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Analysis of Covalent Modifications of Proteins by Oxidized Phospholipids Using a Novel Method of Peptide Enrichment

机译:使用肽富集的新方法分析氧化磷脂对蛋白质的共价修饰

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Free radical-induced oxidation of phospholipids contributes significantly to pathologies associated with inflammation and oxidative stress. Detection of covalent interaction between oxidized phospholipids (oxPL) and proteins by LC-MS/MS could provide valuable information about the molecular mechanisms of oxPL effects. However, such studies are very limited because of significant challenges in detection of the comparatively low levels of oxPL-protein adducts in complex biological systems. Current approaches have several limitations, most important of which is the inability to detect protein modifications by naturally occurring oxPL. We now report, for the first time, an enrichment method that can be applied to the global analysis of protein adducts with various naturally occurring oxPL in relevant biological systems. This method exploits intrinsic properties of peptides modified by oxPL, allowing highly efficient enrichment of oxPL-modified peptides from biological samples. Very low levels of oxPL-protein adducts (<2 ppm) were detected using this enrichment method in combination with LC-MS/MS. We applied the method to several model systems, including oxidation of high density lipoprotein (HDL) and interaction of human platelets with a specific oxPL, and demonstrated its extremely high efficiency and productivity. We report multiple new modifications of apolipoproteins in HDL and proteins in human platelets.
机译:自由基诱导的磷脂氧化极大地促进了与炎症和氧化应激相关的病理。通过LC-MS / MS检测氧化磷脂(oxPL)与蛋白质之间的共价相互作用可以提供有关oxPL效应的分子机制的有价值的信息。但是,由于在复杂的生物系统中检测相对较低水平的oxPL-蛋白质加合物方面存在重大挑战,因此此类研究非常有限。当前的方法有几个局限性,其中最重要的是无法通过天然存在的oxPL检测蛋白质修饰。现在,我们首次报告了一种富集方法,该方法可用于相关生物系统中各种天然存在的oxPL的蛋白质加合物的全局分析。该方法利用了oxPL修饰的肽的内在特性,可从生物样品中高效富集oxPL修饰的肽。使用这种富集方法与LC-MS / MS结合使用,可检测到极低水平的oxPL-蛋白质加合物(<2 ppm)。我们将该方法应用于多种模型系统,包括高密度脂蛋白(HDL)的氧化以及人血小板与特定oxPL的相互作用,并证明了其极高的效率和生产率。我们报道了HDL中载脂蛋白的多种新修饰以及人类血小板中的蛋白。

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