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Von Willebrand factor (VWF) propeptide binding to VWF D'D3 domain attenuates platelet activation and adhesion

  • SUNY Buffalo
  • Reichert Inc.
  • BloodCenter of Wisconsin

Research output: Contribution to journalArticlepeer-review

30 Scopus citations

Abstract

Noncovalent association between the von Willebrand factor (VWF) propeptide (VWFpp) and mature VWF aids N-terminal multimerization and protein compartmentalization in storage granules. This association is currently thought to dissipate after secretion into blood. In the present study, we examined this proposition by quantifying the affinity and kinetics of VWFpp binding to mature VWF using surface plasmon resonance and by developing novel anti-VWF D'D3 mAbs. Our results show that the only binding site for VWFpp in mature VWF is in its D'D3 domain. At pH 6.2 and 10mM Ca2+, conditions mimicking intracellular compartments, VWFpp-VWF binding occurs with high affinity (K D = 0.2nM, koff = 8 × 10-5s -1). Significant, albeit weaker, binding (KD = 25nM, koff = 4 × 10-3 s-1) occurs under physiologic conditions of pH 7.4 and 2.5mM Ca2+. This interaction was also observed in human plasma (KD = 50nM). The addition of recombinantVWFppin both flow-chamber-based platelet adhesion assays and viscometer-based shear-induced platelet aggregation and activation studies reduced platelet adhesion and activation partially. Anti-D'D3 mAb DD3.1, which blocks VWFpp binding to VWF-D'D3, also abrogated platelet adhesion, as shown by shearinduced platelet aggregation and activation studies. Our data demonstrate that VWFpp binding to matureVWFoccurs in the circulation, which can regulate the hemostatic potential of VWF by reducing VWF binding to platelet GpIbα.

Original languageEnglish
Pages (from-to)4769-4778
Number of pages10
JournalBlood
Volume119
Issue number20
DOIs
StatePublished - May 17 2012

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