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Publication Detail
Flexibility in Mannan-Binding Lectin-Associated Serine Proteases-1 and -2 Provides Insight on Lectin Pathway Activation.
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Publication Type:Journal article
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Publication Sub Type:Article
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Authors:Nan R, Furze CM, Wright DW, Gor J, Wallis R, Perkins SJ
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Publication date:07/02/2017
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Journal:Structure
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Status:Published
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Country:United States
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PII:S0969-2126(16)30404-X
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Language:eng
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Keywords:X-ray scattering, analytical ultracentrifugation, atomistic modeling, complement, lectin pathway, rat MASP
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Author URL:
Abstract
The lectin pathway of complement is activated by complexes comprising a recognition component (mannose-binding lectin, serum ficolins, collectin-LK or collectin-K1) and a serine protease (MASP-1 or MASP-2). MASP-1 activates MASP-2, and MASP-2 cleaves C4 and C4b-bound C2. To clarify activation, new crystal structures of Ca(2+)-bound MASP dimers were determined, together with their solution structures from X-ray scattering, analytical ultracentrifugation, and atomistic modeling. Solution structures of the CUB1-EGF-CUB2 dimer of each MASP indicate that the two CUB2 domains were tilted by as much as 90° compared with the crystal structures, indicating considerable flexibility at the EGF-CUB2 junction. Solution structures of the full-length MASP dimers in their zymogen and activated forms revealed similar structures that were much more bent than anticipated from crystal structures. We conclude that MASP-1 and MASP-2 are flexible at multiple sites and that this flexibility may permit both intra- and inter-complex activation.
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