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Redox proteomics: Methods for the identification and enrichment of redox-modified proteins and their applications

机译:氧化还原蛋白质组学:氧化还原修饰蛋白的鉴定和富集方法及其应用

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摘要

PTMs are defined as covalent additions to functional groups of amino acid residues in proteins like phosphorylation, glycosylation, S-nitrosylation, acetylation, methylation, lipidation, SUMOylation as well as oxidation. Oxidation of proteins has been characterized as a double-edged sword. While oxidative modifications, in particular of cysteine residues, are widely involved in the regulation of cellular homeostasis, oxidative stress resulting in the oxidation of biomolecules along with the disruption of their biological functions can be associated with the development of diseases, such as cancer, diabetes, and neurodegenerative diseases, respectively. This is also the case for advanced glycation end products, which result from chemical reactions of keto compounds such as oxidized sugars with proteins. The role of oxidative modifications under physiological and pathophysiological conditions remains largely unknown. Recently, novel technologies have been established that allow the enrichment, identification, and characterization of specific oxidative PTMs (oxPTMs). This is essential to develop strategies to prevent and treat diseases that are associated with oxidative stress. Therefore this review will focus on (i) the methods and technologies, which are currently applied for the detection, identification, and quantification of oxPTMs including the design of high throughput approaches and (ii) the analyses of oxPTMs related to physiological and pathological conditions.
机译:PTM被定义为蛋白质中氨基酸残基官能团的共价加成,例如磷酸化,糖基化,S-亚硝基化,乙酰化,甲基化,脂化,SUMO酰化以及氧化。蛋白质的氧化被描述为一把双刃剑。尽管氧化修饰,特别是半胱氨酸残基的氧化修饰广泛参与细胞稳态的调节,但是导致生物分子氧化以及其生物学功能破坏的氧化应激可能与疾病的发展有关,例如癌症,糖尿病和神经退行性疾病。对于高级糖基化终产物而言也是如此,这是由于酮化合物(例如氧化糖)与蛋白质发生化学反应而产生的。在生理和病理生理条件下氧化修饰的作用仍然是未知的。最近,已经建立了允许富集,鉴定和表征特定氧化PTM(oxPTM)的新技术。这对于制定预防和治疗与氧化应激有关的疾病的策略至关重要。因此,本综述将集中于(i)当前用于oxPTM的检测,鉴定和定量的方法和技术,包括高通量方法的设计,以及(ii)与生理和病理状况有关的oxPTM的分析。

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