Mass Spectrometry Centre, QOPNA, Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.
J Proteomics. 2013 Oct 30;92:110-31. doi: 10.1016/j.jprot.2013.06.004. Epub 2013 Jun 14.
Protein lipoxidation refers to the modification by electrophilic lipid oxidation products to form covalent adducts, which for many years has been considered as a deleterious consequence of oxidative stress. Oxidized lipids or phospholipids containing carbonyl moieties react readily with lysine to form Schiff bases; alternatively, oxidation products containing α,β-unsaturated moieties are susceptible to nucleophilic attack by cysteine, histidine or lysine residues to yield Michael adducts, overall corresponding to a large number of possible protein adducts. The most common detection methods for lipoxidized proteins take advantage of the presence of reactive carbonyl groups to add labels, or use antibodies. These methods have limitations in terms of specificity and identification of the modification site. The latter question is satisfactorily addressed by mass spectrometry, which enables the characterization of the adduct structure. This has allowed the identification of lipoxidized proteins in physiological and pathological situations. While in many cases lipoxidation interferes with protein function, causing inhibition of enzymatic activity and increased immunogenicity, there are a small number of cases where lipoxidation results in gain of function or activity. For certain proteins lipoxidation may represent a form of redox signaling, although more work is required to confirm the physiological relevance and mechanisms of such processes. This article is part of a Special Issue entitled: Posttranslational Protein modifications in biology and Medicine.
蛋白质脂氧化是指亲电脂质氧化产物修饰形成共价加合物,多年来一直被认为是氧化应激的有害后果。含有羰基部分的氧化脂质或磷脂与赖氨酸反应迅速形成希夫碱;或者,含有α,β-不饱和部分的氧化产物易受半胱氨酸、组氨酸或赖氨酸残基的亲核攻击,生成迈克尔加合物,总体上对应于大量可能的蛋白质加合物。脂氧化蛋白质最常用的检测方法利用反应性羰基的存在添加标记,或使用抗体。这些方法在特异性和修饰部位的鉴定方面存在局限性。后者的问题可以通过质谱法得到满意的解决,质谱法可以对加合物结构进行表征。这使得在生理和病理情况下能够鉴定脂氧化蛋白质。虽然在许多情况下,脂氧化会干扰蛋白质的功能,导致酶活性抑制和免疫原性增加,但也有少数情况下脂氧化会导致功能或活性增加。对于某些蛋白质,脂氧化可能代表一种氧化还原信号,尽管需要更多的工作来确认这种过程的生理相关性和机制。本文是题为“生物学和医学中的翻译后蛋白质修饰”的特刊的一部分。