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Published on: August 19, 2020
Complement activation induces the expression of decay-accelerating factor on human mesangial cells
T Shibata1, F G Cosio, D J Birmingham
1Department of Internal Medicine and Pathology, Ohio State University, Columbus 43210.
Insights
Immune complex activation of complement on mesangial cells increases decay-accelerating factor (DAF) synthesis and expression. This DAF may protect kidney cells from complement-mediated damage during glomerulonephritis.
Area of Science:
- Immunology
- Nephrology
- Cell Biology
Background:
- Immune complexes (IC) and complement activation are implicated in glomerulonephritis.
- The role of decay-accelerating factor (DAF) in protecting glomerular cells is not fully understood.
Purpose of the Study:
- To investigate the effect of complement activation by IC on DAF expression in human mesangial cells (MC).
- To determine the mechanism of DAF induction and its characteristics on MC.
Main Methods:
- MC were cultured and incubated with antigens and antibodies to form IC.
- Complement activation was induced using human serum.
- DAF expression was measured by immunoperoxidase staining and RIA.
- DAF biophysical properties and function were analyzed.
Main Results:
- IC formation and complement activation significantly increased DAF expression on MC plasma membrane.
- DAF induction was dependent on terminal complement components (C5b-9).
- Increased DAF expression resulted from de novo synthesis by MC, confirmed by cycloheximide and actinomycin D experiments.
- MC DAF exhibited properties similar to DAF in other cells, including resistance to trypsin, pronase sensitivity, and phosphatidylinositol anchor.
Conclusions:
- Deposition of terminal complement components on human MC triggers DAF synthesis and membrane expression.
- DAF may protect glomerular cells from complement-mediated injury in immune complex-mediated glomerulonephritis.
Abstract:
In the present study we evaluated the effect of complement activation by immune complexes (IC) on the expression of decay-accelerating factor (DAF) on human mesangial cells (MC). MC in culture were incubated with an Ag (DNP-Gelatin) that binds to fibronectin present in the MC matrix. Subsequently, MC were incubated with anti-DNP antibodies in the presence of human serum. By immunoperoxidase staining we showed that these incubations resulted in IC formation and deposition of human C3 and terminal complement components (C5b-9) on the mesangial matrix and on the surface of MC. By immunoperoxidase staining and by RIA we showed that IC formation and complement activation significantly increased DAF expression on the MC plasma membrane. The induction of DAF expression was a consequence of deposition of terminal complement components on the MC because, zymosan-activated serum and IC formation in the presence of C5- or C8-deficient serum failed to increase MC DAF expression. Furthermore, the observed increased DAF expression was the consequence of increased DAF synthesis by MC. Thus, both cycloheximide and actinomycin D blocked the increase on MC DAF observed after incubation with IC and serum. MC DAF had biophysical and functional characteristics similar to DAF in other cells. Thus, 1) MC DAF was resistant to trypsin but was removed from the MC membrane by pronase; 2) phosphatidylinositol-specific phospholipase C removed 48 +/- 4% of MC DAF indicating that MC DAF is anchored in the cell membrane by phosphatidylinositol groups; 3) DAF isolated from MC-inhibited complement-mediated hemolysis and demonstrated a molecular mass of 83 kDa. In conclusion, deposition of terminal complement components on human MC trigger new synthesis and membrane expression of DAF. Because DAF protects cells against complement-mediated lysis, we postulate that DAF may protect glomerular cells during IC and complement-mediated glomerulonephritis.
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