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Rapid RGR-dependent visual pigment recycling is mediated by the RPE and specialized Müller glia

Cell repports. 2023-08; 
Aleksander Tworak, Alexander V Kolesnikov, John D Hong, Elliot H Choi, Jennings C Luu, Grazyna Palczewska, Zhiqian Dong, Dominik Lewandowski, Matthew J Brooks, Laura Campello, Anand Swaroop, Philip D Kiser, Vladimir J Kefalov, Krzysztof Palczewski Department of Ophthalmology, Gavin Herbert Eye Institute, University of California
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Abstract

In daylight, demand for visual chromophore (11-cis-retinal) exceeds supply by the classical visual cycle. This shortfall is compensated, in part, by the retinal G-protein-coupled receptor (RGR) photoisomerase, which is expressed in both the retinal pigment epithelium (RPE) and in Müller cells. The relative contributions of these two cellular pools of RGR to the maintenance of photoreceptor light responses are not known. Here, we use a cell-specific gene reactivation approach to elucidate the kinetics of RGR-mediated recovery of photoreceptor responses following light exposure. Electroretinographic measurements in mice with RGR expression limited to either cell type reveal that the RPE and a specialized subset ... More

Keywords

11-cis-retinal; CP: Cell biology; CP: Neuroscience; Müller cells; chromophore; cone opsin; photic visual cycle; photoisomerization; retina; retinal pigmented epithelium; vision; visual cycle.