首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >A fluorescent dual labeling technique for the quantitative measurement of reduced and oxidized protein thiols in tissue samples.
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A fluorescent dual labeling technique for the quantitative measurement of reduced and oxidized protein thiols in tissue samples.

机译:荧光双标记技术,用于定量测量组织样品中还原和氧化的蛋白质硫醇。

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摘要

Oxidative stress can result in the reversible oxidation of protein thiols. Because the activity of numerous proteins is sensitive to thiol oxidation, this has the potential to affect many cellular functions. We describe a highly sensitive, quantitative labeling technique that measures global and specific protein thiol oxidative state in skeletal muscle tissue. The technique involves labeling the reduced and oxidized protein thiols with different fluorescent dyes. The resulting sample is assayed using a 96-well plate fluorimeter, or individual protein bands are separated using SDS-PAGE. We show that artifactual oxidation during sample preparation and analysis has the potential to confound results, and techniques to prevent this are described. We tested the technique by analyzing the muscles of mdx and c57 mice and found that the muscles of mdx mice were significantly (p<0.05) more oxidized (13.1+/-1.5% oxidized thiols) than those of c57 mice (8.9+/-0.7% oxidized thiols). This technique provides an effective means to measure the extent to which oxidative stress affects the oxidation of protein thiols in biological tissues.
机译:氧化应激可导致蛋白质硫醇的可逆氧化。由于许多蛋白质的活性对硫醇氧化敏感,因此有可能影响许多细胞功能。我们描述了一种高度敏感的定量标记技术,可测量骨骼肌组织中的整体和特定蛋白质硫醇氧化态。该技术涉及用不同的荧光染料标记还原和氧化的蛋白质硫醇。使用96孔板荧光计测定所得样品,或使用SDS-PAGE分离单个蛋白条带。我们表明样品制备和分析过程中的人为氧化有可能混淆结果,并介绍了防止这种情况的技术。我们通过分析mdx和c57小鼠的肌肉来测试该技术,发现mdx小鼠的肌肉氧化(13.1 +/- 1.5%氧化硫醇)的氧化能力明显强于(p <0.05)c57小鼠(8.9 +/-) 0.7%氧化的硫醇)。该技术提供了一种有效的手段来测量氧化应激影响生物组织中蛋白质硫醇氧化的程度。

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