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A vicious cycle of bisretinoid formation and oxidation relevant to recessive Stargardt disease

机译:与隐性晕术疾病相关的双滴水蛋白形成和氧化的恶性循环

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摘要

The ability of iron to transfer electrons enables the contribution of this metal to a variety of cellular activities even as the redox properties of iron are also responsible for the generation of hydroxyl radicals (•OH), the most destructive of the reactive oxygen species. We previously showed that iron can promote the oxidation of bisretinoid by generating highly reactive hydroxyl radical (•OH). Now we report that preservation of iron regulation in the retina is not sufficient to prevent iron-induced bisretinoid oxidative degradation when blood iron levels are elevated in liver-specific hepcidin knockout mice. We obtained evidence for the perpetuation of Fenton reactions in the presence of the bisretinoid A2E and visible light. On the other hand, iron chelation by deferiprone was not associated with changes in postbleaching recovery of 11-cis-retinal or dark-adapted ERG b-wave amplitudes indicating that the activity of Rpe65, a rate-determining visual cycle protein that carries an iron-binding domain, is not affected. Notably, iron levels were elevated in the neural retina and retinal pigment epithelial (RPE) cells of Abca4−/− mice. Consistent with higher iron content, ferritin-L immunostaining was elevated in RPE of a patient diagnosed with ABCA4-associated disease and in RPE and photoreceptor cells of Abca4−/− mice. In neural retina of the mutant mice, reduced Tfrc mRNA was also an indicator of retinal iron overload. Thus iron chelation may defend retina when bisretinoid toxicity is implicated in disease processes.
机译:即使铁的氧化还原性能也负责产生羟基(•OH),即使铁的氧化还原性能(•OH)也是负责的那样,铁的能力也能使这种金属对各种细胞活性的贡献能够,最具破坏性的反应性氧。我们以前表明铁可以通过产生高反应性羟基(•OH)来促进Bisretinoid的氧化。现在我们认为,当在肝脏特异性肝蛋白敲除小鼠中升高时,视网膜中铁调节的保存是不足以防止铁诱导的双苯丙酚果单氧化降解。我们获得了在Bisretinoid A2E和可见光存在下芬顿反应的持续的证据。另一方面,通过脱铁酮的铁螯合与11-CIS视网膜或深色适应的ERG B波振幅的后乳化回收的变化无关,表明RPE65的活性,速率确定携带铁的速率确定的视觉循环蛋白 - 绑定域,不受影响。值得注意的是,在ABCA4 - / - 小鼠的神经视网膜和视网膜色素上皮(RPE)细胞中升高了铁水平。与较高的铁含量一致,在诊断为ABCA4相关疾病和ABCA4 - / - 小鼠的RPE和感光细胞的患者的RPE中升高了铁蛋白-1免疫染色。在突变小鼠的神经视网膜中,还原的TFRC mRNA也是视网膜铁过载的指标。因此,当双滴水毒素毒性涉及疾病过程时,铁螯合可能会保护视网膜。

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