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首页> 外文期刊>European journal of mass spectrometry >Electron transfer dissociation of doubly charged ions with different cationizing agents
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Electron transfer dissociation of doubly charged ions with different cationizing agents

机译:双电荷离子与不同阳离子化剂的电子转移解离

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Electron transfer dissociation (ETD) studies have been performed on a peptide and a synthetic polysaccharide doubly charged by different cationization agents. The ETD of protonated-sodiated bombesin gave rise to contiguous series of abundant c- and z-type ions that identified the complete sequence. ETD of the doubly protonated peptide produced a different fragment distribution, which also allowed for complete sequence coverage, but the relative intensities of some sequence ions were very small. Collisionally activated dissociation (CAD) of either precursor rendered limited sequence information. ETD of the sodiated-ammoniated pentamer of a starch-derived linear polysaccharide caused extensive fragmentation through cross-ring cleavages that revealed the possible position of a hydroxyethyl substituent on the saccharide ring. In contrast, ETD of the di-sodiated pentasaccharide did not produce a structure-revealing fragmentation pattern. On the other hand, CAD resulted in efficient glycosidic bond cleavages, either directly (from the sodiated-ammoniated precursor) or via multi-stage fragmentation (from the di-sodiated precursor), which indicated that hydroxyethylation occurs randomly at any saccharide repeat unit along the chain. Overall, the use of different cationizing agents complements the information available by using identical charge sites and opens or enhances ETD pathways that unveil valuable sequence or positional information.
机译:电子转移解离(ETD)研究已对由不同阳离子化剂加倍电荷的肽和合成多糖进行了研究。质子化的波姆菌素的ETD产生了一系列连续的丰富的c和z型离子,这些离子识别了完整的序列。双质子化肽的ETD产生了不同的片段分布,这也允许完整的序列覆盖,但是某些序列离子的相对强度很小。任何一种前体的碰撞激活解离(CAD)都会提供有限的序列信息。淀粉衍生的线性多糖的氨化五聚体的ETD通过交叉环裂解引起广泛的断裂,从而揭示了羟乙基取代基在糖环上的可能位置。相反,二糖基五糖的ETD不会产生揭示结构的片段化模式。另一方面,CAD可直接(从糖化的氨基化前体)或通过多阶段裂解(从二糖化的前体)进行有效的糖苷键切割,这表明羟乙基化在沿糖的任何重复单元随机发生连锁,链条。总体而言,使用不同的阳离子化剂可通过使用相同的电荷位点来补充可用的信息,并开放或增强揭示有价值的序列或位置信息的ETD途径。

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