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Published on: July 25, 2013
Structure of compstatin in complex with complement component C3c reveals a new mechanism of complement inhibition
Bert J C Janssen1, Els F Halff, John D Lambris
1Crystal and Structural Chemistry, Bijvoet Center for Biomolecular Research, Department of Chemistry, Faculty of Sciences, Utrecht University, 3584 CH Utrecht, The Netherlands.
Insights
Compstatin peptide inhibits complement component C3 activation, a key step in immune diseases. Structural analysis reveals its binding site on C3, crucial for developing compstatin therapeutics.
Area of Science:
- Immunology
- Structural Biology
- Biochemistry
Background:
- Complement activation contributes to tissue injury and immune complex diseases.
- Compstatin is a peptide inhibitor of complement component C3 activation.
- The precise binding site and mechanism of compstatin remain unknown.
Purpose of the Study:
- To determine the crystal structure of compstatin in complex with C3c.
- To elucidate the binding site and mode of action of compstatin on C3.
Main Methods:
- X-ray crystallography of compstatin complexed with C3c.
Main Results:
- The crystal structure revealed compstatin binds to macroglobulin domains 4 and 5 of C3c.
- The binding site is located within the stable MG-ring and is distant from other known sites.
- Compstatin undergoes a conformational change upon binding, while C3c remains unaltered.
Conclusions:
- Compstatin binding to C3 blocks complement activation by sterically hindering substrate access to convertase complexes.
- These findings provide structural insights for the therapeutic development of compstatin.
Abstract:
Undesired complement activation is a major cause of tissue injury in various pathological conditions and contributes to several immune complex diseases. Compstatin, a 13-residue peptide, is an effective inhibitor of the activation of complement component C3 and thus blocks a central and crucial step in the complement cascade. The precise binding site on C3, the structure in the bound form, and the exact mode of action of compstatin are unknown. Here we present the crystal structure of compstatin in complex with C3c, a major proteolytic fragment of C3. The structure reveals that the compstatin-binding site is formed by the macroglobulin (MG) domains 4 and 5. This binding site is part of the structurally stable MG-ring formed by domains MG 1-6 and is far away from any other known binding site on C3. Compstatin does not alter the conformation of C3c, whereas compstatin itself undergoes a large conformational change upon binding. We propose a model in which compstatin sterically hinders the access of the substrate C3 to the convertase complexes, thus blocking complement activation and amplification. These insights are instrumental for further development of compstatin as a potential therapeutic.
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