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Published on: June 15, 2019
Contribution of chondroitin sulfate A to the binding of complement proteins to activated platelets
Osama A Hamad1, Per H Nilsson, Maria Lasaosa
1Division of Clinical Immunology, Rudbeck Laboratory C5, Uppsala University, Uppsala, Sweden.
Insights
Chondroitin sulfate A (CS-A) on activated platelets binds complement proteins C1q, C4b-binding protein (C4BP), and factor H. CS-A-bound C1q amplifies immune complex binding, suggesting a role in immune complex diseases.
Area of Science:
- Immunology
- Biochemistry
- Platelet Biology
Background:
- Chondroitin sulfate A (CS-A) is exposed on activated platelets.
- The interaction of CS-A with complement system proteins is not fully understood.
Purpose of the Study:
- To investigate the role of CS-A in the binding of complement recognition molecule C1q and complement regulators C1 inhibitor (C1INH), C4b-binding protein (C4BP), and factor H to platelets.
Main Methods:
- Affinity chromatography using CS-A conjugated Sepharose.
- Western blotting and mass spectrometry for protein identification.
- Surface plasmon resonance for binding analysis.
- Inhibition studies using CS-A-specific monoclonal antibody.
Main Results:
- C1q was identified as the primary protein binding to CS-A, with C4BP and factor H also interacting.
- Binding of C1INH was dependent on C1q.
- C1q, C4BP, and factor H were confirmed to bind activated platelets, with binding inhibited by a CS-A-specific antibody.
- CS-A-bound C1q amplified immune complex binding to activated platelets.
Conclusions:
- CS-A contributes to the binding of C1q, C4BP, and factor H to activated platelets.
- CS-A represents a novel binding site for these complement proteins on platelets.
- CS-A-bound C1q may play a role in amplifying immune complex deposition in immune complex diseases.
Background:
Exposure of chondroitin sulfate A (CS-A) on the surface of activated platelets is well established. The aim of the present study was to investigate to what extent CS-A contributes to the binding of the complement recognition molecule C1q and the complement regulators C1 inhibitor (C1INH), C4b-binding protein (C4BP), and factor H to platelets.
Principal Findings:
Human blood serum was passed over Sepharose conjugated with CS-A, and CS-A-specific binding proteins were identified by Western blotting and mass spectrometric analysis. C1q was shown to be the main protein that specifically bound to CS-A, but C4BP and factor H were also shown to interact. Binding of C1INH was dependent of the presence of C1q and then not bound to CS-A from C1q-depleted serum. The specific interactions observed of these proteins with CS-A were subsequently confirmed by surface plasmon resonance analysis using purified proteins. Importantly, C1q, C4BP, and factor H were also shown to bind to activated platelets and this interaction was inhibited by a CS-A-specific monoclonal antibody, thereby linking the binding of C1q, C4BP, and factor H to exposure of CS-A on activated platelets. CS-A-bound C1q was also shown to amplify the binding of model immune complexes to both microtiter plate-bound CS-A and to activated platelets.
Conclusions:
This study supports the concept that CS-A contributes to the binding of C1q, C4BP, and factor H to platelets, thereby adding CS-A to the previously reported binding sites for these proteins on the platelet surface. CS-A-bound C1q also seems to amplify the binding of immune complexes to activated platelets, suggesting a role for this molecule in immune complex diseases.
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