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Retinoid-related orphan nuclear receptor RORβ is an early-acting factor in rod photoreceptor development

机译:类维生素A相关的孤儿核受体RORβ是棒状感光细胞发育的早期作用因子

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摘要

Rods and cones are morphologically and developmentally distinct photoreceptor types with different functions in vision. Cones mediate daylight and color vision and in most mammals express M and S opsin photopigments for sensitivity to medium-long and short light wavelengths, respectively. Rods mediate dim light vision and express rhodopsin photopigment. The transcription factor networks that direct differentiation of each photoreceptor type are incompletely defined. Here, we report that Rorb−/− mice lacking retinoid-related orphan nuclear receptor β lose rods but overproduce primitive S cones that lack outer segments. The phenotype reflects pronounced plasticity between rod and cone lineages and resembles that described for Nrl−/− mice lacking neural retina leucine zipper factor. Rorb−/− mice lack Nrl expression and reexpression of Nrl in Rorb−/− mice converts cones to rod-like cells. Thus, Rorb directs rod development and does so at least in part by inducing the Nrl-mediated pathway of rod differentiation.
机译:视锥和视锥在形态和发育上是不同的感光体类型,在视觉上具有不同的功能。视锥细胞介导日光和彩色视觉,并且在大多数哺乳动物中,M和S视蛋白色素分别对中长和短光波长敏感。杆介导弱光视力并表达视紫红质的色素沉着。指导每种光感受器类型分化的转录因子网络未完全定义。在这里,我们报道缺乏类视黄醇相关的孤儿核受体β的Rorb-/-小鼠失去杆,但过度生产缺少外部片段的原始S视锥细胞。该表型反映了杆和圆锥谱系之间明显的可塑性,类似于针对缺少神经视网膜亮氨酸拉链因子的Nrl-/-小鼠所描述的表型。 Rorb-/-小鼠缺乏Nrl表达,并且在Rorb-/-小鼠中Nrl的重新表达将视锥细胞转化为棒状细胞。因此,Rorb指导杆发育,并且至少部分地通过诱导Nrl介导的杆分化途径来进行。

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