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活化蛋白C不受血浆中α-2-巨球蛋白的调节。

Activated protein C is not regulated by alpha-2-macroglobulin in plasma.

作者信息

Marlar R A, Kressin D C

机构信息

Department of Pediatrics, University of Colorado Health Sciences Center, Denver 80262.

出版信息

Thromb Res. 1989 May 1;54(3):177-85. doi: 10.1016/0049-3848(89)90225-9.

Abstract

Alpha-2-macroglobulin (a2M) is a wide spectrum plasma inhibitor which functions by a unique mechanism and is a secondary inhibitor of coagulation and fibrinolytic enzymes. Human activated protein C (APC) is the central enzyme of a major regulatory system of coagulation and fibrinolysis. APC is primarily regulated (inhibited) by a specific plasma inhibitor. We undertook this study to investigate the role of a2M as a secondary inhibitor of APC. APC did not interact with a2M by any of the known mechanisms of interaction. APC failed to bind and form the classic proteinase-a2M complex as seen with similar serine proteases, thrombin and trypsin. APC also failed to cleave the a2M molecule. Experiments, using purified APC and either purified a2M or plasma, failed to demonstrate APC binding to a2M in gel filtration chromatography. No enzymatic activity of APC or radiolabeled APC was demonstrated in the a2M peak. Using an immuno-enzymatic assay (Harpel, J Biol Chem 260:4257, 1985) for an a2M and enzyme complex, the amount of APC bound to a2M was less than 3% of the added APC (non-specific binding only); whereas in similar experiments with thrombin, 75-86% of the added trypsin or thrombin bound. These data demonstrate that APC is one of a small number of unique serine proteases that do not interact with a2M. The absence of sequence homology between the a2M 'bait region' and the APC substrate cleavage sequences appear to be the reason APC is not inhibited by a2M.

摘要

α-2-巨球蛋白(a2M)是一种广谱血浆抑制剂,其作用机制独特,是凝血酶和纤溶酶的次要抑制剂。人活化蛋白C(APC)是凝血和纤溶主要调节系统的核心酶。APC主要由一种特异性血浆抑制剂调节(抑制)。我们开展这项研究以探究a2M作为APC次要抑制剂的作用。APC未通过任何已知的相互作用机制与a2M相互作用。与类似的丝氨酸蛋白酶、凝血酶和胰蛋白酶不同,APC未能结合并形成经典的蛋白酶-a2M复合物。APC也未能切割a2M分子。使用纯化的APC以及纯化的a2M或血浆进行的实验,在凝胶过滤色谱中未能证明APC与a2M结合。在a2M峰中未检测到APC或放射性标记的APC的酶活性。使用针对a2M和酶复合物的免疫酶测定法(哈佩尔,《生物化学杂志》260:4257,1985),与a2M结合的APC量不到添加的APC的3%(仅非特异性结合);而在与凝血酶的类似实验中,添加的胰蛋白酶或凝血酶有75 - 86%发生结合。这些数据表明,APC是少数不与a2M相互作用的独特丝氨酸蛋白酶之一。a2M“诱饵区”与APC底物切割序列之间缺乏序列同源性似乎是APC不被a2M抑制的原因。

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