Department of Pathology, School of Medicine, Case Western Reserve University, Cleveland, Ohio, 44106, USA.
Sci Rep. 2017 Oct 9;7(1):12843. doi: 10.1038/s41598-017-12862-x.
Retinal degeneration is prominent in Parkinson's disease (PD), a neuromotor disorder associated with aggregation of α-synuclein (α-syn) in the substantia-nigra (SN). Although α-syn is expressed in the neuroretina, absence of prominent aggregates suggests altered function as the likely cause of retinal pathology. We demonstrate that α-syn impairs ferritinophagy, resulting in the accumulation of iron-rich ferritin in the outer retina in-vivo and retinal-pigment-epithelial (RPE) cells in-vitro. Over-expression of Rab1a restores ferritinophagy, suggesting that α-syn impairs lysosomal function by disrupting the trafficking of lysosomal hydrolases. Surprisingly, upregulation of ferritin in RPE cells by exogenous iron in-vitro stimulated the release of ferritin and α-syn in exosomes, suggesting that iron overload due to impaired ferritinophagy or other cause(s) is likely to initiate prion-like spread of α-syn and ferritin, creating retinal iron dyshomeostasis and associated cytotoxicity. Since over-expression of α-syn is a known cause of PD, these results explain the likely cause of PD-associated retinal degeneration.
视网膜变性在帕金森病 (PD) 中很明显,PD 是一种与黑质 (SN) 中α-突触核蛋白 (α-syn) 聚集相关的神经运动障碍。尽管 α-syn 在神经视网膜中表达,但没有明显的聚集物表明其功能发生改变,这可能是视网膜病变的原因。我们证明 α-syn 会损害铁蛋白自噬,导致体内外视网膜中外层铁蛋白和视网膜色素上皮 (RPE) 细胞中铁的积累。Rab1a 的过表达恢复了铁蛋白自噬,表明 α-syn 通过破坏溶酶体水解酶的运输来破坏溶酶体功能。令人惊讶的是,体外外源性铁上调 RPE 细胞中的铁蛋白会刺激铁蛋白和 α-syn 在外泌体中的释放,这表明由于铁蛋白自噬受损或其他原因导致的铁过载可能会引发 α-syn 和铁蛋白的类朊病毒样传播,从而导致视网膜铁代谢失衡和相关的细胞毒性。由于 α-syn 的过表达是 PD 的已知原因,这些结果解释了 PD 相关视网膜变性的可能原因。