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一种新的灵敏检测方法显示,血红蛋白在体内会发生氧化修饰。

A new sensitive assay reveals that hemoglobin is oxidatively modified in vivo.

作者信息

Vollaard Niels B J, Reeder Brandon J, Shearman Jerry P, Menu Patrick, Wilson Michael T, Cooper Chris E

机构信息

Department of Biological Sciences, University of Essex, Wivenhoe Park, Colchester, CO4 3SQ, UK.

出版信息

Free Radic Biol Med. 2005 Nov 1;39(9):1216-28. doi: 10.1016/j.freeradbiomed.2005.06.012. Epub 2005 Aug 10.

Abstract

Free radical formation in heme proteins is recognised as a factor in mediating the toxicity of peroxides in oxidative stress. As well as initiating free radical damage, heme proteins damage themselves. Under extreme conditions, where oxidative stress and low pH coincide (e.g., myoglobin in the kidney following rhabdomyolysis and hemoglobin in the CSF subsequent to subarachnoid hemorrhage), peroxide can induce covalent heme to protein cross-linking. In this paper we show that, even at neutral pH, the heme in hemoglobin is covalently modified by oxidation. The product, which we term OxHm, is a "green heme" iron chlorin with a distinct optical spectrum. OxHm formation can be quantitatively prevented by reductants of ferryl iron, e.g., ascorbate. We have developed a simple, robust, and reproducible HPLC assay to study the extent of OxHm formation in the red cell in vivo. We show that hemoglobin is oxidatively damaged even in normal blood; approximately 1 in 2,000 heme groups exist as OxHm in the steady state. We used a simple model (physical exercise) to demonstrate that OxHm increases significantly during acute oxidative stress. The exercise-induced increase is short-lived, suggesting the existence of an active mechanism for repairing or removing the damaged heme proteins.

摘要

血红素蛋白中自由基的形成被认为是介导氧化应激中过氧化物毒性的一个因素。除了引发自由基损伤外,血红素蛋白自身也会受到损害。在氧化应激和低pH值同时存在的极端条件下(例如,横纹肌溶解后肾脏中的肌红蛋白以及蛛网膜下腔出血后脑脊液中的血红蛋白),过氧化物可诱导血红素与蛋白质发生共价交联。在本文中,我们表明,即使在中性pH值下,血红蛋白中的血红素也会因氧化而发生共价修饰。我们将该产物称为OxHm,它是一种具有独特光谱的“绿色血红素”铁卟啉。亚铁血红素的还原剂(如抗坏血酸)可以定量地阻止OxHm的形成。我们开发了一种简单、可靠且可重复的HPLC测定法,以研究体内红细胞中OxHm的形成程度。我们表明,即使在正常血液中,血红蛋白也会受到氧化损伤;在稳态下,大约每2000个血红素基团中就有1个以OxHm的形式存在。我们使用一个简单的模型(体育锻炼)来证明,在急性氧化应激期间,OxHm会显著增加。运动诱导的增加是短暂的,这表明存在一种修复或去除受损血红素蛋白的活性机制。

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