Edano T, Inoue K, Yoshizaki H, Yamamoto S, Komine N, Tabunoki H, Sawada H, Koshi T, Murakami A, Wada Y, Ohkuchi M
Tokyo Research Laboratories, Kowa Co., Ltd., Higashimurayama, Japan.
Biol Pharm Bull. 1998 Apr;21(4):375-81. doi: 10.1248/bpb.21.375.
Thrombomodulin (TM) is a thrombin receptor on the endothelial cell surface, effective as an anticoagulant by changing procoagulant thrombin to an anticoagulant one. As rabbit TM with glycosaminoglycan (GAG) has a more potent anticoagulant activity than that without GAG, we expressed recombinant GAG-modified urinary thrombomodulin (GAG-UTM) in C-127 cells. The effect of an additional GAG chain on anticoagulant activity was investigated in comparison with unmodified recombinant UTM (r-UTM). In vitro, the activity of cleavage of fibrinogen by thrombin or prothrombinase activity was more potently depressed by GAG-UTM than by r-UTM, and the generation of activated protein C by TM-thrombin complex was accelerated by GAG modification. The acceleration of antithrombin III-dependent anticoagulant activity was shown only by GAG-UTM. Parameters like thrombin time, prothrombin time and activated partial thromboplastin time in human plasma were prolonged by GAG-UTM more than by r-UTM. In vivo, the effect of GAG-UTM and r-UTM in endotoxin-induced disseminated intravascular coagulation (DIC) rats was investigated using hematological parameters. GAG-UTM and r-UTM significantly reduced the decrease in fibrinogen and platelet number induced by endotoxin at the dosage of 0.1 and 1.0 mg/kg/h, respectively, suggesting that the antithrombotic effect of GAG-UTM in endotoxin-induced DIC rats was 10-fold as potent as that of r-UTM. GAG-UTM reduced the prolongation of the bleeding time induced by endotoxin, while r-UTM accelerated it. These results suggest that the addition of a GAG chain may increase availability as an anticoagulant.
血栓调节蛋白(TM)是内皮细胞表面的一种凝血酶受体,它通过将促凝血的凝血酶转变为抗凝血的凝血酶而发挥抗凝作用。由于带有糖胺聚糖(GAG)的兔TM比不带GAG的TM具有更强的抗凝活性,我们在C-127细胞中表达了重组GAG修饰的尿血栓调节蛋白(GAG-UTM)。与未修饰的重组UTM(r-UTM)相比,研究了额外的GAG链对抗凝活性的影响。在体外,GAG-UTM比r-UTM更有效地抑制凝血酶对纤维蛋白原的裂解活性或凝血酶原酶活性,并且GAG修饰加速了TM-凝血酶复合物生成活化蛋白C的过程。只有GAG-UTM显示出抗凝血酶III依赖性抗凝活性的增强。在人血浆中,GAG-UTM比r-UTM更显著地延长凝血酶时间、凝血酶原时间和活化部分凝血活酶时间。在体内,使用血液学参数研究了GAG-UTM和r-UTM对内毒素诱导的弥散性血管内凝血(DIC)大鼠的影响。GAG-UTM和r-UTM分别在0.1和1.0 mg/kg/h的剂量下,显著减轻了内毒素诱导的纤维蛋白原和血小板数量的减少,这表明GAG-UTM在内毒素诱导的DIC大鼠中的抗血栓形成作用是r-UTM的10倍。GAG-UTM减少了内毒素诱导的出血时间延长,而r-UTM则使其加速。这些结果表明,添加GAG链可能会增加其作为抗凝剂的有效性。