Complement regulation in human atherosclerotic coronary lesions. Immunohistochemical evidence that C4b-binding
Riina Oksjoki1, Petri T Kovanen, Mikko I Mäyränpää
1Wihuri Research Institute, Kalliolinnantie 4, FIN-00140 Helsinki, Finland.
Insights
C4b-binding protein (C4bp) regulates the classical complement pathway in atherosclerotic lesions, preventing C5b-9 formation and aiding in apoptotic cell clearance.
Area of Science:
- Immunology
- Cardiovascular Pathology
- Complement System Biology
Background:
- The complement system is implicated in atherosclerotic lesion inflammation.
- C4b-binding protein (C4bp) is a key inhibitor of the classical complement pathway.
Purpose of the Study:
- To investigate the presence and localization of C4bp in human atherosclerotic lesions.
- To correlate C4bp with complement activation products and protein S.
Main Methods:
- Immunohistochemistry of human coronary arteries.
- Affinity chromatography for C4bp-proteoglycan interactions.
- Analysis of C4bp association with protein S and apoptotic cells.
Main Results:
- C4bp is present in atherosclerotic lesions but absent in normal arteries.
- C4bp interacts with arterial proteoglycans and is found with IgM and C4.
- C5b-9 is absent where C4bp is present, suggesting alternative pathway activation.
Conclusions:
- C4bp regulates the classical complement pathway in atherosclerotic lesions.
- The classical pathway, regulated by C4bp, may clear apoptotic cells rather than forming C5b-9.
Objective:
The complement system is activated in human atherosclerotic lesions and may hence aggravate local inflammation. We studied the presence and localization of C4b-binding protein (C4bp), the major inhibitor of the classical complement pathway, in human atherosclerotic lesions in relation to complement activation products and protein S, which circulates in complex with C4bp.
Methods And Results:
Immunohistochemistry of human coronary arteries showed C4bp to be virtually absent in normal arteries but present in early and advanced atherosclerotic lesions. In the lesions, C4bp is associated with proteoglycans, and affinity chromatography showed that C4bp interacts with human arterial proteoglycans. Areas containing C4bp also contained IgM and C4 suggesting that C4bp is involved in the regulation of the classical complement pathway. However, C5b-9 was virtually absent in these areas but, instead, colocalized with properdin deeper in the intima, suggesting that C5b-9 is formed by the alternative complement pathway. A fraction of C4bp was associated with protein S and apoptotic cells.
Conclusions:
The results indicate that C4bp regulates the classical complement pathway in human atherosclerotic lesions. Thus, unlike the alternative pathway, the classical complement pathway does not generate C5b-9, but is likely to be involved in the clean-up of apoptotic cells and cell debris in the arterial intima.
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