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白蛋白硫醇氧化为亚磺酸及其在血管内隔室中的意义。

Oxidation of the albumin thiol to sulfenic acid and its implications in the intravascular compartment.

作者信息

Turell L, Carballal S, Botti H, Radi R, Alvarez B

机构信息

Laboratorio de Enzimología, Facultad de Ciencias, Universidad de República, Montevideo, Uruguay.

出版信息

Braz J Med Biol Res. 2009 Apr;42(4):305-11. doi: 10.1590/s0100-879x2009000400001.

Abstract

Human serum albumin (HSA) is the most abundant protein in the intravascular compartment. It possesses a single thiol, Cys34, which constitutes ~80% of the total thiols in plasma. This thiol is able to scavenge plasma oxidants. A central intermediate in this potential antioxidant activity of human serum albumin is sulfenic acid (HSA-SOH). Work from our laboratories has demonstrated the formation of a relatively stable sulfenic acid in albumin through complementary spectrophotometric and mass spectrometric approaches. Recently, we have been able to obtain quantitative data that allowed us to measure the rate constants of sulfenic acid reactions with molecules of analytical and biological interest. Kinetic considerations led us to conclude that the most likely fate for sulfenic acid formed in the plasma environment is the reaction with low molecular weight thiols to form mixed disulfides, a reversible modification that is actually observed in ~25% of circulating albumin. Another possible fate for sulfenic acid is further oxidation to sulfinic and sulfonic acids. These irreversible modifications are also detected in the circulation. Oxidized forms of albumin are increased in different pathophysiological conditions and sulfenic acid lies in a mechanistic junction, relating oxidizing species to final thiol oxidation products.

摘要

人血清白蛋白(HSA)是血管内 compartment 中含量最丰富的蛋白质。它具有一个巯基,即 Cys34,其占血浆中总巯基的约 80%。该巯基能够清除血浆中的氧化剂。人血清白蛋白这种潜在抗氧化活性的一个核心中间体是亚磺酸(HSA-SOH)。我们实验室的研究工作通过互补的分光光度法和质谱法证明了白蛋白中相对稳定的亚磺酸的形成。最近,我们能够获得定量数据,从而能够测量亚磺酸与具有分析和生物学意义的分子反应的速率常数。动力学考量使我们得出结论,在血浆环境中形成的亚磺酸最可能的归宿是与低分子量巯基反应形成混合二硫键,这是一种可逆修饰,实际上在约 25%的循环白蛋白中观察到。亚磺酸的另一种可能归宿是进一步氧化为亚磺酸和磺酸。这些不可逆修饰在循环中也能被检测到。在不同的病理生理条件下,白蛋白的氧化形式会增加,而亚磺酸处于一个机制节点,将氧化物种与最终的巯基氧化产物联系起来。

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