Excessively activated plasminogen in human plasma cleaves VWF multimers and reduces collagen-binding activity

Author:

Togashi Kenshi1,Suzuki Satoshi2,Morita Sae3,Ogasawara Yuki4,Imamura Yasutada123,Shin Yongchol123

Affiliation:

1. Graduate School of Engineering

2. Department of Applied Chemistry, Faculty of Engineering

3. Department of Chemistry and Life Science, School of Advanced Engineering, Kogakuin University, 2665-1, Nakano, Hachioji, Tokyo 1920015

4. Department of Analytical Biochemistry, Meiji Pharmaceutical University, Tokyo, Japan

Abstract

AbstractPlasmin (Pm) is a serine protease that can dissolve fibrin clots. Several possible functions of Pm in blood other than fibrinolysis have been proposed. To explore the effects of Pm on primary haemostasis, we evaluated the cleavage of von Willebrand factor multimers (VWFMs) in human plasma by streptokinase (SK)-activated plasminogen (Pg) and the binding ability of the digested VWFMs to collagen. SK-activated Pg and ADAMTS13 (a VWF-cleaving enzyme) in human plasma cleaved VWFMs in conformation-dependent manners through dialysis to the urea-containing buffer. However, VWFMs in human plasma under vortex-based shear stress were cleaved by SK-activated Pg but not by ADAMTS13. These results suggested that the VWFM-cleavage sites in human plasma are exposed to some extent by vortex-based shear stress for Pm but not for ADAMTS13. Additionally, we revealed that cleavage by SK-activated Pg reduced VWFMs’ binding ability to collagen, and VWFMs in human plasma were cleaved by Pm at several sites. These results suggest that SK-activated Pg degrades VWFMs, reduces their binding abilities to collagen and affects primary haemostasis. Because excessive Pg activation can degrade fibrinogen/fibrin, we propose that SK-activated Pg in blood may cause impaired primary and secondary haemostasis.

Funder

Strategic Research Foundation Grant-Aided Project for Private Universities from the Ministry of Education, Culture, Sports, Science and Technology [MEXT

Research Institute for Science and Technology of Kogakuin University

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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