首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Alpha-synuclein modulates retinal iron homeostasis by facilitating the uptake of transferrin-bound iron: Implications for visual manifestations of Parkinson's disease
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Alpha-synuclein modulates retinal iron homeostasis by facilitating the uptake of transferrin-bound iron: Implications for visual manifestations of Parkinson's disease

机译:α-突触核蛋白通过促进摄取与运铁蛋白结合的铁来调节视网膜铁稳态:对帕金森氏病视觉表现的影响

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Aggregation of alpha-synuclein (alpha-syn) in neurons of the substantia nigra is diagnostic of Parkinson's disease (PD), a neuro-motor disorder with prominent visual symptoms. Here, we demonstrate that alpha-syn, the principal protein involved in the pathogenesis of PD, is expressed widely in the neuroretina, and facilitates the uptake of transferrin-bound iron (Tf-Fe) by retinal pigment epithelial (RPE) cells that form the outer blood-retinal barrier. Absence of alpha-syn in knock-out mice (alpha-syn(-/-)) resulted in down-regulation of ferritin in the neuroretina, indicating depletion of cellular iron stores. A similar phenotype of iron deficiency was observed in the spleen, femur, and brain tissue of alpha-syn(-/-) mice, organs that utilize mainly Tf-Fe for their metabolic needs. The liver and kidney, organs that take up significant amounts of non-Tf-bound iron (NTBI), showed minimal change. Evaluation of the underlying mechanism in the human RPE47 cell line suggested a prominent role of alpha-syn in the uptake of Tf-Fe by modulating the endocytosis and recycling of transferrin (TO/transferrin-receptor (TfR) complex. Down-regulation of alpha-syn in RPE cells by RNAi resulted in the accumulation of Tf/TfR complex in common recycling endosomes (CREs), indicating disruption of recycling to the plasma membrane. Over-expression of exogenous alpha-syn in RPE cells, on the other hand, up-regulated ferritin and TfR expression. Interestingly, exposure to exogenous iron increased membrane association and co-localization of alpha-syn with TfR, supporting its role in iron uptake by the Tf/TfR complex. Together with our observations indicating basolateral expression of alpha-syn and TfR on RPE cells in vivo, this study reveals a novel function of alpha-syn in the uptake of Tf-Fe by the neuroretina. It is likely that retinal iron dyshomeostasis due to impaired or altered function of oc-syn contributes to the visual symptoms associated with PD. (C) 2016 Elsevier Inc. All rights reserved.
机译:黑质黑质神经元中α-突触核蛋白(α-syn)的聚集可诊断帕金森氏病(PD),这是一种具有明显视觉症状的神经运动疾病。在这里,我们证明了参与PD发病的主要蛋白α-syn在神经视网膜中广泛表达,并促进了视网膜色素上皮(RPE)细胞对转铁蛋白结合铁(Tf-Fe)的吸收。外血视网膜屏障。基因敲除小鼠(α-syn(-/-))中缺少α-syn导致神经视网膜中铁蛋白的下调,表明细胞铁储备的消耗。在α-syn(-/-)小鼠的脾脏,股骨和脑组织中观察到了类似的铁缺乏症表型,这些器官主要利用Tf-Fe满足其代谢需求。肝脏和肾脏,吸收大量非Tf结合铁(NTBI)的器官,变化很小。对人类RPE47细胞系潜在机制的评估表明,α-syn通过调节内吞作用和转铁蛋白(TO /转铁蛋白受体(TfR)复合物的循环利用)在Tf-Fe的摄取中发挥了重要作用。 RNAi在RPE细胞中产生的-syn导致Tf / TfR复合物在常见的回收内体(CREs)中积累,表明向质膜的回收受到破坏;另一方面,RPE细胞中外源性α-syn的过度表达,有趣的是,暴露于外源铁增加了膜缔合和α-syn与TfR的共定位,支持了其在Tf / TfR复合物吸收铁中的作用,以及我们的观察表明α的基底外侧表达-syn和TfR在体内RPE细胞上的作用,这项研究揭示了α-syn在神经视网膜摄取Tf-Fe中的新功能,很可能是由于oc-功能受损或改变引起的视网膜铁动态平衡。 syn有助于与PD相关的视觉症状。 (C)2016 Elsevier Inc.保留所有权利。

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