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小鼠中视网膜色素变性28基因Fam161a的破坏会影响光感受器纤毛结构,并导致进行性视网膜变性。

Disruption of the retinitis pigmentosa 28 gene Fam161a in mice affects photoreceptor ciliary structure and leads to progressive retinal degeneration.

作者信息

Karlstetter Marcus, Sorusch Nasrin, Caramoy Albert, Dannhausen Katharina, Aslanidis Alexander, Fauser Sascha, Boesl Michael R, Nagel-Wolfrum Kerstin, Tamm Ernst R, Jägle Herbert, Stoehr Heidi, Wolfrum Uwe, Langmann Thomas

机构信息

Department of Ophthalmology, University of Cologne, Cologne, Germany.

Institute of Zoology, Johannes Gutenberg University of Mainz, Mainz, Germany.

出版信息

Hum Mol Genet. 2014 Oct 1;23(19):5197-210. doi: 10.1093/hmg/ddu242. Epub 2014 May 15.

Abstract

Mutations in the FAM161A gene were previously identified as the cause for autosomal-recessive retinitis pigmentosa 28. To study the effects of Fam161a dysfunction in vivo, we generated gene-trapped Fam161a(GT/GT) mice with a disruption of its C-terminal domain essential for protein-protein interactions. We confirmed the absence of the full-length Fam161a protein in the retina of Fam161a(GT/GT) mice using western blots and showed weak expression of a truncated Fam161a protein by immunohistochemistry. Histological analyses demonstrated that photoreceptor segments were disorganized in young Fam161a(GT/GT) mice and that the outer retina was completely lost at 6 months of age. Reactive microglia appeared in the outer retina and electroretinography showed an early loss of photoreceptor function in 4-month-old Fam161a(GT/GT) animals. Light and electron microscopy revealed a remarkable phenotype of a significantly shortened connecting cilium, spread ciliary microtubule doublets and disturbed disk organization in Fam161a(GT/GT) photoreceptor cells. Co-immunolabeling experiments demonstrated reduced expression and mislocalization of centrin 3 and disturbed targeting of the Fam161a interactors lebercilin and Cep290, which were restricted to the basal body and proximal connecting cilium in Fam161a(GT/GT) retinas. Moreover, we identified misrouting of the outer segment cargo proteins opsin and rds/peripherin 2 in Fam161a(GT/GT) mice. In conclusion, our results suggest a critical role for the C-terminal domain of Fam161a for molecular interactions and integrity of the connecting cilium. Fam161a is required for the molecular delivery into the outer segment cilium, a function which is essential for outer segment disk formation and ultimately visual function.

摘要

FAM161A基因的突变先前已被确定为常染色体隐性视网膜色素变性28型的病因。为了在体内研究Fam161a功能障碍的影响,我们构建了基因捕获的Fam161a(GT/GT)小鼠,其C末端结构域被破坏,而该结构域对于蛋白质-蛋白质相互作用至关重要。我们使用蛋白质免疫印迹法证实Fam161a(GT/GT)小鼠视网膜中不存在全长Fam161a蛋白,并通过免疫组织化学显示截短的Fam161a蛋白表达较弱。组织学分析表明,年轻的Fam161a(GT/GT)小鼠的光感受器节段排列紊乱,并且在6月龄时外视网膜完全丧失。反应性小胶质细胞出现在外视网膜中,并且视网膜电图显示4月龄的Fam161a(GT/GT)动物的光感受器功能早期丧失。光学和电子显微镜显示,Fam161a(GT/GT)光感受器细胞具有明显的表型,即连接纤毛显著缩短、睫状微管双联体散开和盘状结构紊乱。共免疫标记实验表明,中心蛋白3的表达减少且定位错误,Fam161a相互作用蛋白勒伯西林和Cep290的靶向紊乱,这些在Fam161a(GT/GT)视网膜中仅限于基体和近端连接纤毛。此外,我们在Fam161a(GT/GT)小鼠中发现了外节货物蛋白视蛋白和rds/外周蛋白2的错误转运。总之,我们的结果表明Fam161a的C末端结构域对于分子相互作用和连接纤毛的完整性起着关键作用。Fam161a是分子转运到外节纤毛所必需的,该功能对于外节盘状结构形成以及最终的视觉功能至关重要。

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