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血管性血友病因子裂解蛋白酶 ADAMTS13 与赖氨酰纤溶酶原(原)的结合。

Binding of von Willebrand factor cleaving protease ADAMTS13 to Lys-plasmin(ogen).

机构信息

Department of Molecular Pathogenesis, National Cerebral and Cardiovascular Center, Suita, 5-7-1 Fujishirodai, Suita, Osaka 5658565, Japan.

出版信息

J Biochem. 2012 Sep;152(3):251-8. doi: 10.1093/jb/mvs066. Epub 2012 Jun 7.

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.

摘要

金属蛋白酶 ADAMTS13 通过解聚 von Willebrand 因子 (VWF) 多聚体来影响血小板黏附和聚集。鉴定 ADAMTS13 结合蛋白将揭示迄今为止尚未被认识的微血管血栓形成的机制。为了鉴定 ADAMTS13 结合蛋白,我们使用 ADAMTS13 的富含半胱氨酸和间隔区作为诱饵区进行了酵母双杂交筛选,这是 VWF 结合和切割的关键区域。我们鉴定出赖氨酸纤溶酶原(plasminogen)是 ADAMTS13 的结合蛋白,它是纤溶酶原的氨基末端截断形式。完整的谷氨酸纤溶酶原(Glu-plasminogen)不与 ADAMTS13 结合。活性位点被阻断的赖氨酸纤溶酶原(Lys-plasmin)与 ADAMTS13 结合。ADAMTS13 的结构域截断和纤溶酶原的弹性蛋白酶消化表明,ADAMTS13 的富含半胱氨酸和间隔区以及纤溶酶原的kringle 5 和蛋白酶结构域是主要的结合位点。Biacore 测量显示,赖氨酸纤溶酶原(Lys-plasminogen)与 ADAMTS13 的结合 K(d) 值为 1.9 ± 0.1 × 10(-7) M,而谷氨酸纤溶酶原(Glu-plasminogen)对 ADAMTS13 的亲和力显著降低。活性测定显示,即使形成二元复合物,ADAMTS13 和赖氨酸纤溶酶仍具有活性。ADAMTS13 与赖氨酸纤溶酶原的结合可能在将这两种蛋白酶定位到血栓形成或血管损伤部位发挥重要作用,在这些部位纤维蛋白溶解系统被激活。

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