P-selectin anchors newly released ultralarge von Willebrand factor multimers to the endothelial cell surface

Author:

Padilla Arnoldo1,Moake Joel L.1,Bernardo Aubrey1,Ball Chalmette1,Wang Yongtao1,Arya Maneesh1,Nolasco Leticia1,Turner Nancy1,Berndt Michael C.1,Anvari Bahman1,López José A.1,Dong Jing-Fei1

Affiliation:

1. From the Section of Thrombosis Research, Department of Medicine, Baylor College of Medicine, Houston, TX; Institute of Bioengineering and Biosciences, Rice University, Houston, TX; Department of Biochemistry and Molecular Biology, Monash University, Victoria, Australia.

Abstract

Abstractvon Willebrand factor (VWF) released from endothelium is ultralarge (UL) and hyperreactive. If released directly into plasma, it can spontaneously aggregate platelets, resulting in systemic thrombosis. This disastrous consequence is prevented by the ADAMTS13 (ADisintegrin and Metalloprotease with ThromboSpondin motif) cleavage of ULVWF into smaller, less active forms. We previously showed that ULVWF, on release, forms extremely long stringlike structures. ADAMTS13 cleaves these strings under flow significantly faster than it does under static conditions. As ULVWF tethering to endothelium is important for its rapid proteolysis, we investigated 2 molecules for their potential to anchor the ULVWF strings: P-selectin and integrin αvβ3. We demonstrated that P-selectin anchors ULVWF to endothelium by several means. First, Chinese hamster ovary (CHO) cells expressing P-selectin specifically adhered to immobilized ULVWF and ULVWF-coated beads to immobilized P-selectin. Second, an anti-VWF antibody coimmunoprecipitates P-selectin from the histamine-activated endothelial cells. Third, P-selectin antibody or soluble P-selectin, but not a αvβ3 antibody, RGDS peptide, or heparin, blocked the formation of ULVWF strings. Fourth, P-selectin expression was in clusters predominantly along the ULVWF strings. Finally, the strength of the minimal ULVWF–P-selectin bond was measured to be 7.2 pN. We, therefore, conclude that P-selectin may anchor ULVWF strings to endothelial cells and facilitate their cleavage by ADAMTS13.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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