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用纤溶酶原kringle 1替换组织型纤溶酶原激活剂的手指和生长因子结构域。一种含有与异源蛋白相连的高亲和力纤维蛋白结合结构域的新型嵌合体的生化和药理学特性。

Replacement of finger and growth factor domains of tissue plasminogen activator with plasminogen kringle 1. Biochemical and pharmacological characterization of a novel chimera containing a high affinity fibrin-binding domain linked to a heterologous protein.

作者信息

Langer-Safer P R, Ahern T J, Angus L B, Barone K M, Brenner M J, Horgan P G, Morris G E, Stoudemire J B, Timony G A, Larsen G R

机构信息

Genetics Institute, Inc., Cambridge, Massachusetts 02140.

出版信息

J Biol Chem. 1991 Feb 25;266(6):3715-23.

PMID:1847387
Abstract

A novel triple-kringle plasminogen activator protein, PK1 delta FE1X, has been produced which is a genetic chimera between the fibrin binding kringle 1 domain of plasminogen and the two kringles and serine protease domains of naturally occurring wild-type tissue plasminogen activator (wt t-PA). This chimera also contains a modification to prevent high mannose type N-linked glycosylation on kringle 1 of t-PA. PK1 delta FE1X is biochemically and fibrinolytically similar to wt t-PA in vitro but retains the decreased plasma clearance rate characteristic of other t-PA variants which lack fibronectin finger-like and epidermal growth factor domains. The serine protease domain of PK1 delta FE1X exhibits the amidolytic activity characteristic of wt t-PA. In an indirect coupled plasminogen activator assay, the specific activity of PK1 delta FE1X is approximately 1.4 times greater than that of wt t-PA. In a fibrin film-binding assay, greater binding to untreated fibrin is observed with wt t-PA than with PK1 delta FE1X. However, following limited plasmin digestion of the fibrin film, PK1 delta FE1X binding increases to the level observed with wt t-PA. The incremental binding to plasmin-digested fibrin observed with PK1 delta FE1X is eliminated if plasmin digestion of the fibrin film is followed by carboxypeptidase B treatment. This result suggests that plasminogen kringle 1 binds plasmin-digested fibrin even after recombination with a heterologous protein. The fibrinolytic activity of PK1 delta FE1X in human plasma clot lysis assays was similar to that of wt t-PA at activator concentrations of approximately 1 microgram/ml. At substantially lower concentrations, approximately 0.1 microgram/ml, PK1 delta FE1X was only slightly less active than wt t-PA. Pharmacokinetic analysis showed that wt t-PA activity is cleared approximately 15 times as rapidly as PK1 delta FE1X following intravenous bolus injection. In a rabbit jugular vein clot lysis model, intravenous bolus injection of 0.06 mg/kg of PK1 delta FE1X showed greater thrombolytic potency than a similar administration of 0.5 mg/kg of wt t-PA. Thus it appears that in vitro exon shuffling techniques can be used to generate novel fibrinolytic agents which biochemically and pharmacologically represent the combination of individual domains of naturally occurring proteins.

摘要

已产生一种新型的三结构域kringle纤溶酶原激活蛋白PK1δFE1X,它是纤溶酶原的纤维蛋白结合kringle 1结构域与天然野生型组织纤溶酶原激活剂(wt t-PA)的两个kringle结构域和丝氨酸蛋白酶结构域之间的基因嵌合体。这种嵌合体还经过修饰,以防止t-PA的kringle 1上出现高甘露糖型N-连接糖基化。PK1δFE1X在体外的生化和纤溶特性与wt t-PA相似,但保留了其他缺乏纤连蛋白指状结构域和表皮生长因子结构域的t-PA变体所具有的血浆清除率降低的特征。PK1δFE1X的丝氨酸蛋白酶结构域表现出wt t-PA的酰胺水解活性特征。在间接偶联纤溶酶原激活剂测定中,PK1δFE1X的比活性约为wt t-PA的1.4倍。在纤维蛋白膜结合测定中,观察到wt t-PA与未处理的纤维蛋白的结合比PK1δFE1X更强。然而,在对纤维蛋白膜进行有限的纤溶酶消化后,PK1δFE1X的结合增加到与wt t-PA观察到的水平。如果在纤维蛋白膜的纤溶酶消化后用羧肽酶B处理,则PK1δFE1X对纤溶酶消化的纤维蛋白的增量结合会消除。该结果表明,即使与异源蛋白重组后,纤溶酶原kringle 1仍能结合纤溶酶消化的纤维蛋白。在人血浆凝块溶解测定中,当激活剂浓度约为1微克/毫升时,PK1δFE1X的纤溶活性与wt t-PA相似。在低得多的浓度下,约0.1微克/毫升,PK1δFE1X的活性仅略低于wt t-PA。药代动力学分析表明,静脉推注后,wt t-PA活性的清除速度约为PK1δFE1X的15倍。在兔颈静脉凝块溶解模型中,静脉推注0.06毫克/千克的PK1δFE1X显示出比类似给药0.5毫克/千克的wt t-PA更高的溶栓效力。因此,体外外显子改组技术似乎可用于生成新型纤溶药物,这些药物在生化和药理上代表天然存在蛋白质的各个结构域的组合。

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