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使用基质辅助激光解吸电离质谱(MALDI MS)对β-酪蛋白进行源内衰变实验中观察到的时间框架相关碎片离子

Timeframe Dependent Fragment Ions Observed in In-Source Decay Experiments with β-Casein Using MALDI MS.

作者信息

Sekiya Sadanori, Nagoshi Keishiro, Iwamoto Shinichi, Tanaka Koichi, Takayama Mitsuo

机构信息

Koichi Tanaka Mass Spectrometry Research Laboratory, Shimadzu Corporation, Nakagyo-ku, Kyoto, 604-8511, Japan.

出版信息

J Am Soc Mass Spectrom. 2015 Sep;26(9):1588-98. doi: 10.1007/s13361-015-1173-3. Epub 2015 Jul 7.

Abstract

The fragment ions observed with time-of-flight (TOF) and quadrupole ion trap (QIT) TOF mass spectrometers (MS) combined with matrix-assisted laser desorption/ionization in-source decay (MALDI-ISD) experiments of phosphorylated analytes β-casein and its model peptide were compared from the standpoint of the residence timeframe of analyte and fragment ions in the MALDI ion source and QIT cell. The QIT-TOF MS gave fragment c-, z'-, z-ANL, y-, and b-ions, and further degraded fragments originating from the loss of neutrals such as H(2)O, NH(3), CH(2)O (from serine), C2H4O (from threonine), and H(3)PO(4), whereas the TOF MS merely showed MALDI source-generated fragment c-, z'-, z-ANL, y-, and w-ions. The fragment ions observed in the QIT-TOF MS could be explained by the injection of the source-generated ions into the QIT cell or a cooperative effect of a little internal energy deposition, a long residence timeframe (140 ms) in the QIT cell, and specific amino acid effects on low-energy CID, whereas the source-generated fragments (c-, z'-, z-ANL, y-, and w-ions) could be a result of prompt radical-initiated fragmentation of hydrogen-abundant radical ions M + H + H and M + H - H within the 53 ns timeframe, which corresponds to the delayed extraction time. The further degraded fragment b/y-ions produced in the QIT cell were confirmed by positive- and negative-ion low-energy CID experiments performed on the source-generated ions (c-, z'-, and y-ions). The loss of phosphoric acid (98 u) from analyte and fragment ions can be explained by a slow ergodic fragmentation independent of positive and negative charges.

摘要

从分析物和碎片离子在基质辅助激光解吸/电离源内衰变(MALDI-ISD)实验的飞行时间(TOF)和四极离子阱(QIT)TOF质谱仪(MS)中的停留时间框架的角度,比较了磷酸化分析物β-酪蛋白及其模型肽的MALDI-ISD实验中观察到的碎片离子。QIT-TOF MS产生了碎片c-、z'-、z-ANL、y-和b-离子,以及源自中性分子损失(如H₂O、NH₃、CH₂O(来自丝氨酸)、C₂H₄O(来自苏氨酸)和H₃PO₄)的进一步降解的碎片,而TOF MS仅显示了MALDI源产生的碎片c-、z'-、z-ANL、y-和w-离子。在QIT-TOF MS中观察到的碎片离子可以通过将源产生的离子注入QIT单元来解释,或者是少量内能沉积、在QIT单元中的长停留时间框架(140毫秒)以及特定氨基酸对低能碰撞诱导解离(CID)的协同作用,而源产生的碎片(c-、z'-、z-ANL、y-和w-离子)可能是在53纳秒时间框架内富含氢的自由基离子M + H + HM + H - H的快速自由基引发的碎片化的结果,这对应于延迟提取时间。通过对源产生的离子(c-、z'-和y-离子)进行的正离子和负离子低能CID实验,证实了在QIT单元中产生的进一步降解的碎片b/y-离子。分析物和碎片离子中磷酸(98 u)的损失可以通过与正负电荷无关的缓慢遍历碎片化来解释。

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