Search bioRxiv⌕ Search

Biology subjects

Rieu, Q.

Publications and source records attributed to Rieu, Q..

2 recordsLinked to original sources

CD14 and and TLR4 contribute to the circadian regulation of retinal phagocytosis as co-receptors

Retinal pigment epithelium (RPE) cells perform crucial functions for vision, among which the daily clearance of photoreceptor outer segment (POS) oxidized extremities. POS phagocytosis is under circadian regulation, peaking only once a day despite the constant contact between both cell types. Alphavbeta5 integrin receptors and MFG-E8 ligands synchronize POS phagocytosis and activate the MerTK internalization receptor via an intracellular signaling cascade. Recently, we identified scavenger receptors CD36 and SR-B2/LIMP2 as POS internalization regulators. We now highlight that innate immunity receptors CD14 and TLR4 interact with POS as stimulatory coreceptors in a tissue-specific fashion. CD14 and TLR4 associate partially with lipid rafts, and their activation triggers MyD88-dependent JNK and ERK1/2 (p44/42) kinases. In vivo, CD14 and TLR4 protein levels are replenished in the hours leading to the phagocytic peak. In addition, the phagocytic peak is lost in Tlr4-/- RPE cells, thus confirming that TLR4 regulates this function. Finally, CD14 and TLR4 associate with SR-B2, partner with CD36 and MerTK, highlighting that several receptors contribute together to the fine regulation of POS phagocytosis as a macromolecular machinery.

cell biology↗

Energetic failure and oxidative stress underlie the Prpf31 splicing factor-related mouse phenotype

Mutations of ubiquitous PRPF splicing factors represent the second cause of retina-specific autosomic dominant retinitis pigmentosa. Prpf31 downregulation decreases phagocytosis of mouse and human retinal pigment epithelial (RPE) cells, thus suggesting similar pathogenesis between species. With time, the mouse RPE ultrastructure shows signs of cellular stress such as cytoplasmic vacuoles. To decipher the primary cellular origin of Prpf31-related deleterious processes we first confirmed the gradual accumulation of protein and lipid oxidations. We then showed deregulation in the expression levels of oxidative and endoplasmic reticulum stress markers as well as of mitochondrial respiratory chain constituants, first and foremost in the RPE from 3 months onward. For the first time we analyzed the energetic metabolism of freshly dissected RPE/choroid, retina and peritoneal macrophages, and showed that mitochondrial respiration and global energy production were decreased solely in Prpf31+/- RPE cells. Therefore, our results indicate that metabolic impairments and associated stress might contribute to pathogenesis first in Prpf31+/- RPE cells before affecting the retina.

pathology↗