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

Experimental Eye Research
|November 8, 2011
PubMed

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.

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