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Loss of human disease protein retinitis pigmentosa GTPase regulator (RPGR) differentially affects rod or cone-enriched retina

机译:人类疾病蛋白视网膜色素变性GTPase调节剂(RPGR)的丢失会不同程度地影响视杆或视锥细胞丰富的视网膜

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摘要

It is unclear how genes, such as RPGR (retinitis pigmentosa guanine triphosphatase regulator) that are expressed in both rods and cones, cause variable disease pathogenesis. Using transcriptomic analysis, we show that loss of RPGR in a rod-dominant mouse retina (Rpgrko) results in predominant alterations in genes involved in actin cytoskeletal dynamics, prior to onset of degeneration. We validated these findings and found an increase in activated RhoA-GTP levels and polymerized F-actin in the Rpgrko mouse retina. To assess the effect of the loss of RPGR in the all-cone region of the human retina, we used Nrl−/− (neural retina leucine zipper) mice, to generate Rpgrko::Nrl−/− double-knock-out (Rpgr-DKO) mice. These mice exhibited supranormal cone response to light and substantially retained retinal architecture. Transcriptomic analysis revealed predominant up-regulation of retinal pigmented epithelium (RPE)-specific genes associated with visual cycle, whereas fatty acid analysis showed mild decrease in docosahexaenoic acid in the retina of the Rpgr-DKO mice when compared with the Nrl−/− mice. Our data reveal new insights into distinct intracellular pathways that are involved in RPGR-associated rod and cone dysfunction and provide a platform to design new treatment modalities.
机译:目前尚不清楚杆和视锥细胞中表达的基因,例如RPGR(色素性视网膜炎鸟嘌呤鸟嘌呤三磷酸酶调节剂)如何引起可变的疾病发病机理。使用转录组分析,我们发现杆状占主导地位的小鼠视网膜(Rpgr ko )中RPGR的丧失导致变性发生前涉及肌动蛋白细胞骨架动力学的基因发生了显着变化。我们验证了这些发现,并发现Rpgr ko 小鼠视网膜中激活的RhoA-GTP水平和聚合的F-肌动蛋白增加。为了评估人视网膜全锥区域RPGR丢失的影响,我们使用了Nrl -/-(神经视网膜亮氨酸拉链)小鼠来生成Rpgr ko :: Nrl -/-双敲除(Rpgr-DKO)小鼠。这些小鼠表现出对光的超视锥反应,并且基本上保留了视网膜结构。转录组学分析显示与视觉周期相关的视网膜色素上皮(RPE)特异性基因显着上调,而与Nrl 相比,脂肪酸分析显示Rpgr-DKO小鼠视网膜中二十二碳六烯酸的轻度降低- / − 小鼠。我们的数据揭示了与RPGR相关的杆和锥功能障碍有关的不同细胞内途径的新见解,并为设计新的治疗方式提供了平台。

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