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4-HNE Adduct Stability Characterized by Collision-Induced Dissociation and Electron Transfer Dissociation Mass Spectrometry

机译:4-HNE加合物稳定性的碰撞诱导解离和电子转移解离质谱特点

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摘要

4-hydroxynonenal (4-HNE) alters numerous proteomic and genomic processes. Understanding chemical mechanisms of 4-HNE interactions with biomolecules and their respective stabilities may lead to new discoveries in biomarkers for numerous diseases of oxidative stress. Collision-induced dissociation (CID) and electron transfer dissociation (ETD) MS/MS were utilized to examine the stability of a 4-HNE-Cys Michael adduct. CID conditions resulted in the neutral loss of 4-HNE, also known as a retro-Michael addition reaction (RMA). Consequently, performing ETD fragmentation on this same adduct did not result in RMA. Interestingly, 4-HNE adduct reduction via sodium borohydride (NaBH4) treatment stabilized against the CID induced RMA. In a direct comparison of three forms of 4-HNE adducts, computational modeling revealed sizeable shifts in the shape and orientation of the lowest unoccupied molecular orbital (LUMO) density around the 4-HNE-Cys moiety. These findings demonstrate that ETD MS/MS analysis can be used to improve the detection of 4-HNE-protein modifications by preventing RMA reactions from occurring.
机译:4-羟基诺(4-HNE)改变了许多蛋白质组学和基因组过程。理解4-HNE与生物分子相互作用的化学机制及其各自的稳定性可能导致生物标志物的新发现,用于氧化胁迫的许多疾病。碰撞诱导的解离(CID)和电子转移解离(ETD)MS / MS用于检查4-HNE-CYS MICHAEL加合物的稳定性。 CID条件导致4-HNE的中性损失,也称为复古 - 迈克尔添加反应(RMA)。因此,在同一加合物上进行ETD碎片不会导致RMA。有趣的是,通过硼氢化钠(NABH4)处理稳定在CID诱导的RMA中的4-HNE加合物加合物。在直接比较三种形式的4-HNE加合物,计算建模揭示了在4-HNE-Cys部分周围的最低未占用的分子轨道(LumO)密度的形状和取向的大量变化。这些发现证明,ETD MS / MS分析可用于通过防止发生RMA反应来改善4-HNE蛋白修饰的检测。

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