Verna and Marrs McLean Department of Biochemistry and Molecular Biology.
Program in Developmental Biology, Graduate School of Biomedical Sciences, and.
JCI Insight. 2021 Oct 22;6(20):e145256. doi: 10.1172/jci.insight.145256.
Mutations in the cilium-associated protein CEP290 cause retinal degeneration as part of multiorgan ciliopathies or as retina-specific diseases. The precise location and the functional roles of CEP290 within cilia and, specifically, the connecting cilia (CC) of photoreceptors, remain unclear. We used super-resolution fluorescence microscopy and electron microscopy to localize CEP290 in the CC and in the primary cilia of cultured cells with subdiffraction resolution and to determine effects of CEP290 deficiency in 3 mutant models. Radially, CEP290 localizes in close proximity to the microtubule doublets in the region between the doublets and the ciliary membrane. Longitudinally, it is distributed throughout the length of the CC whereas it is confined to the very base of primary cilia in human retinal pigment epithelium-1 cells. We found Y-shaped links, ciliary substructures between microtubules and membrane, throughout the length of the CC. Severe CEP290 deficiencies in mouse models did not prevent assembly of cilia or cause obvious mislocalization of ciliary components in early stages of degeneration. There were fewer cilia and no normal outer segments in the mutants, but the Y-shaped links were clearly present. These results point to photoreceptor-specific functions of CEP290 essential for CC maturation and stability following the earliest stages of ciliogenesis.
CEP290 基因突变会导致视网膜变性,这是多器官纤毛病变或视网膜特异性疾病的一部分。CEP290 在纤毛内的精确位置和功能作用,特别是感光器的连接纤毛(CC),仍然不清楚。我们使用超分辨率荧光显微镜和电子显微镜,以亚衍射分辨率定位培养细胞中的 CC 和初级纤毛中的 CEP290,并确定 3 种突变模型中 CEP290 缺乏的影响。径向方向上,CEP290 定位于在双联体和纤毛膜之间的双联体区域附近。在纵向方向上,它分布在 CC 的整个长度上,而在人视网膜色素上皮-1 细胞中,它仅局限于初级纤毛的基底。我们发现 CC 全长都存在 Y 形连接,这是微管和膜之间的纤毛亚结构。在早期退化阶段,严重的 CEP290 缺乏不会阻止纤毛的组装,也不会导致纤毛成分的明显定位错误。突变体中的纤毛较少,没有正常的外节,但 Y 形连接明显存在。这些结果表明 CEP290 具有感光器特异性功能,对于 CC 成熟和稳定性至关重要,这是纤毛发生的最早阶段之后。