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Isolation of Glomeruli and In Vivo Labeling of Glomerular Cell Surface Proteins
Published on: January 18, 2019
Intracellular processing of immune complexes formed on the surface of glomerular epithelial cells
1Department of Medicine, Loyola University Medical Center, Maywood, Illinois 60153.
Insights
Glomerular epithelial cells rapidly internalize immune complexes but process them inefficiently, leading to slow resolution and potential inflammation. This study identifies inefficient lysosomal processing as a key metabolic defect.
Area of Science:
- Nephrology
- Immunology
- Cell Biology
Background:
- Immune complexes on glomerular epithelial cells (GEC) resolve slowly, causing glomerular capillary wall inflammation, as seen in membranous glomerulonephritis.
- The underlying metabolic defect in immune complex processing by GEC remains unidentified.
Purpose of the Study:
- To investigate the intracellular processing of immune complexes by cultured GEC.
- To identify potential metabolic defects in immune complex handling by GEC.
Main Methods:
- Formation of immune complexes using cationic bovine gamma-globulin (BGG) and anti-BGG on cultured GEC.
- Tracing radioiodinated and colloidal gold-labeled anti-BGG within endosomal, lysosomal, and extracellular compartments.
- Quantification of lysosomal enzymes (acid phosphatase, beta-galactosidase) in anti-BGG colloidal gold-loaded vesicles.
Main Results:
- GEC rapidly internalized immune complexes, with 50% saturation achieved within 10 minutes.
- Complex exteriorization was slow, with 50% of internalized complexes expelled in approximately 90 minutes.
- Less than 5% of internalized anti-BGG was proteolytically degraded, indicating inefficient lysosomal processing; only ~10% of cellular lysosomal enzymes associated with loaded vesicles.
Conclusions:
- GEC efficiently internalize immune complexes.
- Lysosomal processing of immune complexes by GEC is slow and inefficient.
- Accumulated endosomes predominantly return to the plasma membrane, releasing free antibody, contributing to slow resolution and inflammation.
Abstract:
Immune complexes formed on the surface of glomerular epithelial cells (GEC) resolve slowly and therefore result in inflammation of the glomerular capillary wall, as in the case of human membranous glomerulonephritis. The metabolic defect in the processing of these complexes has not been identified. Immune complexes of cationic bovine gamma-globulin (BGG) and anti-BGG were formed on cultured GEC, and their intracellular processing was followed by tracing the fate of radioiodinated and colloidal gold-labeled anti-BGG in the endosomal, lysosomal, and extracellular compartments. It was determined that the complexes were rapidly internalized in endosomes (50% saturation achieved in 10 min). The rate of expulsion of complexes was much slower (50% of internalized complex exteriorized in approximately 90 min). Of the internalized anti-BGG, < 5% were proteolytically degraded, suggesting an inefficient lysosomal processing. This aspect was studied further by separating anti-BGG colloidal gold-loaded vesicles by low-speed centrifugation and quantitating the lysosomal enzymes acid phosphatase and beta-galactosidase. At equilibrium approximately 10% of total cellular enzymes was associated with the vesicles. It was concluded that immune complexes are rapidly internalized by the GEC. However, lysosomal processing of the complexes is slow and inefficient. The majority of accumulated endosomes route back to the plasma membrane and discharge their contents in the medium in the form of free antibody.
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