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膜表面上凝血酶原的二聚体形式。

A dimeric form of prothrombin on membrane surfaces.

作者信息

Anderson P J

机构信息

Department of Biochemistry, University of Ottawa, 451 Smyth Road, Ottawa, Ontario, Canada K1H 8M5.

出版信息

Biochem J. 1998 Dec 15;336 ( Pt 3)(Pt 3):631-8. doi: 10.1042/bj3360631.

Abstract

Blood coagulation requires the conversion of zymogens to active enzymes. These reactions are facilitated by Ca2+-dependent protein binding to membrane surfaces containing anionic phospholipids. Here it is shown that only in the presence of both Ca2+ and phospholipid vesicles composed of phosphatidylcholine and phosphatidylserine can a prothrombin dimer be chemically cross-linked. A cross-linker containing evenly spaced reactive groups was prepared by activating the carboxy groups of a ten-residue glutamic acid peptide and allowed to react with physiological concentrations of prothrombin. When Ca2+ and anionic phospholipids were both present during exposure to the cross-linker, it was found that more than 50% of the prothrombin was trapped as a chemically defined dimer with reaction times of the order of 1 min. The dimer yield remained high even when reactions were performed at high phospholipid-to-protein ratios at protein concentrations an order of magnitude less than physiological. Amino acid sequencing of a CNBr peptide produced from the purified dimer localized the cross-link to residues Lys341 and Lys427 of prothrombin. The specificity and high yield under mild conditions of the cross-linking suggest that dimeric membrane bound prothrombin might be a physiologically relevant substrate for the formation of thrombin. Prothrombinase converts this modified protein to an enzyme that catalyses the hydrolysis of a thrombin chromogenic substrate as efficiently as thrombin and is inhibited by a thrombin active-site directed inhibitor, but is a thrombin dimer. The thrombin dimer has impaired activity compared with thrombin with respect to physiological functions requiring binding to exosite I. A model based on the known structure of thrombin is presented that can account for the prothrombin dimer and the properties of the dimeric thrombin formed from it.

摘要

血液凝固需要将酶原转化为活性酶。这些反应通过Ca2+依赖的蛋白质与含有阴离子磷脂的膜表面结合而得以促进。本文表明,只有在同时存在Ca2+和由磷脂酰胆碱和磷脂酰丝氨酸组成的磷脂囊泡时,凝血酶原二聚体才能进行化学交联。通过活化十肽谷氨酸的羧基制备了一种含有均匀间隔反应基团的交联剂,并使其与生理浓度的凝血酶原反应。当在暴露于交联剂期间同时存在Ca2+和阴离子磷脂时,发现超过50%的凝血酶原被捕获为化学定义的二聚体,反应时间约为1分钟。即使在磷脂与蛋白质比例很高且蛋白质浓度比生理浓度低一个数量级的情况下进行反应,二聚体产率仍保持较高。对从纯化的二聚体产生的CNBr肽进行氨基酸测序,将交联定位到凝血酶原的Lys341和Lys427残基。交联在温和条件下的特异性和高产率表明,膜结合的凝血酶原二聚体可能是形成凝血酶的生理相关底物。凝血酶原酶将这种修饰的蛋白质转化为一种酶,该酶催化凝血酶显色底物的水解,效率与凝血酶相同,并被凝血酶活性位点定向抑制剂抑制,但它是一种凝血酶二聚体。与凝血酶相比,凝血酶二聚体在需要与外位点I结合的生理功能方面活性受损。提出了一个基于凝血酶已知结构的模型,该模型可以解释凝血酶原二聚体及其形成的二聚体凝血酶的性质。

相似文献

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A dimeric form of prothrombin on membrane surfaces.膜表面上凝血酶原的二聚体形式。
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