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亚铁血红蛋白在多发性硬化症发病机制中的潜在作用:氧化应激和细胞外高铁血红蛋白或其降解产物对髓鞘成分的影响。

Potential role of ferric hemoglobin in MS pathogenesis: Effects of oxidative stress and extracellular methemoglobin or its degradation products on myelin components.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road East, Guelph, Ontario, Canada N1G 2W1.

Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road East, Guelph, Ontario, Canada N1G 2W1; Department of Human Genetics, McGill University, Montréal, Québec, Canada.

出版信息

Free Radic Biol Med. 2017 Nov;112:494-503. doi: 10.1016/j.freeradbiomed.2017.08.022. Epub 2017 Aug 31.

Abstract

There is a well-documented relationship between cerebral vasculature and multiple sclerosis (MS) lesions: abnormal accumulations of iron have been found in the walls of the dilated veins in cerebral MS plaques. The source of this iron is unknown, but could be related to the recognized phenomenon of capillary and venous hemorrhages leading to blood extravasation. In turn, hemorrhaging leading to hemolysis results in extracellular release of hemoglobin, a reactive molecule that could induce local oxidative stress, inflammation, and tissue damage. Our previous studies with a reduced form of hemoglobin (oxyHb) have demonstrated its ability to cause extensive lipid and protein oxidation in vitro, which would result in membrane destabilization. Here, we investigated in further detail the mechanism by which the more abundant oxidized form of extracellular hemoglobin (metHb), and dissociated hemin, cause direct oxidative damage to myelin components, specifically membrane-mimetic lipid vesicles and myelin basic protein (MBP), a highly-abundant protein in the CNS. Oxidation of lipids was assessed by the formation of conjugated diene/triene and malondialdehyde, and oxidation of MBP was demonstrated by the bityrosine formation and by the change in protein mass. Our results show that metHb causes oxidative damage to MBP and myelin lipids, partly by transferring its hemin moiety to protein and lipid, but mostly as an intact protein possibly via formation of a ferryl radical. These results elucidating the mechanism of extracellular hemoglobin-induced oxidative damage to myelin components support the need for further research into vascular pathology in MS pathogenesis, to gain insight into the role of iron deposits and/or in stimulation of different comorbidities associated with the disease.

摘要

脑血管与多发性硬化症(MS)病变之间存在明确的关系:在脑 MS 斑块的扩张静脉壁中发现了异常积聚的铁。这种铁的来源尚不清楚,但可能与已认识到的毛细血管和静脉出血导致血液外渗的现象有关。反过来,出血导致溶血会导致血红蛋白的细胞外释放,这是一种反应性分子,可诱导局部氧化应激、炎症和组织损伤。我们之前使用血红蛋白的还原形式(oxyHb)进行的研究表明,它能够在体外引起广泛的脂质和蛋白质氧化,从而导致膜不稳定。在这里,我们更详细地研究了细胞外血红蛋白的氧化形式(metHb)和游离血红素引起髓鞘成分(特别是膜模拟脂质体和髓鞘碱性蛋白(MBP))直接氧化损伤的机制,MBP 是中枢神经系统中含量丰富的蛋白质。通过形成共轭二烯/三烯和丙二醛来评估脂质的氧化,通过形成双酪氨酸和蛋白质质量的变化来证明 MBP 的氧化。我们的结果表明,metHb 导致 MBP 和髓鞘脂质发生氧化损伤,部分原因是其血红素部分转移到蛋白质和脂质上,但主要是作为完整的蛋白质,可能是通过形成铁氧自由基。这些阐明细胞外血红蛋白引起髓鞘成分氧化损伤的机制的结果支持进一步研究 MS 发病机制中的血管病理学的必要性,以深入了解铁沉积的作用和/或刺激与该疾病相关的不同合并症。

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