BalaT-dependent β-alanine trafficking pathway in retinal pigment cells is critical for maintaining synaptic transmission of photoreceptor neurons in Drosophila.
Toshihide Kurihara, Peter D Westenskow ... Martin Friedlander
Mouse models in which hypoxia can be genetically triggered in retinal pigmented epithelial cells show that hypoxia-induced metabolic stress alone can lead to photoreceptor atrophy/dysfunction.
Mark A Kanow, Michelle M Giarmarco ... James B Hurley
Metabolic relationships between cells in the retina and retinal pigment epithelium are fundamental to retinal function, retinal disease and age-related vision loss and they may provide strategies for metabolism-based therapies.
Kevin Achberger, Christopher Probst ... Peter Loskill
A microphysiological system (retina-on-a-chip) shows the potential to promote drug development and provide new insights into the underlying pathology of retinal diseases.
Yoko Nakai-Futatsugi, Jianshi Jin ... Masayo Takahashi
Pigmentation that confers protective function of RPE is not underlaid by a specific gene expression profile, reviled by microscopic imaging together with single-cell RNA sequencing.
Domino K Schlegel, Srinivasagan Ramkumar ... Stephan CF Neuhauss
The retinoid-binding protein RLBP1 in the retinal pigment epithelium is crucially involved in cone photoreceptor visual pigment recycling and mimics the human eye disease with retinal lipid deposits when mutated.
Robin J Vigouroux, Quénol Cesar ... Kim Tuyen Nguyen-Ba-Charvet
A new eye-specific Dcc mutant combined with an improved clearing protocol for the eye and brain (EyeDISCO) reveals the requirement of the receptor Dcc for retinal development and maintenance.
Chimeric RNAs are widely distributed spatiotemporally during human retinal development and have important regulatory functions, such as silencing of CTNNBIP1-CLSTN1 biasing the progenitor cells toward the RPE cell fate at the expense of neural retinal cell fates.