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四价钒释放铁蛋白铁,从而刺激钒依赖性脂质过氧化。

Tetravalent vanadium releases ferritin iron which stimulates vanadium-dependent lipid peroxidation.

作者信息

Monteiro H P, Winterbourn C C, Stern A

机构信息

Department of Pathology, Christchurch School of Medicine, New Zealand.

出版信息

Free Radic Res Commun. 1991;12-13 Pt 1:125-9. doi: 10.3109/10715769109145776.

Abstract

The iron storage protein, ferritin, represents a possible source of iron for oxidative reactions in biological systems. It has been shown that superoxide and several xenobiotic free radicals can release iron from ferritin by a reductive mechanism. Tetravalent vanadium (vanadyl) reacts with oxygen to generate superoxide and pentavalent vanadium (vanadate). This led to the hypothesis that vanadyl causes the release of iron from ferritin. Therefore, the ability of vanadyl and vanadate to release iron from ferritin was investigated. Iron release was measured by monitoring the generation of the Fe(2+)-ferrozine complex. It was found that vanadyl but not vanadate was able to mobilize ferritin iron in a concentration dependent fashion. Initial rates, and iron release over 30 minutes, were unaffected by the addition of superoxide dismutase. Glutathione or vanadate added in relative excess to the concentration of vanadyl, inhibited iron release up to 45%. Addition of ferritin at the concentration used for measuring iron release prevented vanadyl-induced NADH oxidation. Vanadyl promoted lipid peroxidation in phospholipid liposomes. Addition of ferritin to the system stimulated lipid peroxidation up to 50% above that with vanadyl alone. Ferritin alone did not promote significant levels of lipid peroxidation.

摘要

铁储存蛋白——铁蛋白,是生物系统中氧化反应可能的铁来源。研究表明,超氧化物和几种外源性自由基可通过还原机制从铁蛋白中释放铁。四价钒(钒酰)与氧气反应生成超氧化物和五价钒(钒酸盐)。由此提出了钒酰导致铁从铁蛋白中释放的假说。因此,研究了钒酰和钒酸盐从铁蛋白中释放铁的能力。通过监测Fe(2+)-亚铁嗪复合物的生成来测定铁的释放。结果发现,钒酰而非钒酸盐能够以浓度依赖的方式动员铁蛋白铁。超氧化物歧化酶的添加不影响初始速率以及30分钟内的铁释放。相对于钒酰浓度相对过量添加的谷胱甘肽或钒酸盐,可将铁释放抑制高达45%。以用于测量铁释放的浓度添加铁蛋白可阻止钒酰诱导的NADH氧化。钒酰促进磷脂脂质体中的脂质过氧化。向系统中添加铁蛋白可使脂质过氧化比仅添加钒酰时高出50%。单独的铁蛋白不会促进显著水平的脂质过氧化。

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