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Gas-Phase Transformation of Phosphatidylcholine Cations to Structurally Informative Anions via Ion/Ion Chemistry

机译:通过离子/离子化学作用将磷脂酰胆碱阳离子气相转化为结构上具有指导意义的阴离子

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摘要

Gas-phase transformation of synthetic phosphatidylcholine (PC) monocations to structurally informative anions is demonstrated via ion/ion reactions with doubly deprotonated 1,4-phenylenedipropionic acid (PDPA). Two synthetic PC isomers, 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (PC16:0/18:1) and 1-oleoyl-2-palmitoyl-sn-glycero-3-phosphocholine (PC18:1/16:0), were subjected to this ion/ion chemistry. The product of the ion/ion reaction is a negatively charged complex, \[PC + PDPA - H](-). Collisional activation of the long-lived complex causes transfer of a proton and methyl cation to PDPA, generating \[PC - CH3](-). Subsequent collisional activation of the demethylated PC anions produces abundant fatty acid carboxylate anions and low-abundance acyl neutral losses as free acids and ketenes. Product ion spectra of \[PC - CH3](-) suggest favorable cleavage at the sn-2 position over the sn-1 due to distinct differences in the relative abundances. In contrast, collisional activation of PC cations is absent of abundant fatty acid chain-related product ions and typically indicates only the lipid class via formation of the phosphocholine cation. A solution phase method to produce the gas-phase adducted PC anion is also demonstrated. Product ion spectra derived from the solution phase method are similar to the results generated via ion/ion chemistry. This work demonstrates a gas-phase means to increase structural characterization of phosphatidylcholines via ion/ion chemistry.\ud\ud\udGrant Number\ud\udARC/CE0561607, ARC/DP120102922
机译:通过与双去质子化的1,4-苯二丙酸(PDPA)的离子/离子反应,证明了合成磷脂酰胆碱(PC)单阳离子的气相转化为结构上有益的阴离子。两种合成的PC异构体,1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱(PC16:0/18:1)和1-油酰基-2-棕榈酰基-sn-甘油-3-磷酸胆碱(PC18:1 / 16:0),经受该离子/离子化学作用。离子/离子反应的产物是带负电荷的配合物\ [PC + PDPA-H](-)。寿命长的复合物的碰撞激活导致质子和甲基阳离子转移到PDPA,生成\ [PC-CH3](-)。随后,脱甲基PC阴离子的碰撞活化产生大量的脂肪酸羧酸根阴离子和低丰度的酰基中性损失,如游离酸和乙烯酮。 \ [PC-CH3](-)的产物离子光谱表明,由于相对丰度存在明显差异,因此在sn-1上方的sn-2位置发生了有利的裂解。相反,大量阳离子链相关的产物离子不存在PC阳离子的碰撞活化作用,并且通常仅通过磷脂酰胆碱阳离子的形成指示脂质类别。还介绍了一种液相法生产气相加成的PC阴离子。从溶液相方法获得的产物离子光谱类似于通过离子/离子化学产生的结果。这项工作演示了一种通过离子/离子化学方法增加磷脂酰胆碱的结构表征的气相方法。\ ud \ ud \ ud授予数\ ud \ udARC / CE0561607,ARC / DP120102922

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