replicaexchange molecular dynamics simulations were conducted to explore the conformational space of these protonated peptides, from which several classes of structures were found. Among the low-lying conformers, those with predicted diffusion cross-sections consistent with the ion mobility experiment were further selected and their IR spectra simulated using a hybrid quantum mechanical/semiempirical method at the ONIOM DFT/B3LYP/6-31 g(d)/AM1 level. In ECD mass spectrometry, the c/z product ion abundance (PIA) has been analyzed for the two charge states and revealed drastic differences. For the doubly protonated species, N - C_α bond cleavage occurs only on the N and C terminal parts, while a periodic distribution of PIA is clearly observed for the triply charged peptides. These PIA distributions have been rationalized by comparison with the inverse of the distances from the protonated sites to the carbonyl oxygens for the conformations suggested from IR and IM experiments. Structural assignment for the amyloid peptide is then made possible by the combination of these three experimental techniques that provide complementary information on the possible secondary structure adopted by peptides. Although globular conformations are favored for the doubly protonated peptide, incrementing the charge state leads to a conformational transition towards extended structures with 3_(10)-and α-helix motifs.
机译:通过离子迁移率(IM),电子俘获解离(ECD)质谱和红外多光子解离(IRMPD)的组合研究了双质子化和三重质子化淀粉样β_(12-28)肽的气相结构光谱学和理论建模。进行了复制交换分子动力学模拟,以探索这些质子化肽的构象空间,从中发现了几类结构。在低洼构象异构体中,进一步选择那些具有与离子迁移率实验一致的预测扩散截面的异构体,并使用混合量子力学/半经验方法在ONIOM DFT / B3LYP / 6-31 g(d)处模拟其红外光谱。 / AM1级。在ECD质谱中,已经分析了两种电荷状态的c / z乘积离子丰度(PIA),并显示出巨大的差异。对于双质子化物种,N-C_α键裂解仅发生在N和C末端,而PIA的周期性分布则清楚地观察到三电荷的肽。通过与IR和IM实验所建议的构象,从质子化位点到羰基氧的距离的倒数进行比较,可以使这些PIA分布合理化。然后,通过这三种实验技术的结合,可以实现淀粉样肽的结构分配,这三种技术可以提供有关肽采用的可能二级结构的补充信息。尽管双质子化的肽有利于球形构象,但增加电荷状态会导致构象向具有3_(10)-和α-螺旋基序的延伸结构过渡。

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