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通过与亚稳态稀有气体原子相互作用实现单质子化肽段的碎片化

Fragmentation of singly protonated peptides via interaction with metastable rare gas atoms.

作者信息

Berkout Vadym D

机构信息

MassTech, Inc., Columbia, Maryland 21046, USA.

出版信息

Anal Chem. 2009 Jan 15;81(2):725-31. doi: 10.1021/ac802214e.

Abstract

The effects of metastable energy level and peptide sequence on the fragmentation patterns of singly charged peptide ions dissociated in collisions with metastable rare gas atoms were studied. Fragmentation spectra of singly charged peptide ions were shown to be more structure-informative and very different from those obtained in low-energy collision-induced dissociation. Unusual odd-electron radical a- and x-ions were observed. Several fragment ions corresponding to a side-chain loss were also observed, which allowed differentiation between leucine and isoleucine. The fragmentation mechanism depends on electronic energy transferred during interaction with metastable gas atoms and proceeds either via Penning ionization with formation of radical odd-electron doubly charged molecular cation or via high-energy excitation of internal degrees of freedom of the peptide cation.

摘要

研究了亚稳能级和肽序列对与亚稳稀有气体原子碰撞解离的单电荷肽离子碎裂模式的影响。单电荷肽离子的碎裂谱显示出更多的结构信息,并且与低能碰撞诱导解离中获得的谱非常不同。观察到了不寻常的奇电子自由基a-离子和x-离子。还观察到了几个对应于侧链丢失的碎片离子,这使得亮氨酸和异亮氨酸得以区分。碎裂机制取决于与亚稳气体原子相互作用期间转移的电子能量,并且通过形成自由基奇电子双电荷分子阳离子的潘宁电离或通过肽阳离子内部自由度的高能激发来进行。

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