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A Paradoxical Role of ADAMTS13: Enhancing Collagen-Induced Platelet Aggregation and Activation via AKT
Huang Dong1, Yingying Mao2, X Long Zheng1,3
1The University of Kansas Medical Center, Department of Pathology and Laboratory Medicine, Kansas, United States, Kansas City.
Abstract:
A Disintegrin and Metalloprotease with ThromboSpondin type 1 repeats, 13 (ADAMTS13) is an anti-thrombotic metalloenzyme that cleaves ultra-large von Willebrand factor, preventing platelet accumulation at sites of vascular injury. Deficiency of plasma ADAMTS13 activity leads to thrombotic thrombocytopenic purpura and is a risk factor for the development of other inflammatory thrombotic disorders. However, it is not known if ADAMTS13 has other biological functions.The present study aims to determine the effects of ADAMTS13 on agonist-induced platelet activation and aggregation and its underlying molecular mechanisms.A light transmission assay was used to determine platelet aggregation; flow cytometry was used to determine platelet activation, phosphatidylserine (PS) exposure, and AKT phosphorylation.A full-length recombinant ADAMTS13 but not its truncated form (MDTCS or TSP2-CUB) enhanced a fibrillar collagen-induced aggregation of isolated human and murine platelets. This enhancing effect was ADAMTS13 concentration- and conformation-dependent but did not depend on its proteolytic activity. Interestingly, recombinant ADAMTS13 did not enhance AYPGKF, an agonist of protease-activated receptor 4, or 2MeSADP-induced murine platelet aggregation. Flow cytometry demonstrated that recombinant ADAMTS13 plus a fibrillar collagen resulted in significantly more activation and PS exposure of murine platelets than the collagen did alone, likely via an increase in AKT phosphorylation.Our results demonstrate a novel but paradoxical role of recombinant ADAMTS13, possibly promoting hemostasis while inhibiting thrombosis at the same time. The findings provide novel insight into the excellent therapeutic efficacy of recombinant ADAMTS13 for thrombosis but without an increased risk of bleeding.
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