» Articles » PMID: 32396631

Dopamine 2 Receptor Signaling Controls the Daily Burst in Phagocytic Activity in the Mouse Retinal Pigment Epithelium

Overview
Specialty Ophthalmology
Date 2020 May 13
PMID 32396631
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

Purpose: A burst in phagocytosis of spent photoreceptor outer fragments by RPE is a rhythmic process occurring 1 to 2 hours after the onset of light. This phenomenon is considered crucial for the health of the photoreceptors and RPE. We have recently reported that dopamine, via dopamine 2 receptor (D2R), shifts the circadian rhythm in the RPE.

Methods: Here, we first investigated the impact of the removal of D2R on the daily peak of phagocytosis by RPE and then we analyzed the function and morphology of retina and RPE in the absence of D2R.

Results: D2R knockout (KO) mice do not show a daily burst of phagocytic activity after the onset of light. RNA sequencing revealed a total of 394 differentially expressed genes (DEGs) between ZT 23 and ZT 1 in the control mice, whereas in D2R KO mice, we detected 1054 DEGs. Pathway analysis of the gene expression data implicated integrin signaling to be one of the upregulated pathways in control but not in D2R KO mice. Consistent with the gene expression data, phosphorylation of focal adhesion kinase (FAK) did not increase significantly in KO mice at ZT 1. No difference in retinal thickness, visual function, or morphology of RPE cells was observed between wild-type (WT) and D2R KO mice at the age of 3 and 12 months.

Conclusions: Our data suggest that removal of D2R prevents the burst of phagocytosis and a related increase in the phosphorylation of FAK after light onset. The pathway analysis points toward a putative role of D2R in controlling integrin signaling, which is known to play an important role in the control of the daily burst of phagocytosis by the RPE. Our data also indicate that the absence of the burst of phagocytic activity in the early morning does not produce any apparent deleterious effect on the retina or RPE up to 1 year of age.

Citing Articles

Gas6 and Protein S Ligands Cooperate to Regulate MerTK Rhythmic Activity Required for Circadian Retinal Phagocytosis.

Parinot C, Chatagnon J, Rieu Q, Roux S, Neel D, Hamieh F Int J Mol Sci. 2024; 25(12).

PMID: 38928335 PMC: 11203748. DOI: 10.3390/ijms25126630.


Clearance phagocytosis by the retinal pigment epithelial during photoreceptor outer segment renewal: Molecular mechanisms and relation to retinal inflammation.

Lieffrig S, Gyimesi G, Mao Y, Finnemann S Immunol Rev. 2023; 319(1):81-99.

PMID: 37555340 PMC: 10615845. DOI: 10.1111/imr.13264.


Dopamine modulates the retinal clock through melanopsin-dependent regulation of cholinergic waves during development.

Kinane C, Calligaro H, Jandot A, Coutanson C, Haddjeri N, Bennis M BMC Biol. 2023; 21(1):146.

PMID: 37365544 PMC: 10294308. DOI: 10.1186/s12915-023-01647-6.


Circadian clock organization in the retina: From clock components to rod and cone pathways and visual function.

Bhoi J, Goel M, Ribelayga C, Mangel S Prog Retin Eye Res. 2022; 94:101119.

PMID: 36503722 PMC: 10164718. DOI: 10.1016/j.preteyeres.2022.101119.


The Role of Retinal Dysfunction in Myopia Development.

Huang Y, Chen X, Zhuang J, Yu K Cell Mol Neurobiol. 2022; 43(5):1905-1930.

PMID: 36427109 PMC: 11412200. DOI: 10.1007/s10571-022-01309-1.


References
1.
Laurent V, Sengupta A, Sanchez-Bretano A, Hicks D, Tosini G . Melatonin signaling affects the timing in the daily rhythm of phagocytic activity by the retinal pigment epithelium. Exp Eye Res. 2017; 165:90-95. PMC: 6314190. DOI: 10.1016/j.exer.2017.09.007. View

2.
Kevany B, Palczewski K . Phagocytosis of retinal rod and cone photoreceptors. Physiology (Bethesda). 2010; 25(1):8-15. PMC: 2839896. DOI: 10.1152/physiol.00038.2009. View

3.
McMahon D, Iuvone P, Tosini G . Circadian organization of the mammalian retina: from gene regulation to physiology and diseases. Prog Retin Eye Res. 2013; 39:58-76. PMC: 3927986. DOI: 10.1016/j.preteyeres.2013.12.001. View

4.
Bobu C, Hicks D . Regulation of retinal photoreceptor phagocytosis in a diurnal mammal by circadian clocks and ambient lighting. Invest Ophthalmol Vis Sci. 2009; 50(7):3495-502. DOI: 10.1167/iovs.08-3145. View

5.
Terman J, Reme C, Terman M . Rod outer segment disk shedding in rats with lesions of the suprachiasmatic nucleus. Brain Res. 1993; 605(2):256-64. DOI: 10.1016/0006-8993(93)91748-h. View