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Tailoring the volatility and stability of oligopeptides

机译:剪裁寡肽的波动性和稳定性

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Amino acids are essential building blocks of life, and fluorinated derivatives have gained interest in chemistry andmedicine. Modern mass spectrometry has enabled the study of oligo- and polypeptides as isolated entities in the gas phase, but predominantly as singly or even multiply charged species. While laser desorption of neutral peptides into adiabatically expanding supersonic noble gas jets is possible, UV-VIS spectroscopy, electric or magnetic deflectometry as well as quantum interferometry would profit from the possibility to prepare thermally slow molecular beams. This has typically been precluded by the fragility of the peptide bond and the fact that a peptide would rather 'fry', i.e. denature and fragment than 'fly'. Here, we explore how tailored perfluoroalkyl functionalization can reduce the intermolecular binding and thus increase the volatility of peptides and compare it to previously explored methylation, acylation and amidation of peptides. We show that this strategy is essential and enables the formation of thermal beams of intact neutral tripeptides, whereas only fragments were observed for an extensively fluoroalkyl-decorated nonapeptide. (C) 2017 The Authors. Journal of Mass Spectrometry Published by John Wiley & Sons Ltd.
机译:氨基酸是生命的基本结构块,氟化衍生物对化学和医学率产生了兴趣。现代质谱使寡聚和多肽的研究能够在气相中的分离实体研究,但主要是单独或甚至繁殖的物种。虽然中性肽的激光解吸在绝热膨胀的超声波惰性气体喷射中,但是UV-Vis光谱,电气或磁性偏转测量以及量子干涉测量可以从准备热慢分子束的可能性中获利。这通常被肽键的脆性释放出来以及肽宁愿“乳化”的事实,即变性和碎片而不是“飞”。在这里,我们探讨定制的全氟烷基官能化可以减少分子间结合,从而增加肽的挥发性,并将其与先前探索的甲基化,酰化和肽的酰胺化。我们表明,该策略至关重要,并使形成完整中性三肽的热束,而仅针对广泛的氟代烷基装饰的非肽观察到片段。 (c)2017作者。 John Wiley&Sons Ltd.出版的大众光谱学杂志

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