Factor B structure provides insights into activation of the central protease of the complement system
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2007
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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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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.