Loss of PIKfyve in Rod Photoreceptors and RPE Cells Leads to Endolysosomal Dysfunction and Retinal Degeneration
Rajala, R. V.; Rajala, A.; Trevino, L. J.; Saravanan, T.; Black, T. M.; Bhat, A. M.; Ngo, T.; Eminhizer, M.; Du, J.; Ramamurthy, V.
Show abstract
Photoreceptor outer segment (OS) degradation is primarily mediated by retinal pigment epithelial (RPE) cells through daily phagocytosis of shed distal OS tips. In contrast, much less is understood about the cell-autonomous mechanisms photoreceptors use to clear mislocalized molecules caused by protein misfolding or trafficking defects. Mislocalized or excess rhodopsin that fails to reach the OS is retained in the inner segment or cell body, where it is presumably degraded via the endolysosomal system. We identify PIKfyve, a phosphoinositide kinase that generates PI(3,5)P2, as a key regulator of this pathway. Using Translating Ribosome Affinity Purification (TRAP), we find that PIKfyve is highly expressed in rod photoreceptors. Rod-specific PIKfyve deletion causes progressive retinal degeneration, marked by inner segment vacuolation, elevated LAMP1/2, thinning of the outer nuclear layer, and eventual loss of rod and cone function. Loss of one copy of PIKfyve in rod photoreceptors accelerates degeneration in P23H rhodopsin mutant mice. In RPE cells, PIKfyve loss disrupts phagocytosis and autophagy, leading to accumulation of rhodopsin, LAMP1, LC3A/B, and lipid droplets, along with metabolic disturbances. These findings demonstrate that PIKfyve is essential for photoreceptor and RPE health by regulating lysosomal function, phagocytosis, autophagy and metabolism, and suggest that enhancing PIKfyve activity could be a therapeutic strategy for retinal degenerative diseases.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- KIT ligand protects against both light-induced and genetic photoreceptor degeneration 96%
- Sex-specific attenuation of photoreceptor degeneration by reserpine in a rhodopsin P23H rat model of autosomal dominant retinitis pigmentosa 96%
- Homeostatic plasticity triggered by rod photoreceptor degenerative disease is associated with maintenance of sensitive night vision 95%
Similar papers in this journal
Similar papers in this journal
- Single-cell transcriptomic profiling in inherited retinal degen-eration reveals distinct metabolic pathways in rod and cone photoreceptors 97%
- Photoreceptor Compartment-Specific TULP1 Interactomes 97%
- Single-cell RNA sequencing reveals molecular features of postnatal maturation in the murine retinal pigment epithelium 96%
Similar papers in this journal
- Changes in endolysosomal organization define a pre-degenerative state in the crumbs mutant Drosophila retina 96%
- Serum-deprivation response of ARPE-19 cells; expression patterns relevant to age-related macular degeneration. 95%
- Ccr2 suppression by minocycline in Cx3cr1/Ccr2-visualized inherited retinal degeneration 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.