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1型纤溶酶原激活物抑制剂——通过蛋白水解敏感性探究潜伏型、活性型、反应中心裂解型和与纤溶酶原激活物复合型之间的构象差异。

Type-1 plasminogen-activator inhibitor -- conformational differences between latent, active, reactive-centre-cleaved and plasminogen-activator-complexed forms, as probed by proteolytic susceptibility.

作者信息

Egelund R, Schousboe S L, Sottrup-Jensen L, Rodenburg K W, Andreasen P A

机构信息

Department of Molecular and Structural Biology, University of Aarhus, Denmark.

出版信息

Eur J Biochem. 1997 Sep 15;248(3):775-85. doi: 10.1111/j.1432-1033.1997.t01-1-00775.x.

Abstract

We have analysed the susceptibility of latent, active, reactive-centre-cleaved and plasminogen-activator-complexed type-1 plasminogen-activator inhibitor (PAI-1) to the non-target proteinases trypsin, endoproteinase Asp-N, proteinase K and subtilisin. This analysis has allowed us to detect conformational differences between the different forms of PAI-1 outside the reactive-centre loop and beta-sheet A. Proteinase-hypersensitive sites were clustered in three regions. Firstly, susceptibility was observed in the region around alpha-helix E, beta-strand 1A, and the flanking loops, which are believed to form flexible joints during movements of beta-sheet A. Secondly, hypersensitive sites were observed in the loop between alpha-helix I and beta-strand 5A. Thirdly, the gate region, encompassing beta-strands 3C and 4C, was highly susceptible to trypsin in latent PAI-1, but not in the other conformations. The digestion patterns differed among all four forms of PAI-1, indicating that each represents a unique conformation. The differential proteolytic susceptibility of the flexible-joint region may be coupled to the differential affinity to vitronectin, binding in the same region. The analysis also allowed detection of conformational differences between reactive-centre-cleaved forms produced under different solvent conditions. The digestion pattern of plasminogen-activator-complexed PAI-1 was different from that of active PAI-1, but indistinguishable from that of one of the reactive-centre-cleaved forms, as the complexed and this particular cleaved PAI-1 were completely resistant to all the non-target proteinases tested. This observation is in agreement with the notion that complex formation involves reactive-centre cleavage and a large degree of insertion of the reactive-centre loop into beta-sheet A. Our analysis has allowed the identification of some flexible regions that appear to be implicated in the conformational changes during the movements of beta-sheet A and during the inhibitory reaction of serpins with their target proteinases.

摘要

我们分析了潜伏型、活性型、反应中心裂解型和纤溶酶原激活物复合型1型纤溶酶原激活物抑制剂(PAI-1)对非靶蛋白酶胰蛋白酶、天冬氨酸内肽酶、蛋白酶K和枯草杆菌蛋白酶的敏感性。该分析使我们能够检测到反应中心环和β折叠A之外不同形式PAI-1之间的构象差异。蛋白酶敏感位点聚集在三个区域。首先,在α螺旋E、β链1A及其侧翼环周围区域观察到敏感性,据信这些区域在β折叠A移动过程中形成灵活连接。其次,在α螺旋I和β链5A之间的环中观察到敏感位点。第三,包含β链3C和4C的门区域在潜伏型PAI-1中对胰蛋白酶高度敏感,但在其他构象中则不然。所有四种形式的PAI-1的消化模式各不相同,表明每种形式都代表一种独特的构象。灵活连接区域的蛋白水解敏感性差异可能与对玻连蛋白的不同亲和力相关,玻连蛋白结合在同一区域。该分析还能够检测在不同溶剂条件下产生的反应中心裂解形式之间的构象差异。纤溶酶原激活物复合型PAI-1的消化模式与活性型PAI-1不同,但与其中一种反应中心裂解形式无法区分,因为复合型和这种特定裂解型PAI-1对所有测试的非靶蛋白酶完全耐药。这一观察结果与复合物形成涉及反应中心裂解以及反应中心环大量插入β折叠A的观点一致。我们的分析已鉴定出一些灵活区域,这些区域似乎与β折叠A移动过程中以及丝氨酸蛋白酶抑制剂与其靶蛋白酶的抑制反应过程中的构象变化有关。

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