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Published on: February 12, 2022
A novel melano-lysosome in the retinal epithelium of rhesus monkeys
Peter Gouras1, Kristy Brown, Lena Ivert
1Department of Ophthalmology, Columbia University, 630 W 168th Street, New York, NY 10032, USA. pg10@columbia.edu
Abstract:
The large phagocytic load that confronts the retinal pigment epithelium (RPE) is thought to play a possible role in the pathogenesis of age related macular degeneration (AMD) that afflicts both humans and monkeys. Our knowledge of how RPE degrades phagosomes and other intra-cellular material by lysosomal action is still rudimentary. In this paper we examine organelles that play a role in this process, melanosome, lysosomes and phagosomes, in the RPE of young and old rhesus monkeys in order to better understand lysosomal autophagy and heterophagy in the RPE and its possible role in AMD. We used electron microscopy to detect and describe the characteristics of melanosomes and lysosome-like organelles in the macular RPE of rhesus monkeys (Macaca mulatta) that were 1, 6, 24, 24, 26 and 35 years of age. The measurements include the number, shape and size of these organelles located in the basal, middle and apical regions of RPE cells. Phaagosomes were also examined but not counted or measured for size or shape because of their rarity. Melanosomes were homogeneously dark with a circular or elliptical shape and decreased in number with age. Smaller melanosomes were more common at the basal side of the RPE. Among the small melanosomes, we found an organelle that was losing melanin in varying degrees; in some cases was nearly devoid of melanin. Because of the melanin loss, we considered this organelle to be a unique type of autophagic melano-lysosome, which we called a Type 1 lysosome. We found another organelle, more canonically lysosomal, which we called a Type 2 lysosome. This organelle was composed of a light matrix containing melanosomes in various stages of degradation. Type 2 lysosomes without melanosomes were rare. Type 2 lysosomes increased while Type 1 decreased in number with age. Phagosomes were rare in both young and old monkeys. They made close contact with Type 2 lysosomes which we considered responsible for their degradation. Melanosomes are being lost from monkey RPE with age. Much of this loss is carried out by two types of lysosomes. One, not defined as unique before, appears to be autophagic in digesting its own melanin; it has been called a Type 1 lysosome. The other, a more canonical lysosome, is both heterophagic in digesting phagosomes and autophagic in digesting local melanosomes; it has been called a Type 2 lysosome. Type 1 lysosomes decrease while type 2 lysosomes increase with age. The loss of melanin is considered to be detrimental to the RPE since it reduces melanin's protective action against light toxicity and oxidative stress. Phagosomes appear to be degraded by membrane contacts with Type 2 lysosomes. The loss of melanin and the buildup of Type 2 lysosomes occur at an earlier age in monkeys than humans implying that a greater vulnerability to senescence accelerates the rate of AMD in monkeys.
Insights
Age-related macular degeneration (AMD) may be linked to the retinal pigment epithelium's (RPE) phagocytic load. This study reveals age-related changes in RPE lysosomes and melanosomes, identifying two lysosome types involved in melanin degradation and phagosome clearance.
Area of Science:
- Ophthalmology
- Cell Biology
- Gerontology
Background:
- The retinal pigment epithelium (RPE) handles a significant phagocytic load, crucial for vision and potentially implicated in age-related macular degeneration (AMD).
- Understanding the lysosomal degradation pathways within the RPE is fundamental to comprehending its role in ocular health and disease.
- Current knowledge regarding RPE lysosomal autophagy and heterophagy, particularly concerning melanosomes and phagosomes, remains incomplete.
Purpose of the Study:
- To investigate the characteristics and age-related changes of melanosomes and lysosomes in the macular RPE of rhesus monkeys.
- To elucidate the roles of different lysosome types in the degradation of melanosomes and phagosomes within the RPE.
- To explore the potential connection between these cellular processes and the pathogenesis of age-related macular degeneration (AMD).
Main Methods:
- Electron microscopy was employed to examine melanosomes and lysosome-like organelles in the RPE of rhesus monkeys across a range of ages (1 to 35 years).
- Quantitative and qualitative assessments included the number, shape, size, and distribution of these organelles within RPE cells.
- Phagosomes were observed for their presence and interaction with lysosomal structures.
Main Results:
- Melanosomes, characterized by their dark, circular to elliptical shape, decreased in number with age and were more prevalent in the basal RPE.
- Two distinct lysosome types were identified: Type 1 (autophagic melano-lysosomes) showed decreasing numbers with age, while Type 2 (heterophagic and autophagic lysosomes) increased with age.
- Type 2 lysosomes, containing degrading melanosomes, were observed in close contact with phagosomes, suggesting their role in phagosome degradation. Melanosome loss was noted with aging.
Conclusions:
- Melanosome degradation occurs via two lysosome types in RPE: Type 1 (autophagic) and Type 2 (heterophagic/autophagic).
- Age-related changes include a decrease in Type 1 lysosomes and an increase in Type 2 lysosomes, alongside a general loss of melanosomes.
- The observed changes, occurring earlier in monkeys than humans, suggest accelerated senescence may increase vulnerability to AMD pathogenesis.

