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Proteomic Mapping of 4-Hydroxynonenal Protein Modification Sites by Solid-Phase Hydrazide Chemistry and Mass Spectrometry

机译:固相酰肼化学和质谱法对4-羟基壬醛蛋白修饰位点进行蛋白质组学定位

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The modification of proteins by the cytotoxic, reactivealdehyde 4-hydroxynonenal (HNE) is known to alter protein function and impair cellular mechanisms. In order to identify susceptible amino acid sites of HNE modification within complex biological mixtures by microcapillary liquid chromatography and linear ion trap tandem mass spectrometry, we have developed a solid-phase capture and release strategy that utilizes reversible hydrazide chemistry to enrich HNE-modified peptides. To maximize the detection of fragment ions diagnostic of HNE modification, both neutral loss-dependent acquisition of MS/MS/MS spectra and the pulsed Q dissociation operation mode were employed. When the solid-phase hydrazide enrichment strategy was applied to a yeast lysate treated with HNE, 125 distinct amino acid sites of HNE modification were mapped on 67 different proteins. The endogenous susceptibility of many of these proteins to HNE modification was demonstrated by analyzing HNE-treated yeast cell cultures with a complementary biotin hydrazide enrichment strategy. Further analysis revealed that the majority of amino acid sites susceptible to HNE modification were histidine residues, with most of these sites being flanked by basic amino acid residues, and predicted to be solvent exposed. These results demonstrate the effectiveness of this novel strategy as a general platform for proteome-scale identification of amino acid sites susceptible to HNE modification from within complex mixtures.
机译:已知通过细胞毒性的反应性醛基4-羟基壬烯醛(HNE)修饰蛋白质会改变蛋白质功能并损害细胞机制。为了通过微毛细管液相色谱和线性离子阱串联质谱法鉴定复杂生物混合物中HNE修饰的敏感氨基酸位点,我们开发了一种固相捕获和释放策略,该策略利用可逆酰肼化学富集HNE修饰的肽。为了最大程度地检测诊断HNE修饰的碎片离子,同时采用了依赖中性损耗的MS / MS / MS光谱采集和脉冲Q解离操作模式。当将固相酰肼富集策略应用于用HNE处理的酵母裂解液时,HNE修饰的125个不同氨基酸位点被映射到67种不同的蛋白质上。通过使用补充的生物素酰肼富集策略分析经HNE处理的酵母细胞培养物,证明了许多这些蛋白对HNE修饰的内源敏感性。进一步的分析表明,易受HNE修饰影响的大多数氨基酸位点是组氨酸残基,其中大多数位点旁侧是碱性氨基酸残基,并预计会被溶剂暴露。这些结果证明了这种新颖策略作为蛋白质组学规模识别复杂混合物中易受HNE修饰的氨基酸位点的通用平台的有效性。

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