Differentially regulated GPVI ectodomain shedding by multiple platelet–expressed proteinases

Author:

Bender Markus12,Hofmann Sebastian12,Stegner David12,Chalaris Athena3,Bösl Michael4,Braun Attila12,Scheller Jürgen3,Rose-John Stefan3,Nieswandt Bernhard12

Affiliation:

1. Rudolf Virchow Center for Experimental Biomedicine, University of Würzburg, Würzburg, Germany;

2. Chair of Vascular Medicine, University Hospital, University of Würzburg, Würzburg, Germany;

3. Institute of Biochemistry, Christian-Albrechts-University of Kiel, Kiel, Germany; and

4. Max-Planck-Institute for Biochemistry, Martinsried, Germany

Abstract

AbstractGlycoprotein VI (GPVI) mediates platelet activation on exposed subendothelial collagens at sites of vascular injury and thereby contributes to normal hemostasis, but also to the occlusion of diseased vessels in the setting of myocardial infarction or stroke. GPVI is an attractive target for antithrombotic therapy, particularly because previous studies have shown that anti-GPVI antibodies induce irreversible down-regulation of the receptor in circulating platelets by internalization and/or ectodomain shedding. Metalloproteinases of the a disintegrin and metalloproteinase (ADAM) family have been proposed to mediate this ectodomain shedding, but direct evidence for this is lacking. Here, we studied GPVI shedding in vitro and in vivo in newly generated mice with a megakaryocyte–specific ADAM10 deficiency and in Adam17ex/ex mice, which lack functional ADAM17. We demonstrate that GPVI cleavage in vitro can occur independently through either ADAM10 or ADAM17 in response to distinct stimuli. In contrast, antibody (JAQ1)–induced GPVI shedding in vivo occurred in mice lacking both ADAM10/ADAM17 in their platelets, suggesting the existence of a third GPVI cleaving platelet enzyme. This was supported by in vitro studies on ADAM10/ADAM17 double–deficient platelets. These results reveal that ectodomain shedding of GPVI can be mediated through multiple differentially regulated platelet–expressed proteinases with obvious therapeutic implications.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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