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Super-resolution microscopy reveals photoreceptor-specific subciliary location and function of ciliopathy-associated protein CEP290
Valencia L. Potter, Abigail R. Moye, Michael A. Robichaux, Theodore G. Wensel
Valencia L. Potter, Abigail R. Moye, Michael A. Robichaux, Theodore G. Wensel
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Research Article Cell biology Ophthalmology

Super-resolution microscopy reveals photoreceptor-specific subciliary location and function of ciliopathy-associated protein CEP290

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Abstract

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.

Authors

Valencia L. Potter, Abigail R. Moye, Michael A. Robichaux, Theodore G. Wensel

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Figure 2

CEP290 localizes throughout the length of the CC and in close proximity to the microtubule doublets.

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CEP290 localizes throughout the length of the CC and in close proximity ...
(A and B) SIM and STORM images of representative cilia from adult retina, immunostained for transition fiber protein CEP164 and axonemal lumen protein Centrin (A) or CEP164 and CEP290 (B). Row average intensity plots are shown. (C) SIM image of a representative cross section through the CC with separated channels to the right. The white line depicts the position of the average intensity line plot. (D–F) SIM and STORM longitudinal images of representative cilia immunostained for CEP290 and acetylated α-tubulin (AcTub, E) or glycocalyx label WGA (F). Row average intensity plots are shown. For CEP290/WGA-labeled cilia, high- and low-magnification wide-field Tuba1 antibody staining (green) overlay is shown. (G) Dot plot with averages and standard deviations of the lengths of CEP290 and centrin staining in the CC for SIM and STORM. (H) Dot plot with averages and standard deviations of the radii of CEP290, AcTub, and centrin in the CC for SIM and STORM. Thirty-three percent of the maximum intensity value of each channel was used as the boundary criterion for the measurement of each cilium. Measurements were compared with Student’s 2-tailed t test and 1-way ANOVA and Tukey’s post hoc test, respectively. (I) A color-coded schematic of a CC. Scale bar: 200 nm. Dotted line indicates CC/OS border. Measurements were from 3 different animals and SIM images of 75 cilia for CEP290, 30 for AcTub and 45 for centrin, or STORM images of 42 cilia from 6 animals for CEP290, 16 cilia from 3 animals for AcTub and 52 cilia from 3 animals for centrin. AcTub, acetylated α-tubulin; WGA, wheat germ agglutinin; CC, connecting cilium.

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