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Examining the Influence of Phosphorylation on Peptide Ion Structure by Ion Mobility Spectrometry-Mass Spectrometry

机译:通过离子迁移谱-质谱法研究磷酸化对肽离子结构的影响

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摘要

Ion mobility spectrometry-mass spectrometry (IMS-MS) techniques are used to study the general effects of phosphorylation on peptide structure. Cross sections for a library of 66 singly phosphorylated peptide ions from 33 pairs of positional isomers, and unmodified analogues were measured. Intrinsic size parameters (ISPs) derived from these measurements yield calculated collision cross sections for 85% of these phosphopeptide sequences that are within ±2.5% of experimental values. The average ISP for the phosphoryl group (0.64 ± 0.05) suggests that in general this moiety forms intramolecular interactions with the neighboring residues and peptide backbone, resulting in relatively compact structures. We assess the capability of ion mobility to separate positional isomers (i.e., peptide sequences that differ only in the location of the modification) and find that more than half of the isomeric pairs have >1% difference in collision cross section. Phosphorylation is also found to influence populations of structures that differ in the cis/trans orientation of Xaa–Pro peptide bonds. Several sequences with phosphorylated Ser or Thr residues located N-terminally adjacent to Pro residues show fewer conformations compared to the unmodified sequences.
机译:离子淌度质谱-质谱(IMS-MS)技术用于研究磷酸化对肽结构的一般影响。测量了来自33对位置异构体的66个单独磷酸化的肽离子库的横截面,以及未修饰的类似物。从这些测量值得出的内在尺寸参数(ISP)得出了这些磷酸肽序列的85%的计算出的碰撞截面,其在实验值的±2.5%之内。磷酸基的平均ISP(0.64±0.05)表明,通常该部分与相邻残基和肽主链形成分子内相互作用,从而导致结构相对紧凑。我们评估了离子淌度分离位置异构体(即仅在修饰位置不同的肽序列)的能力,发现超过一半的同分异构体对碰撞截面的差异> 1%。还发现磷酸化会影响Xaa–Pro肽键的顺/反方向不同的结构种群。与未修饰的序列相比,具有磷酸化的Ser或Thr残基位于N末端邻近Pro残基的几个序列显示更少的构象。

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