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Gene and Protein Responses of Human Monocytes to Extracellular Cysteine Redox Potential

机译:人类单核细胞对细胞外半胱氨酸氧化还原电位的基因和蛋白质反应。

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摘要

The redox potential of the major thiol/disulfide couple, cysteine (Cys) and its disulfide cystine (CySS), in plasma (EhCys) is oxidized in association with oxidative stress, and oxidized EhCys is associated with cardiovascular disease risk. In vitro exposure of monocytes to oxidized EhCys increases expression of the proinflammatory cytokine, interleukin-1β (IL-1β), suggesting that EhCys could be a mechanistic link between oxidative stress and chronic inflammation. Because cell membranes contain multiple Cys-rich proteins, which could be sensitive to EhCys, we sought to determine whether EhCys specifically affects proinflammatory signaling or has other effects on monocytes. We used microarray analysis and mass spectrometry–based proteomics to evaluate global changes in protein redox state, gene expression, and protein abundance in monocytes in response to EhCys. Pathway analysis results revealed that in addition to IL-1β-related pathways, components of stress/detoxification and cell death pathways were increased by oxidized EhCys, while components of cell growth and proliferation pathways were increased by a reduced potential. Phenotypic studies confirmed that a cell stress response occurred with oxidized Eh and that cell proliferation was stimulated with reduced Eh. Therefore, plasma EhCys provides a control over monocyte phenotype, which could contribute to cardiovascular disease risk and provide a novel therapeutic target for disease prevention.
机译:血浆(EhCys)中主要硫醇/二硫键对(半胱氨酸(Cys)及其二硫键胱氨酸(CySS))的氧化还原电位与氧化应激相关,被氧化,而氧化的EhCys与心血管疾病风险相关。单核细胞在体外暴露于氧化的EhCys会增加促炎细胞因子白介素1β(IL-1β)的表达,这表明EhCys可能是氧化应激与慢性炎症之间的机制联系。由于细胞膜含有多种可能对EhCys敏感的富含Cys的蛋白质,因此我们试图确定EhCys是否特异性影响促炎信号传导或对单核细胞具有其他作用。我们使用微阵列分析和基于质谱的蛋白质组学来评估响应EhCys的单核细胞中蛋白质氧化还原状态,基因表达和蛋白质丰度的总体变化。途径分析结果显示,除了IL-1β相关途径外,氧化EhCys还增加了应激/解毒和细胞死亡途径的成分,而电位降低了细胞生长和增殖途径的成分。表型研究证实,氧化的Eh引起细胞应激反应,而Eh降低则刺激细胞增殖。因此,血浆EhCys提供了对单核细胞表型的控制,这可能会增加心血管疾病的风险,并为疾病预防提供新的治疗目标。

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