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Unbiased Identification of Proteins Covalently Modified by Complex Mixtures of Peroxidized Lipids Using a Combination of Electrophoretic Mobility Band Shift with Mass Spectrometry

机译:结合电泳迁移率谱与质谱法对过氧化脂质复杂混合物共价修饰的蛋白质进行无偏鉴定

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摘要

Covalent modification of functionally important cell proteins by lipid oxidation products (LOPs) is a known mechanism initiating pathological consequences of oxidative stress. Identification of new proteins covalently modified by electrophilic lipids can be performed by a combination of chemical, immunological, and mass spectrometry-based methods, but requires prior knowledge either on the exact molecular structure of LOPs (e.g., 4-hydroxynonenal) or candidate protein targets. However, under the conditions of oxidative stress in vivo, a complex mixture of proteins (e.g., cytosolic proteome) reacts with a complex mixture of LOPs. Here we describe a method for detection of lipid-modified proteins that does not require an a priori knowledge on the chemical structure of LOPs or identity of target proteins. The method is based on the change of electrophoretic mobility of lipid-modified proteins, which is induced by conformational changes and cross-linking with other proteins. Abnormally migrating proteins are detected by mass spectrometry-based protein peptide sequencing. We applied this method to study effects of oxidized palmitoyl-arachidonoyl-phosphatidylcholine (OxPAPC) on endothelial cells. Several known, but also many new, OxPAPC-binding proteins were identified. We expect that this technically relatively simple method can be widely applied for label-free analysis of lipid-protein interactions in complex protein samples treated with different LOPs.
机译:脂质氧化产物(LOP)对功能重要的细胞蛋白进行共价修饰是引发氧化应激病理后果的已知机制。可以通过化学,免疫和质谱方法的结合来鉴定被亲电脂质共价修饰的新蛋白质,但是需要有关LOP的确切分子结构(例如4-羟基壬烯醛)或候选蛋白质靶标的先验知识。然而,在体内氧化应激的条件下,蛋白质的复杂混合物(例如,胞质蛋白质组)与LOP的复杂混合物反应。在这里,我们描述了一种检测脂质修饰蛋白的方法,该方法不需要对LOPs的化学结构或目标蛋白的身份有先验知识。该方法基于脂质修饰的蛋白质的电泳迁移率变化,该变化是由构象变化和与其他蛋白质的交联引起的。通过基于质谱的蛋白质肽测序可检测异常迁移的蛋白质。我们应用这种方法来研究氧化的棕榈酰-花生四烯酰基-磷脂酰胆碱(OxPAPC)对内皮细胞的影响。鉴定了几种已知的但也许多新的OxPAPC结合蛋白。我们希望这种技术上相对简单的方法可以广泛应用于无标签分析不同LOP处理的复杂蛋白质样品中的脂质-蛋白质相互作用。

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