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MASP-1诱导的凝血——MASP-1激活凝血酶原的首个模型。

MASP-1 Induced Clotting--The First Model of Prothrombin Activation by MASP-1.

作者信息

Jenny Lorenz, Dobó József, Gál Péter, Schroeder Verena

机构信息

University Clinic of Haematology, Haemostasis Research Laboratory, University Hospital Bern, Bern, Switzerland.

Department of Clinical Research, University of Bern, Bern, Switzerland.

出版信息

PLoS One. 2015 Dec 8;10(12):e0144633. doi: 10.1371/journal.pone.0144633. eCollection 2015.

Abstract

Mannan-binding lectin-associated serine protease-1 (MASP-1), a protein of the complement lectin pathway, resembles thrombin in terms of structural features and substrate specificity. Due to its interplay with several coagulation factors, it has the ability to induce fibrin clot formation independent of the usual coagulation activation pathways. We have recently shown that MASP-1 activates prothrombin and identified arginine (R) 155, R271, and R393 as potential cleavage sites. FXa cleaves R320 instead of R393, and thrombin cleaves R155 and R284 in prothrombin. Here we have used three arginine-to-glutamine mutants of prothrombin, R271Q, R320Q, R393Q and the serine-to-alanine active site mutant S525A to investigate in detail the mechanism of MASP-1 mediated prothrombin activation. Prothrombin wildtype and mutants were digested with MASP-1 and the cleavage products were analysed by SDS-PAGE and N-terminal sequencing. A functional clotting assay was performed by thrombelastography. We have found that MASP-1 activates prothrombin via two simultaneous pathways, either cleaving at R271 or R393 first. Both pathways result in the formation of several active alternative thrombin species. Functional studies confirmed that both R393 and R320 are required for prothrombin activation by MASP-1, whereas R155 is not considered to be an important cleavage site in this process. In conclusion, we have described for the first time a detailed model of prothrombin activation by MASP-1.

摘要

甘露聚糖结合凝集素相关丝氨酸蛋白酶-1(MASP-1)是补体凝集素途径中的一种蛋白质,在结构特征和底物特异性方面类似于凝血酶。由于它与多种凝血因子相互作用,它有能力独立于通常的凝血激活途径诱导纤维蛋白凝块形成。我们最近发现MASP-1激活凝血酶原,并确定精氨酸(R)155、R271和R393为潜在的切割位点。FXa切割R320而非R393,凝血酶切割凝血酶原中的R155和R284。在此,我们使用了凝血酶原的三种精氨酸到谷氨酰胺突变体R271Q、R320Q、R393Q以及丝氨酸到丙氨酸活性位点突变体S525A,以详细研究MASP-1介导的凝血酶原激活机制。用MASP-1消化凝血酶原野生型和突变体,并用SDS-PAGE和N端测序分析切割产物。通过血栓弹力图进行功能性凝血试验。我们发现MASP-1通过两条同时进行的途径激活凝血酶原,要么先在R271处切割,要么先在R393处切割。两条途径都导致形成几种活性替代凝血酶物种。功能研究证实,R393和R320都是MASP-1激活凝血酶原所必需的,而R155在此过程中不被认为是一个重要的切割位点。总之,我们首次描述了MASP-1激活凝血酶原的详细模型。

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