Neutrophil-Mediated Proteolysis of Thrombospondin-1 Promotes Platelet Adhesion and String Formation

Author:

Seif Katharina1,Alidzanovic Lejla1,Tischler Barbara1,Ibrahim Nahla1,Zagrapan Branislav1,Rauscher Sabine2,Salzmann Manuel3,Hell Lena4,Mauracher Lisa-Marie4,Budde Ulrich5,Schmid Johannes3,Jilma Bernd6,Pabinger Ingrid4,Assinger Alice7,Starlinger Patrick1,Brostjan Christine1

Affiliation:

1. Department of Surgery, Surgical Research Laboratory, Medical University of Vienna, Vienna, Austria

2. Core Facility Imaging, Medical University of Vienna, Vienna, Austria

3. Centre for Physiology and Pharmacology, Institute of Vascular Biology and Thrombosis Research, Medical University of Vienna, Vienna, Austria

4. Clinical Division of Haematology and Haemostaseology, Department of Medicine I, Medical University of Vienna, Vienna, Austria

5. MEDILYS Laborgesellschaft mbH, Hamburg, Germany

6. Department of Clinical Pharmacology, Medical University of Vienna, Vienna, Austria

7. Centre for Physiology and Pharmacology, Institute of Physiology, Medical University of Vienna, Vienna, Austria

Abstract

AbstractThrombospondin-1 (TSP-1) is primarily expressed by platelets and endothelial cells (ECs) and rapidly released upon their activation. It functions in haemostasis as a bridging molecule in platelet aggregation, by promoting platelet adhesion to collagen and by protecting von Willebrand factor strings from degradation. In blood of patients undergoing surgery and in co-cultures of neutrophils with platelets or ECs, we observed proteolysis of the 185 kDa full-length TSP-1 to a 160-kDa isoform. We hypothesized that TSP-1 processing may alter its haemostatic properties. Selective enzyme inhibitors in co-cultures revealed that neutrophil proteases elastase and cathepsin G mediate TSP-1 processing. The cut site of cathepsin G was mapped to TSP-1 amino acids R237/T238 by Edman sequencing. Formation of neutrophil extracellular traps protected TSP-1 from complete degradation and promoted controlled processing to the 160-kDa isoform. Haemostatic properties were tested by platelet aggregation, adhesion, coagulation and string formation under flow. Platelets from TSP-1 deficient mice did not differ from wild-type in platelet aggregation but showed severe impairment of platelet adhesion to collagen and string formation under flow. Reconstitution experiments revealed that the 160-kDa TSP-1 isoform was markedly more potent than the 185-kDa full-length molecule in restoring function. Thus, TSP-1 processing by neutrophil proteases yields a 160-kDa isoform which shows enhanced potency to promote platelet adhesion and string formation. This finding reveals a novel mechanism of neutrophil-mediated thrombus formation and provides first evidence for the impact of TSP-1 proteolysis on its haemostatic properties.

Publisher

Georg Thieme Verlag KG

Subject

Hematology

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