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Binding of von Willebrand factor cleaving protease ADAMTS13 to Lys-plasmin(ogen)
Authors:Shin Yongchol  Akiyama Masashi  Kokame Koichi  Soejima Kenji  Miyata Toshiyuki
Institution:Department of Molecular Pathogenesis, National Cerebral and Cardiovascular Center, Suita, 5-7-1 Fujishirodai, Suita, Osaka 5658565, Japan; Department of Applied Chemistry, Kogakuin University, 2665-1 Nakano-cho, Hachioji, Tokyo 1920015, Japan; and Research Department 1, Chemo-Sero-Therapeutic Research Institute, 1314-1 Kawabe, Kyokushi, Kikuchi, Kumamoto 8691298, Japan.
Abstract:The metalloprotease ADAMTS13 affects platelet adhesion and aggregation through depolymerization of von Willebrand factor (VWF) multimers. Identification of ADAMTS13-binding proteins would reveal the hitherto unrecognized mechanisms underlying microvascular thrombus. To identify ADAMTS13-binding proteins, we performed a yeast two-hybrid screen using the Cys-rich and spacer domains of ADAMTS13, the critical regions for the binding and cleavage of VWF, as a bait region. We identified Lys-plasminogen, an amino-terminal truncated form of plasminogen, as the binding protein to ADAMTS13. Intact Glu-plasminogen did not bind to ADAMTS13. Active-site blocked Lys-plasmin bound to ADAMTS13. Domain truncation of ADAMTS13 and elastase digest of plasminogen indicated that the Cys-rich and spacer domains of ADAMTS13 and the kringle 5 and protease domains of plasminogen served as the main binding sites. Biacore measurements revealed that Lys-plasminogen bound to ADAMTS13 with a K(d) of 1.9 ± 0.1 × 10(-7) M and Glu-plasminogen exhibited a significantly lower affinity to ADAMTS13. Specific activity measurements revealed that ADAMTS13 and Lys-plasmin were still active even after the binary complex was formed. The binding of ADAMTS13 to Lys-plasminogen may play an important role to localize these two proteases at sites of thrombus formation or vascular injury where the fibrinolytic system is activated.
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