Factor B structure provides insights into activation of the central protease of the complement system

Publication date

2007

Authors

Milder, F.J.
Gomes, L.
Schouten, A.ISNI 0000000396782264
Janssen, B.J.C.
Huizinga, Eric GISNI 0000000388478852
Romijn, R.A.ISNI 0000000397069022
Hemrika, W.ISNI 0000000396416600
Roos, A
Daha, M.R.
Gros, PietISNI 0000000395560467

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DOI

Document Type

Article
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Abstract

Factor B is the central protease of the complement system of immune defense. Here, we present the crystal structure of human factor B at 2.3-A° resolution, which reveals how the five-domain proenzyme is kept securely inactive. The canonical activation helix of the Von Willebrand factor A (VWA) domain is displaced by a helix from the preceding domain linker. The two helices conformationally link the scissile-activation peptide and the metal ion–dependent adhesion site required for binding of the ligand C3b. The data suggest that C3b binding displaces the three N-terminal control domains and reshuffles the two central helices. Reshuffling of the helices releases the scissile bond for final proteolytic activation and generates a new interface between the VWA domain and the serine protease domain. This allosteric mechanism is crucial for tight regulation of the complementamplification step in the immune response.

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Citation

Milder, F J, Gomes, L, Schouten, A, Janssen, B J C, Huizinga, E G, Romijn, R A, Hemrika, W, Roos, A, Daha, M R & Gros, P 2007, 'Factor B structure provides insights into activation of the central protease of the complement system', Nature Structural and Molecular Biology, vol. 14, pp. 224-228.