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Cone opsin determines the time course of cone photoreceptor degeneration in Leber congenital amaurosis

机译:视锥蛋白决定Leber先天性黑ur病视锥光感受器变性的时间过程

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摘要

Mutations in RPE65 or lecithin-retinol acyltransferase (LRAT) disrupt 11-cis-retinal recycling and cause Leber congenital amaurosis (LCA), the most severe retinal dystrophy in early childhood. We used Lrat−/−, a murine model for LCA, to investigate the mechanism of rapid cone degeneration. Although both M and S cone opsins mistrafficked as reported previously, mislocalized M-opsin was degraded whereas mislocalized S-opsin accumulated in Lrat−/− cones before the onset of massive ventral/central cone degeneration. As the ventral and central retina express higher levels of S-opsin than the dorsal retina in mice, our results may explain why ventral and central cones degenerate more rapidly than dorsal cones in Rpe65−/− and Lrat−/− LCA models. In addition, human blue opsin and mouse S-opsin, but not mouse M-opsin or human red/green opsins, aggregated to form cytoplasmic inclusions in transfected cells, which may explain why blue cone function is lost earlier than red/green-cone function in patients with LCA. The aggregation of short-wavelength opsins likely caused rapid cone degenerations through an endoplasmic reticulum stress pathway, as demonstrated in both the Lrat−/− retina and transfected cells. Replacing rhodopsin with S-opsin in Lrat−/− rods resulted in mislocalization and aggregation of S-opsin in the inner segment and the synaptic region of rods, ER stress, and dramatically accelerated rod degeneration. Our results demonstrate that cone opsins play a major role in determining the degeneration rate of photoreceptors in LCA.
机译:RPE65或卵磷脂-视黄醇酰基转移酶(LRAT)中的突变破坏了11-顺-视网膜循环,并导致Leber先天性黑ama病(LCA),这是儿童早期最严重的视网膜营养不良。我们使用Lrat-/-LCA鼠模型来研究快速视锥变性的机制。尽管M和S视锥蛋白都误吸了,但错误定位的M-视蛋白降解了,而错误定位的S-视蛋白在大规模腹侧/中央视锥变性发生之前积累在Lrat-/-视锥中。由于小鼠的腹侧和中央视网膜表达的S-视蛋白水平高于背侧视网膜,因此我们的结果可以解释为什么在Rpe65-/-和Lrat-/-LCA模型中腹侧和中央视锥细胞的变性比背侧视锥细胞的退化更快。此外,人蓝视蛋白和小鼠S-视蛋白,而不是小鼠M-视蛋白或人红/绿视蛋白聚集在一起,形成转染细胞中的胞质内含物,这可能解释了为什么蓝锥功能比红/绿锥更早消失的原因。 LCA患者的功能。短波视蛋白的聚集可能通过内质网应激途径引起了视锥细胞的快速变性,如在Lrat-/-视网膜和转染的细胞中所证实的。在Lrat-/-杆中用S-视蛋白取代视紫红质会导致S-视蛋白在杆的内部段和突触区域中定位不正确和聚集,ER应力并显着加速杆变性。我们的结果表明,视锥蛋白在确定LCA中感光细胞的退化率中起主要作用。

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