Synthetic glycopolymers and natural fucoidans cause human platelet aggregation via PEAR1 and GPIbα

Author:

Kardeby Caroline1ORCID,Fälker Knut1ORCID,Haining Elizabeth J.2ORCID,Criel Maarten3,Lindkvist Madelene1,Barroso Ruben24,Påhlsson Peter5,Ljungberg Liza U.1,Tengdelius Mattias6,Rainger G. Ed2,Watson Stephanie2,Eble Johannes A.7,Hoylaerts Marc F.3,Emsley Jonas48,Konradsson Peter6,Watson Steve P.24,Sun Yi24,Grenegård Magnus1ORCID

Affiliation:

1. Cardiovascular Research Centre, School of Medical Sciences, Örebro University, Örebro, Sweden;

2. Institute of Cardiovascular Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom;

3. Center for Molecular and Vascular Biology, Department of Cardiovascular Sciences, University of Leuven, Leuven, Belgium;

4. Centre of Membrane Proteins and Receptors, Universities of Birmingham and Nottingham, The Midlands, United Kingdom;

5. Division of Cell Biology, Department of Clinical and Experimental Medicine, and

6. Division of Organic Chemistry, Linköping University, Linköping, Sweden;

7. Institute of Physiological Chemistry and Pathobiochemistry, University of Münster, Münster, Germany; and

8. Division of Biomolecular Science and Medicinal Chemistry, Centre for Biomolecular Sciences, School of Pharmacy, University of Nottingham, Nottingham, United Kingdom

Abstract

Abstract Fucoidans are sulfated fucose-based polysaccharides that activate platelets and have pro- and anticoagulant effects; thus, they may have therapeutic value. In the present study, we show that 2 synthetic sulfated α-l-fucoside-pendant glycopolymers (with average monomeric units of 13 and 329) and natural fucoidans activate human platelets through a Src- and phosphatidylinositol 3-kinase (PI3K)–dependent and Syk-independent signaling cascade downstream of the platelet endothelial aggregation receptor 1 (PEAR1). Synthetic glycopolymers and natural fucoidan stimulate marked phosphorylation of PEAR1 and Akt, but not Syk. Platelet aggregation and Akt phosphorylation induced by natural fucoidan and synthetic glycopolymers are blocked by a monoclonal antibody to PEAR1. Direct binding of sulfated glycopolymers to epidermal like growth factor (EGF)–like repeat 13 of PEAR1 was shown by avidity-based extracellular protein interaction screen technology. In contrast, synthetic glycopolymers and natural fucoidans activate mouse platelets through a Src- and Syk-dependent pathway regulated by C-type lectin-like receptor 2 (CLEC-2) with only a minor role for PEAR1. Mouse platelets lacking the extracellular domain of GPIbα and human platelets treated with GPIbα-blocking antibodies display a reduced aggregation response to synthetic glycopolymers. We found that synthetic sulfated glycopolymers bind directly to GPIbα, substantiating that GPIbα facilitates the interaction of synthetic glycopolymers with CLEC-2 or PEAR1. Our results establish PEAR1 as the major signaling receptor for natural fucose-based polysaccharides and synthetic glycopolymers in human, but not in mouse, platelets. Sulfated α-l-fucoside-pendant glycopolymers are unique tools for further investigation of the physiological role of PEAR1 in platelets and beyond.

Publisher

American Society of Hematology

Subject

Hematology

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