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  Autoregulation of von Willebrand factor function by a disulfide bond switch

Butera, D., Passam, F., Ju, L., Cook, K. M., Woon, H., Aponte-Santamaría, C., et al. (2018). Autoregulation of von Willebrand factor function by a disulfide bond switch. Science Advances, 4(2): 1477. doi:10.1126/sciadv.aaq1477.

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 Creators:
Butera, Diego1, Author
Passam, Freda2, Author
Ju, Lining3, Author
Cook, Kristina M.1, Author
Woon, Heng1, Author
Aponte-Santamaría, Camilo4, 5, Author
Gardiner, Elizabeth6, Author
Davis, Amanda K.7, Author
Murphy, Deirdre A.8, Author
Bronowska, Agnieszka4, Author
Luken, Brenda M.9, Author
Baldauf, Carsten10, Author           
Jackson, Shaun3, Author
Andrews, Robert11, Author
Gräter, Frauke4, Author
Hogg, Philip J.1, 12, Author
Affiliations:
1The Centenary Institute, Newtown, New South Wales, Australia, ou_persistent22              
2St George Clinical School, Kogarah, New South Wales, Australia, ou_persistent22              
3Heart Research Institute and Charles Perkins Centre, University of Sydney, Sydney, New South Wales, Australia, ou_persistent22              
4Heidelberg Institute for Theoretical Studies, Schloß-Wolfsbrunnenweg 35, Heidelberg, Germany, ou_persistent22              
5Interdisciplinary Center for Scientific Computing, Heidelberg University, Heidelberg, Germany, ou_persistent22              
6Department of Cancer Biology and Therapeutics, John Curtin School of Medicine, Australian National University, Canberra, Australia, ou_persistent22              
7Haematology Unit, Alfred Hospital, Melbourne, Victoria, Australia, ou_persistent22              
8Intensive Care Unit, Alfred Hospital, Melbourne, Victoria, Australia, ou_persistent22              
9Sanquin Research and Landsteiner Laboratory, Academic Medical Center, University of Amsterdam, Amsterdam, Netherlands, ou_persistent22              
10Theory, Fritz Haber Institute, Max Planck Society, ou_634547              
11Australian Centre for Blood Diseases, Monash University, Melbourne, Victoria, Australia, ou_persistent22              
12National Health and Medical Research Council Clinical Trials Centre, University of Sydney, Sydney, Australia, ou_persistent22              

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 Abstract: Force-dependent binding of platelet glycoprotein Ib (GPIb) receptors to plasma von Willebrand factor (VWF) plays a key role in hemostasis and thrombosis. Previous studies have suggested that VWF activation requires force-induced exposure of the GPIb binding site in the A1 domain that is autoinhibited by the neighboring A2 domain. However, the biochemical basis of this “mechanopresentation” remains elusive. From a combination of protein chemical, biophysical, and functional studies, we find that the autoinhibition is controlled by the redox state of an unusual disulfide bond near the carboxyl terminus of the A2 domain that links adjacent cysteine residues to form an eight-membered ring. Only when the bond is cleaved does the A2 domain bind to the A1 domain and block platelet GPIb binding. Molecular dynamics simulations indicate that cleavage of the disulfide bond modifies the structure and molecular stresses of the A2 domain in a long-range allosteric manner, which provides a structural explanation for redox control of the autoinhibition. Significantly, the A2 disulfide bond is cleaved in ~75% of VWF subunits in healthy human donor plasma but in just ~25% of plasma VWF subunits from heart failure patients who have received extracorporeal membrane oxygenation support. This suggests that the majority of plasma VWF binding sites for platelet GPIb are autoinhibited in healthy donors but are mostly available in heart failure patients. These findings demonstrate that a disulfide bond switch regulates mechanopresentation of VWF.

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Language(s): eng - English
 Dates: 2017-10-062018-01-302018-02-28
 Publication Status: Published online
 Pages: 13
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1126/sciadv.aaq1477
 Degree: -

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Title: Science Advances
  Other : Sci. Adv.
Source Genre: Journal
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Publ. Info: Washington : AAAS
Pages: 13 Volume / Issue: 4 (2) Sequence Number: 1477 Start / End Page: - Identifier: ISSN: 2375-2548
CoNE: https://pure.mpg.de/cone/journals/resource/2375-2548