From the Department of Ophthalmology, Stein Eye Institute.
Department of Physiology, and.
J Biol Chem. 2017 Dec 29;292(52):21407-21416. doi: 10.1074/jbc.M117.812701. Epub 2017 Nov 6.
Peropsin is a non-visual opsin in both vertebrate and invertebrate species. In mammals, peropsin is present in the apical microvilli of retinal pigment epithelial (RPE) cells. These structures interdigitate with the outer segments of rod and cone photoreceptor cells. RPE cells play critical roles in the maintenance of photoreceptors, including the recycling of visual chromophore for the opsin visual pigments. Here, we sought to identify the function of peropsin in the mouse eye. To this end, we generated mice with a null mutation in the peropsin gene (). These mice exhibited normal retinal histology, normal morphology of outer segments and RPE cells, and no evidence of photoreceptor degeneration. Biochemically, mice had ∼2-fold higher vitamin A (all--retinol (all--ROL)) in the neural retina following a photobleach and 5-fold lower retinyl esters in the RPE. This phenotype was similar to those reported in mice that lack interphotoreceptor retinoid-binding protein (IRBP) or cellular retinol-binding protein, suggesting that peropsin plays a role in the movement of all--ROL from photoreceptors to the RPE. We compared the phenotypes in mice lacking both peropsin and IRBP with those of mice lacking peropsin or IRBP alone and found that the retinoid phenotype was similarly severe in each of these knock-out mice. We conclude that peropsin controls all--ROL movement from the retina to the RPE or may regulate all--ROL storage within the RPE. We propose that peropsin affects light-dependent regulation of all--ROL uptake from photoreceptors into RPE cells through an as yet undefined mechanism.
视蛋白是脊椎动物和无脊椎动物物种中的一种非视觉视蛋白。在哺乳动物中,视蛋白存在于视网膜色素上皮 (RPE) 细胞的顶端微绒毛中。这些结构与杆状和锥状光感受器细胞的外节相互交错。RPE 细胞在维持光感受器方面起着关键作用,包括为视蛋白视觉色素回收视觉色素。在这里,我们试图确定视蛋白在小鼠眼睛中的功能。为此,我们生成了视蛋白基因缺失突变的小鼠 (). 这些小鼠表现出正常的视网膜组织学,外节和 RPE 细胞的形态正常,没有光感受器退化的证据。从生物化学上讲,在光漂白后, 小鼠的神经视网膜中视黄醇(全-视黄醇(all--ROL))增加了约 2 倍,而 RPE 中的视黄酯减少了 5 倍。这种表型与缺乏光感受器间视黄醇结合蛋白 (IRBP) 或细胞视黄醇结合蛋白的小鼠报道的表型相似,表明视蛋白在全-ROL 从光感受器向 RPE 的运动中起作用。我们比较了缺乏视蛋白和 IRBP 的小鼠与单独缺乏视蛋白或 IRBP 的小鼠的表型,并发现这些敲除小鼠的类视黄醇表型同样严重。我们得出结论,视蛋白控制全-ROL 从视网膜向 RPE 的运动,或者可能调节 RPE 内的全-ROL 储存。我们提出,视蛋白通过尚未定义的机制影响光依赖性调节全-ROL 从光感受器进入 RPE 细胞的摄取。