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Mechanistic insights into intramolecular phosphate group transfer during collision induced dissociation of phosphopeptides

机译:碰撞诱导磷酸肽诱导解剖中分子内磷酸群转移的机械洞察

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摘要

We report on the rearrangement chemistry of model phosphorylated peptides during collision-induced dissociation (CID), where intramolecular phosphate group transfers are observed from donor to acceptor residues. Such "scrambling" could result in inaccurate modification localization, potentially leading to misidentifications. Systematic studies presented herein provide mechanistic insights for the unusually high phosphate group rearrangements presented some time ago by Reid and coworkers (Proteomics 2013, 13 [6], 964-973). It is postulated here that a basic residue like histidine can play a key role in mediating the phosphate group transfer by deprotonating the serine acceptor site. The proposed mechanism is consistent with the observation that fast collisional activation by collision-cell CID and higher-energy collisional dissociation (HCD) can shut down rearrangement chemistry. Additionally, the rearrangement chemistry is highly dependent on the charge state of the peptide, mirroring previous studies that less rearrangement is observed under mobile proton conditions.
机译:我们在碰撞诱导的解离(CID)期间报告模型磷酸化肽的重排化学,其中从供体到受体残留物中观察分子内磷酸酯基转移。这种“加扰”可能导致修改定位不准确,可能导致误识别。本文提出的系统研究为reid and coworkers(蛋白质组学2013,13,964-973)提供了一段时间前呈现的异常高磷酸盐组重排的机械洞察力。在此发布于这里,基本残留物等组氨酸可以通过使丝氨酸受体部位反驳介导磷酸基团转移来发挥关键作用。该提出的机制与观察结果一致,即通过碰撞细胞CID和更高能量的碰撞解离(HCD)的快速碰撞激活可以关闭重排化学。另外,重排化学高度依赖于肽的充电状态,镜像先前的研究,在移动质子条件下观察到更少的重新排列。

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