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Proteome-wide detection and quantitative analysis of irreversible cysteine oxidation using long column UPLC-pSRM

机译:使用长柱UPLC-pSRM对蛋白质组进行不可逆半胱氨酸氧化的蛋白质组检测和定量分析

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摘要

Reactive oxygen species (ROS) play an important role in normal biological functions and pathological processes. ROS is one of the driving forces for oxidizing proteins, especially on cysteine thiols. The labile, transient, and dynamic nature of oxidative modifications poses enormous technical challenges for both accurate modification site determination and quantitation of cysteine thiols. The present study describes a mass spectrometry-based approach that allows effective discovery and quantification of irreversible cysteine modifications. The utilization of a long reverse phase column provides high-resolution chromatography to separate different forms of modified cysteine thiols from protein complexes or cell lysates. This FT-MS approach enabled detection and quantitation of ATM complex cysteine sulfoxidation states using Skyline MS1 filtering. When we applied the long column UPLC-MS/MS analysis, 61 and 44 peptides from cell lysates and cell were identified with cysteine modifications in response to in vitro and in vivo H2O2 oxidation, respectively. Long column Ultra High Pressure Liquid Chromatography -pseudo Selected Reaction Monitoring (UPLC-pSRM) was then developed to monitor the oxidative level of cysteine thiols in cell lysate under varying concentrations of H2O2 treatment. From UPLC-pSRM analysis, the dynamic conversion of sulfinic (S-O2H) and sulfonic acid (S-O3H) was observed within nucleoside diphosphate kinase (Nm23-H1) and heat shock 70 kDa protein 8 (Hsc70). These methods are suitable for proteome-wide studies, providing a highly sensitive, straight-forward approach to identify proteins containing redox-sensitive cysteine thiols in biological systems.
机译:活性氧(ROS)在正常的生物学功能和病理过程中起重要作用。 ROS是氧化蛋白质的驱动力之一,尤其是对半胱氨酸硫醇的氧化。氧化修饰的不稳定,短暂和动态性质对精确修饰位点的确定和半胱氨酸硫醇的定量提出了巨大的技术挑战。本研究描述了一种基于质谱的方法,该方法可以有效发现和定量不可逆半胱氨酸修饰。长反相色谱柱的使用提供了高分辨率色谱,可从蛋白质复合物或细胞裂解物中分离出不同形式的修饰半胱氨酸硫醇。这种FT-MS方法可使用Skyline MS1过滤对ATM复杂的半胱氨酸硫氧化态进行检测和定量。当我们使用长柱UPLC-MS / MS分析时,分别从细胞裂解物和细胞中鉴定出61和44个肽,分别响应于体内和体外H2O2氧化而具有半胱氨酸修饰。然后开发了长柱超高压液相色谱-拟选择反应监测(UPLC-pSRM),以监测在不同浓度的H2O2处理下细胞裂解物中半胱氨酸硫醇的氧化水平。根据UPLC-pSRM分析,在核苷二磷酸激酶(Nm23-H1)和热休克70 kDa蛋白8(Hsc70)中观察到亚磺酸(S-O2H)和磺酸(S-O3H)的动态转化。这些方法适用于蛋白质组范围的研究,提供了一种高度敏感,简单的方法来鉴定生物系统中含有氧化还原敏感的半胱氨酸硫醇的蛋白质。

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