首页> 外文期刊>Human Molecular Genetics >The R172W mutation in peripherin/rds causes a cone-rod dystrophy in transgenic mice.
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The R172W mutation in peripherin/rds causes a cone-rod dystrophy in transgenic mice.

机译:外周蛋白/ rds中的R172W突变在转基因小鼠中引起了视锥细胞营养不良。

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摘要

Peripherin/rds (P/rds) is a membrane glycoprotein essential for the photoreceptor outer segment disc morphogenesis and maintenance. More than half of the disease-causing mutations in P/rds have been linked to different forms of macular dystrophy; the most common one is substitution of tryptophan for arginine at position 172 (R172W). Here we confirm the patient phenotype associated with the expression of R172W mutation in transgenic mice. Functional, structural and biochemical analyses showed that, while R172W P/rds is appropriately localized, a direct correlation exists between transgene expression levels and the onset/severity of the phenotype. In the wild-type background, both cone and rod photoreceptors' structure and function were significantly diminished, which indicates a dominant-negative, cone-rod defect. Whereas rds(+/-) mice maintained the normal cone function at early ages, cone responses in R172W/rds(+/-) mice were diminished to 41% of the wild-type level signifying a preferential damaging effect of the mutation on cones. Conversely, R172W/rds(+/-) mice showed a significant rescue of rod function and improvement of rod outer segment structure. Although rds(-/-) mice have no detectable rod or cone responses, R172W/rds(-/-) animals retained 30% of wild-type structure and rod function, but no significant rescue of cone function was detected at 1 month of age. No biochemical abnormalities were observed in complex formation and association with Rom-1; however, R172W protein was more sensitive to tryptic digestion, indicative of a change in protein conformation, possibly contributing to the cone-dominated phenotype. As the first animal model for P/rds-associated cone-rod dystrophy, R172W mice provide a valuable tool for studying the pathophysiology of P/rds-associated human retinal dystrophies and the development of therapeutic strategies to intervene in these diseases.
机译:外周蛋白/ rds(P / rds)是一种膜糖蛋白,对于感光器外段盘形态发生和维持至关重要。 P / rds中超过一半的致病突变与不同形式的黄斑营养不良有关。最常见的一种是将色氨酸替换为172位的精氨酸(R172W)。在这里,我们证实了与转基因小鼠中R172W突变表达相关的患者表型。功能,结构和生化分析表明,尽管R172W P / rds适当定位,但转基因表达水平与表型的发作/严重程度之间存在直接相关性。在野生型背景下,视锥和视杆感光器的结构和功能均显着降低,这表明存在显性负,视锥杆缺陷。尽管rds(+/-)小鼠在早期仍保持正常的视锥功能,但R172W / rds(+/-)小鼠的视锥反应降低至野生型水平的41%,表明该突变对视锥细胞具有优先破坏作用。相反,R172W / rds(+/-)小鼠表现出杆功能的重大拯救和杆外部节段结构的改善。尽管rds(-/-)小鼠没有可检测到的杆或视锥细胞反应,但R172W / rds(-/-)动物保留了30%的野生型结构和视杆功能,但在1月龄时未检测到显着的视锥细胞功能恢复年龄。在复合物的形成和与Rom-1的缔合中未观察到生化异常。然而,R172W蛋白对胰蛋白酶消化更敏感,表明蛋白构象发生了变化,可能是视锥细胞主导的表型。作为第一个与P / rds相关的视锥细胞营养不良的动物模型,R172W小鼠为研究P / rds相关的人视网膜营养不良的病理生理学以及干预这些疾病的治疗策略的发展提供了有价值的工具。

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