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Activation of von Willebrand factor via mechanical unfolding of its discontinuous autoinhibitory module

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AbstractVon Willebrand factor (VWF) activates in response to shear flow to initiate hemostasis, while aberrant activation could lead to thrombosis. Above a critical shear force, the A1 domain of VWF becomes activated and captures platelets via the GPIb-IX complex. Here we show that the shear-responsive element controlling VWF activation resides in the discontinuous autoinhibitory module (AIM) flanking A1. Application of tensile force in a single-molecule setting induces cooperative unfolding of the AIM to expose A1. The AIM-unfolding force is lowered by truncating either N- or C-terminal AIM region, type 2B VWD mutations, or binding of a ristocetin-mimicking monoclonal antibody, all of which could activate A1. Furthermore, the AIM is mechanically stabilized by the nanobody that comprises caplacizumab, the only FDA-approved anti-thrombotic drug to-date that targets VWF. Thus, the AIM is a mechano-regulator of VWF activity. Its conformational dynamics may define the extent of VWF autoinhibition and subsequent activation under force.

Contributor(s)
Publisher
Springer Science and Business Media LLC
Date Issued
2021-04-21
Language
English
Type
Genre
Form
electronic document
Media type
Creator role
Faculty
Identifier
2041-1723
Has this item been published elsewhere?
Volume
12
Volume
1
Arce, . N. A., Cao, . W., Brown, . A. K., Legan, . E. R., Wilson, . M. S., Xu, . E.-R., Berndt, . M. C., Emsley, . J., Zhang, . X. F., & Li, . R. (2021). (Vol. 1). https://doi.org/10.1038/s41467-021-22634-x
Arce, Nicholas A., Wenpeng Cao, Alexander K. Brown, Emily R. Legan, Moriah S. Wilson, Emma-Ruoqi Xu, Michael C. Berndt, Jonas Emsley, X. Frank Zhang, and Renhao Li. 2021. https://doi.org/10.1038/s41467-021-22634-x.
Arce, Nicholas A., et al. 21 Apr. 2021, https://doi.org/10.1038/s41467-021-22634-x.