首页> 美国卫生研究院文献>The Journal of Neuroscience >The Rpe65 Leu450Met Variation Increases Retinal Resistance Against Light-Induced Degeneration by Slowing Rhodopsin Regeneration
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The Rpe65 Leu450Met Variation Increases Retinal Resistance Against Light-Induced Degeneration by Slowing Rhodopsin Regeneration

机译:Rpe65 Leu450Met变异通过减缓视紫红质的再生而增加了视网膜抵抗光诱导的退化的能力。

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摘要

Excessive light can cause retinal degeneration and may be an environmental cofactor accelerating retinal dystrophies and age-related diseases. In rodent models, the light damage susceptibility (LDS) of the retina is determined genetically. In two mouse strains, with different degrees of LDS, a Leu450Met variation in the pigment epithelial protein RPE65 was shown recently to cosegregate with low LDS. Because light damage is rhodopsin-mediated, and RPE65 is essential for the regeneration of rhodopsin in the visual cycle, we analyzed this variation regarding rhodopsin metabolism and LDS in four mouse strains. We found that, in contrast to previous assertions, LDS does not correlate with the maximal retinal content of rhodopsin present after dark adaptation. Instead, LDS correlated positively with the kinetics of rhodopsin regeneration, which determine rhodopsin availability during light exposure. Light damage occurred after absorption of a threshold dose of photons and thus fast regeneration, as observed in those two strains having Leu at position 450 of RPE65, was correlated with the occurrence of photoreceptor apoptosis after short exposure. In contrast, mice with the Leu450Met variation of Rpe65regenerated rhodopsin with slow kinetics and showed an increased resistance to light-induced retinal degeneration. In these mice, RPE65 protein levels were reduced by a post-transcriptional mechanism. F1 hybrid mice, carrying one normal and one variantRpe65 gene, had intermediate levels of the corresponding protein and showed intermediate rhodopsin regeneration kinetics and an intermediate LDS. Thus, none of the two variants of Rpe65had a dominant effect.
机译:过多的光线可能会导致视网膜变性,并且可能是加速视网膜营养不良和与年龄相关的疾病的环境辅助因子。在啮齿动物模型中,视网膜的光损伤敏感性(LDS)是通过遗传确定的。在具有不同程度的LDS的两种小鼠品系中,最近发现色素上皮蛋白RPE65中的Leu450Met变异与低LDS共分离。因为光损伤是视紫红质介导的,并且RPE65对于视紫红质在视觉周期中的再生至关重要,所以我们分析了四种小鼠品系中关于视紫红质代谢和LDS的这种变化。我们发现,与以前的主张相反,LDS与黑暗适应后视紫红质的最大视网膜含量不相关。取而代之的是,LDS与视紫红质再生的动力学呈正相关,后者决定了视紫红质在曝光期间的可用性。在吸收阈值剂量的光子后发生了光损伤,因此,在这两个在RPE65的450位具有亮氨酸的菌株中观察到,快速再生与短时间曝光后光感受器凋亡的发生有关。相反,具有Rpe65的Leu450Met变异的小鼠以缓慢的动力学再生视紫红质,并显示出对光诱导的视网膜变性的抵抗力增加。在这些小鼠中,RPE65蛋白水平通过转录后机制降低。 F1杂种小鼠携带一个正常的和一个变体的Rpe65基因,具有相应水平的相应蛋白质,并具有中等的视紫红质再生动力学和中等的LDS。因此,Rpe65的两个变体都没有显性作用。

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