Bothrojaracin与阴离子结合外位点I和II相互作用诱导凝血酶催化位点的变构变化。

Allosteric changes of thrombin catalytic site induced by interaction of bothrojaracin with anion-binding exosites I and II.

作者信息

Monteiro R Q, Rapôso J G, Wisner A, Guimarães J A, Bon C, Zingali R B

机构信息

Departmento de Bioquímica Médica, ICB/CCS, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

Biochem Biophys Res Commun. 1999 Sep 7;262(3):819-22. doi: 10.1006/bbrc.1999.1297.

Abstract

Bothrojaracin, a 27-kDa C-type lectin from Bothrops jararaca venom, is a selective and potent thrombin inhibitor (K(d) = 0.6 nM) which interacts with the two thrombin anion-binding exosites (I and II) but not with its catalytic site. In the present study, we analyzed the allosteric effects produced in the catalytic site by bothrojaracin binding to thrombin exosites. Opposite effects were observed with alpha-thrombin, which possesses both exosites I and II, and with gamma-thrombin, which lacks exosite I. On the one hand, bothrojaracin altered both kinetic parameters K(m) and k(cat) of alpha-thrombin for small synthetic substrates, resulting in an increased efficiency of alpha-thrombin catalytic activity. This effect was similar to that produced by hirugen, a peptide based on the C-terminal hirudin sequence (residues 54-65) which interacts exclusively with exosite I. On the other hand, bothrojaracin decreased the amidolytic activity of gamma-thrombin toward chromogenic substrates, although this effect was observed with higher concentrations of bothrojaracin than those used with alpha-thrombin. In agreement with these observaions, bothrojaracin produced opposite effects on the fluorescence intensity of alpha- and gamma-thrombin derivatives labeled at the active site with fluorescein-Phe-Pro-Arg-chloromethylketone. These observations support the conclusion that bothrojaracin binding to thrombin produces two different structural changes in its active site, depending on whether it interacts exclusively with exosite II, as seen with gamma-thrombin, or with exosite I (or both I and II) as observed with alpha-thrombin. The ability of bothrojaracin to evoke distinct modifications in the thrombin catalytic site environment when interacting with exosites I and II make this molecule an interesting tool for the study of allosteric changes in the thrombin molecule.

摘要

矛头蝮蛇素是一种来自矛头蝮蛇毒液的27 kDa C型凝集素,是一种选择性且强效的凝血酶抑制剂(解离常数K(d) = 0.6 nM),它与凝血酶的两个阴离子结合外位点(位点I和位点II)相互作用,但不与催化位点结合。在本研究中,我们分析了矛头蝮蛇素与凝血酶外位点结合后在催化位点产生的变构效应。对于同时拥有位点I和位点II的α-凝血酶以及缺乏位点I的γ-凝血酶,观察到了相反的效应。一方面,矛头蝮蛇素改变了α-凝血酶对小分子合成底物的动力学参数K(m)和k(cat),导致α-凝血酶催化活性的效率提高。这种效应类似于水蛭素原产生的效应,水蛭素原是一种基于C端水蛭素序列(残基54 - 65)的肽,它仅与位点I相互作用。另一方面,矛头蝮蛇素降低了γ-凝血酶对生色底物的酰胺水解活性,尽管观察到这种效应所需的矛头蝮蛇素浓度高于用于α-凝血酶的浓度。与这些观察结果一致,矛头蝮蛇素对用荧光素 - 苯丙氨酸 - 脯氨酸 - 精氨酸 - 氯甲基酮标记活性位点的α-和γ-凝血酶衍生物的荧光强度产生了相反的影响。这些观察结果支持这样的结论,即矛头蝮蛇素与凝血酶结合会在其活性位点产生两种不同的结构变化,这取决于它是仅与位点II相互作用(如γ-凝血酶的情况),还是与位点I(或位点I和位点II两者)相互作用(如α-凝血酶的情况)。当与位点I和位点II相互作用时,矛头蝮蛇素能够在凝血酶催化位点环境中引发不同修饰的能力,使得该分子成为研究凝血酶分子变构变化的一个有趣工具。

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