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首页> 外文期刊>American Journal of Physiology >Vnteqrative Omics, Bioloqical Sciences Division, Pacific Northwest National Laboratory, Richland, Washington and
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Vnteqrative Omics, Bioloqical Sciences Division, Pacific Northwest National Laboratory, Richland, Washington and

机译:Vnteqrative omics,生物科学科学师,太平洋西北国家实验室,Richland,华盛顿和

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The thiol redox proteome refers to all proteins whose cysteine thiols are subjected to various redox-dependent posttranslational modifications (PTMs) including S-glutathionylation (SSG), S-nitrosylation (SNO), S-sulfenylation (SOH), and S-sulfhydration (SSH). These modifications can impact various aspects of protein function such as activity, binding, conformation, localization, and interactions with other molecules. To identify novel redox proteins in signaling and regulation, it is highly desirable to have robust redox proteomics methods that can provide global, site-specific, and stoichiometric quantification of redox PTMs. Mass spectrometry (MS)-based redox proteomics has emerged as the primary platform for broad characterization of thiol PTMs in cells and tissues. Herein, we review recent advances in MS-based redox proteomics approaches for quantitative profiling of redox PTMs at physiological or oxidative stress conditions and highlight some recent applications. Considering the relative maturity of available methods, emphasis will be on two types of modifications: 1) total oxidation (i.e., all reversible thiol modifications), the level of which represents the overall redox state, and 2) S-glutathionylation, a major form of reversible thiol oxidation. We also discuss the significance of stoichiometric measurements of thiol PTMs as well as future perspectives toward a better understanding of cellular redox regulatory networks in cells and tissues.
机译:巯基氧化还原蛋白质组是指其半胱氨酸巯基受到各种氧化还原依赖性翻译后修饰(PTM)的所有蛋白质,包括S-谷胱甘肽化(SSG)、S-亚硝基化(SNO)、S-磺酰化(SOH)和S-磺酰化(SSH)。这些修饰可以影响蛋白质功能的各个方面,例如活性、结合、构象、定位以及与其他分子的相互作用。为了在信号传导和调控中识别新的氧化还原蛋白质,非常需要有强大的氧化还原蛋白质组学方法,能够提供氧化还原PTM的全局、位点特异性和化学计量量化。基于质谱(MS)的氧化还原蛋白质组学已成为细胞和组织中广泛表征巯基PTM的主要平台。在此,我们回顾了基于质谱的氧化还原蛋白质组学方法在生理或氧化应激条件下对氧化还原PTM进行定量分析的最新进展,并强调了一些最新的应用。考虑到可用方法的相对成熟度,重点将放在两种类型的修饰上:1)总氧化(即所有可逆硫醇修饰),其水平代表整体氧化还原状态;2)S-谷胱甘肽化,可逆硫醇氧化的主要形式。我们还讨论了硫醇PTM化学计量测量的意义,以及对更好地理解细胞和组织中的细胞氧化还原调节网络的未来展望。

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