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Electron Capture Dissociation of Sodium-Adducted Peptides on a Modified Quadrupole/Time-of-Flight Mass Spectrometer

机译:修饰的四极杆/飞行时间质谱仪上的钠加成肽的电子捕获解离

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摘要

Electron capture dissociation (ECD), which generally preserves the position of labile post-translational modifications, can be a powerful method for de novo sequencing of proteins and peptides. In this report, ECD product-ion mass spectra of singly and doubly sodiated, nonphosphorylated, and phosphorylated peptides are presented and compared with the ECD mass spectra of their protonated counterparts. ECD of doubly charged, singly sodiated peptides yielded essentially the same sequence information as was produced by the corresponding doubly protonated peptides. The presence of several sodium binding sites on the polypeptide backbone, however, resulted in more complicated spectra. This situation is aggravated by the zwitterionic equilibrium of the free acid peptide precursors. The product-ion spectra of doubly and triply charged peptides possessing two sodium ions were further complicated by the existence of isomers created by the differential distribution of sodium binding sites. Triply charged, phosphorylated precursors containing one sodium, wherein the sodium is attached exclusively to the PO4 group, were found to be as useful for sequence analysis as the fully protonated species. Although sodium adducts are generally minimized during sample preparation, it appears that they can nonetheless provide useful sequence information. Additionally, they enable straightforward identification of a peptide’s charge state, even on low-resolution instruments. The experiments were carried out using a radio frequency-free electromagnetostatic cell retrofitted into the collision-induced dissociation (CID) section of a hybrid quadrupole/time-of-flight tandem mass spectrometer.
机译:电子捕获解离(ECD)通常可以保留不稳定的翻译后修饰的位置,可以成为从头进行蛋白质和多肽测序的有力方法。在此报告中,介绍了单和双糖基化,非磷酸化和磷酸化肽段的ECD产物离子质谱图,并将其与质子化对应物的ECD质谱图进行了比较。双电荷的单糖化肽段的ECD产生的序列信息与相应的双质子化肽段产生的序列信息基本相同。然而,多肽主链上几个钠结合位点的存在导致更复杂的光谱。游离酸肽前体的两性离子平衡加剧了这种情况。具有两个钠离子的双电荷和三电荷的肽的产物离子光谱由于钠结合位点的差异分布而形成的异构体的存在而变得更加复杂。发现含有一个钠的三重带电磷酸化前体(其中钠仅与PO4基团相连)与完全质子化的物种一样,可用于序列分析。尽管通常在样品制备过程中将钠加合物减至最少,但看来它们仍可以提供有用的序列信息。此外,即使在低分辨率仪器上,它们也可以直接识别肽的电荷状态。使用改装到混合四极杆/飞行时间串联质谱仪的碰撞诱导解离(CID)部分的无射频静磁池进行实验。

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