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人血清白蛋白片段对蚯蚓纤溶酶的化学修饰及该蛋白酶作为治疗性酶的表征

Chemical modification of earthworm fibrinolytic enzyme with human serum albumin fragment and characterization of the protease as a therapeutic enzyme.

作者信息

Nakajima N, Ishihara K, Sugimoto M, Sumi H, Mikuni K, Hamada H

机构信息

Department of Nutritional Science, Okayama Prefectural University, Japan.

出版信息

Biosci Biotechnol Biochem. 1996 Feb;60(2):293-300. doi: 10.1271/bbb.60.293.

DOI:10.1271/bbb.60.293
PMID:9063978
Abstract

The strongest fibrinolytic protease (F-III-2) in the six enzyme proteins purified from earthworm, Lumbricus rubellus [N. Nakajima et al., Biosci. Biotech. Biochem., 57, 1726-1730 (1993)] has been modified chemically with fragmented human serum albumin (mol. wt., 10,000-30,000). The modified enzyme lost the antigenicity of the native enzyme and reacted with the antisera against human serum albumin, the human serum albumin fragments, and the conjugate with the native enzyme to form precipitation lines, which fused with each other. The conjugate was significantly more resistant to inactivation by protease inhibitors in rat plasma. The enzyme was a non-hemorrhagic protein and did not induce platelet aggregation. The enzyme kept potent proteolytic activity for fibrin and fibrinogen than that of human plasmin. The enzyme easily solubilized actual fibrin clots (thrombi) of whole blood induced by thrombin in a rat's vena cava. The continuous fibrinolysis for fibrin suspension in an enzyme reactor system using the modified enzyme immobilized to oxirane-activated acrylic beads has been achieved without any inactivation of the activity at least for more than 1 month. The N-terminal amino acid sequence of the protein was also investigated and the sequence showed local similarity to those of the serine proteases such as plasmin and chymotrypsin.

摘要

从红正蚓(Lumbricus rubellus)中纯化出的六种酶蛋白中,最强的纤溶蛋白酶(F-III-2)[N. 中岛等人,《生物科学、生物技术与生物化学》,57,1726 - 1730(1993)]已用分子量为10,000 - 30,000的人血清白蛋白片段进行了化学修饰。修饰后的酶失去了天然酶的抗原性,并与人血清白蛋白、人血清白蛋白片段以及与天然酶的偶联物的抗血清发生反应,形成沉淀线,这些沉淀线相互融合。该偶联物对大鼠血浆中的蛋白酶抑制剂的失活作用具有显著更高的抗性。该酶是一种非出血性蛋白,不会诱导血小板聚集。与人类纤溶酶相比,该酶对纤维蛋白和纤维蛋白原保持着更强的蛋白水解活性。该酶能轻易溶解由凝血酶诱导的大鼠腔静脉全血中的实际纤维蛋白凝块(血栓)。使用固定在环氧乙烷活化丙烯酸珠上的修饰酶,在酶反应器系统中对纤维蛋白悬浮液进行连续纤溶,至少在一个多月内活性没有任何失活。还对该蛋白的N端氨基酸序列进行了研究,该序列显示出与纤溶酶和胰凝乳蛋白酶等丝氨酸蛋白酶的序列有局部相似性。

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