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Apolipoprotein J/clusterin prevents a progressive glomerulopathy of aging
Mark E Rosenberg1, Richard Girton, David Finkel
1Division of Renal Diseases and Hypertension, Department of Medicine, University of Minnesota, UMHC 736, 516 Delaware Street SE, Minneapolis, MN 55455, USA. rosen001@umn.edu
Abstract:
Apoliprotein J (apoJ)/clusterin has attracted considerable interest based on its inducibility in multiple injury processes and accumulation at sites of remodeling, regression, and degeneration. We therefore sought to investigate apoJ/clusterin's role in kidney aging, as this may reveal the accumulated effects of diminished protection. Aging mice deficient in apoJ/clusterin developed a progressive glomerulopathy characterized by the deposition of immune complexes in the mesangium. Up to 75% of glomeruli in apoJ/clusterin-deficient mice exhibited moderate to severe mesangial lesions by 21 months of age. Wild-type and hemizygous mice exhibited little or no glomerular pathology. In the apoJ/clusterin-deficient mice, immune complexes of immunoglobulin G (IgG), IgM, IgA, and in some cases C1q, C3, and C9 were detectable as early as 4 weeks of age. Electron microscopy revealed the accumulation of electron-dense material in the mesangial matrix and age-dependent formation of intramesangial tubulo-fibrillary structures. Even the most extensively damaged glomeruli showed no evidence of inflammation or necrosis. In young apoJ/clusterin-deficient animals, the development of immune complex lesions was accelerated by unilateral nephrectomy-induced hyperfiltration. Injected immune complexes localized to the mesangium of apoJ/clusterin-deficient but not wild-type mice. These results establish a protective role of apoJ/clusterin against chronic glomerular kidney disease and support the hypothesis that apoJ/clusterin modifies immune complex metabolism and disposal.
Insights
Apoliprotein J (apoJ)/clusterin deficiency in aging mice leads to progressive kidney disease with immune complex deposition. ApoJ/clusterin plays a crucial protective role in maintaining glomerular health.
Area of Science:
- Nephrology
- Immunology
- Aging Research
Background:
- Apoliprotein J (apoJ)/clusterin is implicated in tissue repair and degeneration.
- Its role in kidney aging and protection against chronic kidney disease is not well understood.
Purpose of the Study:
- To investigate the function of apoJ/clusterin in the aging kidney.
- To determine if apoJ/clusterin deficiency contributes to kidney disease development.
Main Methods:
- Apoliprotein J/clusterin-deficient aging mice were studied.
- Glomerular pathology, immune complex deposition (IgG, IgM, IgA, complement proteins), and ultrastructural changes were assessed.
- Effects of hyperfiltration and injected immune complexes were evaluated.
Main Results:
- ApoJ/clusterin-deficient mice developed progressive glomerulopathy with mesangial immune complex deposition.
- Lesions were observed as early as 4 weeks and worsened with age.
- Electron microscopy revealed tubulo-fibrillary structures in the mesangium.
- Hyperfiltration accelerated lesion development, and injected immune complexes localized to deficient kidneys.
Conclusions:
- Apoliprotein J/clusterin has a significant protective role against chronic glomerular kidney disease.
- ApoJ/clusterin appears to modulate immune complex metabolism and clearance.
- Deficiency in apoJ/clusterin contributes to age-related kidney damage.