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Large-Scale Purification of Porcine or Bovine Photoreceptor Outer Segments for Phagocytosis Assays on Retinal Pigment Epithelial Cells
Published on: December 12, 2014
Cdhr1a and pcdh15b link photoreceptor outer segments with inner segment calyceal processes revealing a potential
Meet K Patel1, Warlen P Piedade1, Jakub Famulski1
1Department of Biology, University of Kentucky.
Abstract:
Cone rod dystrophy (CRD) is a macular degeneration disorder characterized by initial cone cell photoreceptor degeneration and subsequently of rod photoreceptors. Mutations in CDHR1, a photoreceptor specific cadherin have been found to be associated with the incidence of cone-rod dystrophy and recapitulated in mouse CDHR1 knockouts. However, the molecular function of CDHR1 remains unknown. CDHR1 has been shown to localize at the leading edge of murine rod nascent outer segment (OS) making junctions to an unknown partner in the inner segment. Using Structured Illumination Microscopy (SIM), we observed that the localization of zebrafish cdhr1a extends from basal nascent OS discs above the periciliary ridge of the inner segment to a considerable length along the OS, akin to calyceal process (CPs). When labeling the CPs using pcdh15b, a CP specific cadherin, we observed that cdhr1a at the leading edge of OS juxtaposes with pcdh15b in the CP. Similar localization patterns were detected in human, macaque, xenopus, ducks, and various rodent PRCs indicating conservation. Importantly, using immunoprecipitation and K652 cell aggregation assays we demonstrate that pcdh15b and cdhr1a can interact and potentially link the OS and CP. To analyze the consequences of OS-CP interactions in CRD, we established a zebrafish cdhr1a mutant line (cdhr1a fs*146 ) and analyzed CRD progression at high temporal resolution. Homozygous cdhr1a fs*146 mutants begin to exhibit minor cone OS morphology defects starting at 15 dpf (days post fertilization) and severe OS disruption and cell loss by 3 months. Rod OS defects were delayed until 3-6 months. Furthermore, we show that loss of cdhr1a function leads to disorganization and shortening of CPs coinciding with cone outer OS defects which is significantly exacerbated when combined with the loss of pcdh15b. In conclusion, we propose that cdhr1a and pcdh15b function to link cone OSs with CPs to maintain proper OS homeostasis thus revealing a potential novel mechanism for CRD.
Insights
Cone-rod dystrophy (CRD) involves photoreceptor degeneration. This study reveals CDHR1 and PCDH15B link outer segments to calyceal processes, maintaining photoreceptor health and offering new CRD insights.
Area of Science:
- Ophthalmology and Vision Science
- Cell Biology
- Genetics and Molecular Biology
Background:
- Cone-rod dystrophy (CRD) is a macular degeneration characterized by progressive photoreceptor cell loss.
- Mutations in CDHR1 are linked to CRD, but its molecular function in photoreceptor outer segments (OS) remains unclear.
- CDHR1 localizes to the leading edge of nascent rod OS, suggesting interaction with inner segment components.
Purpose of the Study:
- To elucidate the molecular function of CDHR1 in photoreceptor structure and homeostasis.
- To investigate the interaction between CDHR1 and calyceal processes (CPs) in photoreceptors.
- To establish and analyze a zebrafish model for CRD to understand disease mechanisms.
Main Methods:
- Structured Illumination Microscopy (SIM) to visualize cdhr1a and pcdh15b localization in zebrafish photoreceptor cells.
- Immunoprecipitation and cell aggregation assays to confirm protein interactions between cdhr1a and pcdh15b.
- Generation and high-resolution temporal analysis of a zebrafish cdhr1a mutant line (cdhr1afs*146) to study CRD progression.
Main Results:
- Zebrafish cdhr1a localizes along the OS, juxtaposing with pcdh15b in the CPs, a conserved pattern across species.
- CDHR1 and PCDH15B directly interact, suggesting a mechanism for linking the OS and CPs.
- Loss of cdhr1a function in zebrafish leads to progressive cone and rod OS defects, exacerbated by combined loss of pcdh15b.
Conclusions:
- CDHR1 and PCDH15B function as a molecular link between photoreceptor outer segments and calyceal processes.
- This OS-CP linkage is crucial for maintaining photoreceptor outer segment homeostasis.
- Dysfunction of this CDHR1-PCDH15B interaction represents a potential novel mechanism underlying cone-rod dystrophy.
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