Jules Stein Eye Institute and Department of Neurobiology, UCLA School of Medicine, University of California-Los Angeles, 200 Stein Plaza, Los Angeles, CA 90095, USA.
Hum Mol Genet. 2011 Jul 1;20(13):2560-70. doi: 10.1093/hmg/ddr155. Epub 2011 Apr 14.
Mutations in the MYO7A gene cause a deaf-blindness disorder, known as Usher syndrome 1B. In the retina, the majority of MYO7A is in the retinal pigmented epithelium (RPE), where many of the reactions of the visual retinoid cycle take place. We have observed that the retinas of Myo7a-mutant mice are resistant to acute light damage. In exploring the basis of this resistance, we found that Myo7a-mutant mice have lower levels of RPE65, the RPE isomerase that has a key role in the retinoid cycle. We show for the first time that RPE65 normally undergoes a light-dependent translocation to become more concentrated in the central region of the RPE cells. This translocation requires MYO7A, so that, in Myo7a-mutant mice, RPE65 is partly mislocalized in the light. RPE65 is degraded more quickly in Myo7a-mutant mice, perhaps due to its mislocalization, providing a plausible explanation for its lower levels. Following a 50-60% photobleach, Myo7a-mutant retinas exhibited increased all-trans-retinyl ester levels during the initial stages of dark recovery, consistent with a deficiency in RPE65 activity. Lastly, MYO7A and RPE65 were co-immunoprecipitated from RPE cell lysate by antibodies against either of the proteins, and the two proteins were partly colocalized, suggesting a direct or indirect interaction. Together, the results support a role for MYO7A in the translocation of RPE65, illustrating the involvement of a molecular motor in the spatiotemporal organization of the retinoid cycle in vision.
MYO7A 基因突变会导致一种耳聋-失明疾病,称为 Usher 综合征 1B。在视网膜中,大多数 MYO7A 存在于视网膜色素上皮(RPE)中,许多视觉视黄醛循环的反应都发生在那里。我们观察到 Myo7a 突变小鼠的视网膜对急性光损伤具有抗性。在探索这种抗性的基础时,我们发现 Myo7a 突变小鼠的 RPE65 水平较低,RPE65 是视黄醛循环中具有关键作用的 RPE 异构酶。我们首次表明,RPE65 通常会经历光依赖性易位,从而在 RPE 细胞的中央区域更加集中。这种易位需要 MYO7A,因此在 Myo7a 突变小鼠中,RPE65 部分定位在光中。在 Myo7a 突变小鼠中,RPE65 降解得更快,这可能是由于其定位不当,这为其水平较低提供了一个合理的解释。在 50-60%的光漂白后,Myo7a 突变小鼠的视网膜在暗恢复的初始阶段表现出全反式视黄醇酯水平升高,这与 RPE65 活性缺乏一致。最后,通过针对两种蛋白质之一的抗体,从 RPE 细胞裂解物中共同免疫沉淀了 MYO7A 和 RPE65,并且两种蛋白质部分共定位,表明存在直接或间接相互作用。总之,这些结果支持了 MYO7A 在 RPE65 易位中的作用,说明了分子马达在视觉中视黄醛循环的时空组织中的参与。