» Articles » PMID: 18621729

The Age Lipid A2E and Mitochondrial Dysfunction Synergistically Impair Phagocytosis by Retinal Pigment Epithelial Cells

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2008 Jul 16
PMID 18621729
Citations 88
Authors
Affiliations
Soon will be listed here.
Abstract

Accumulation of indigestible lipofuscin and decreased mitochondrial energy production are characteristic age-related changes of post-mitotic retinal pigment epithelial (RPE) cells in the human eye. To test whether these two forms of age-related impairment have interdependent effects, we quantified the ATP-dependent phagocytic function of RPE cells loaded or not with the lipofuscin component A2E and inhibiting or not mitochondrial ATP synthesis either pharmacologically or genetically. We found that physiological levels of lysosomal A2E reduced mitochondrial membrane potential and inhibited oxidative phosphorylation (OXPHOS) of RPE cells. Furthermore, in media with physiological concentrations of glucose or pyruvate, A2E significantly inhibited phagocytosis. Antioxidants reversed these effects of A2E, suggesting that A2E damage is mediated by oxidative processes. Because mitochondrial mutations accumulate with aging, we generated novel genetic cellular models of RPE carrying mitochondrial DNA point mutations causing either moderate or severe mitochondrial dysfunction. Exploring these mutant RPE cells we found that, by itself, only the severe but not the moderate OXPHOS defect reduces phagocytosis. However, sub-toxic levels of lysosomal A2E are sufficient to reduce phagocytic activity of RPE with moderate OXPHOS defect and cause cell death of RPE with severe OXPHOS defect. Taken together, RPE cells rely on OXPHOS for phagocytosis when the carbon energy source is limited. Our results demonstrate that A2E accumulation exacerbates the effects of moderate mitochondrial dysfunction. They suggest that synergy of sub-toxic lysosomal and mitochondrial changes in RPE cells with age may cause RPE dysfunction that is known to contribute to human retinal diseases like age-related macular degeneration.

Citing Articles

Mitochondrial DNA Damage in the Retinal Pigmented Epithelium (RPE) and Its Role in RPE Pathobiology.

Ridley R, Amontree A, Lewin A, Ildefonso C Adv Exp Med Biol. 2025; 1468:375-379.

PMID: 39930225 DOI: 10.1007/978-3-031-76550-6_62.


Drusen in AMD from the Perspective of Cholesterol Metabolism and Hypoxic Response.

Ban N, Shinojima A, Negishi K, Kurihara T J Clin Med. 2024; 13(9).

PMID: 38731137 PMC: 11084323. DOI: 10.3390/jcm13092608.


Cholesterol metabolism: physiological regulation and diseases.

Guo J, Chen S, Zhang Y, Liu J, Jiang L, Hu L MedComm (2020). 2024; 5(2):e476.

PMID: 38405060 PMC: 10893558. DOI: 10.1002/mco2.476.


Identifying biomarkers of heterogeneity and transplantation efficacy in retinal pigment epithelial cells.

Farjood F, Manos J, Wang Y, Williams A, Zhao C, Borden S J Exp Med. 2023; 220(12).

PMID: 37728563 PMC: 10510736. DOI: 10.1084/jem.20230913.


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.


References
1.
Sparrow J, Zhou J, Cai B . DNA is a target of the photodynamic effects elicited in A2E-laden RPE by blue-light illumination. Invest Ophthalmol Vis Sci. 2003; 44(5):2245-51. DOI: 10.1167/iovs.02-0746. View

2.
Dowling J, Sidman R . Inherited retinal dystrophy in the rat. J Cell Biol. 1962; 14:73-109. PMC: 2106090. DOI: 10.1083/jcb.14.1.73. View

3.
Finnemann S . Focal adhesion kinase signaling promotes phagocytosis of integrin-bound photoreceptors. EMBO J. 2003; 22(16):4143-54. PMC: 175805. DOI: 10.1093/emboj/cdg416. View

4.
Cadenas E, Davies K . Mitochondrial free radical generation, oxidative stress, and aging. Free Radic Biol Med. 2000; 29(3-4):222-30. DOI: 10.1016/s0891-5849(00)00317-8. View

5.
DAurelio M, Pallotti F, Barrientos A, Gajewski C, Kwong J, Bruno C . In vivo regulation of oxidative phosphorylation in cells harboring a stop-codon mutation in mitochondrial DNA-encoded cytochrome c oxidase subunit I. J Biol Chem. 2001; 276(50):46925-32. DOI: 10.1074/jbc.M106429200. View