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与天然抑制剂和底物片段相对应的肽所产生的凝血酶活性的变构变化。

Allosteric changes in thrombin's activity produced by peptides corresponding to segments of natural inhibitors and substrates.

作者信息

Hortin G L, Trimpe B L

机构信息

Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 1991 Apr 15;266(11):6866-71.

PMID:1849894
Abstract

Acidic synthetic peptides corresponding to segments of several nonhomologous proteins (hirudin, residues 54-65; heparin cofactor II, residues 54-75; and fibrinogen, residues 410-427 of the gamma B-chain) inhibit thrombin's cleavage of fibrinogen without blocking the enzyme's active site. Here, we examined effects of these peptides on thrombin's cleavage of protein C and small peptides. Activation of protein C by thrombin in the absence of calcium was inhibited by all of the peptides. Maximal inhibition was 60%, and no greater inhibition was produced by higher peptide concentrations. This differed from progressive inhibition of protein C activation by increasing peptide concentrations in the presence of thrombomodulin and calcium. Potencies of the peptides were in the order hirudin-(54-65) greater than heparin cofactor II-(54-75) greater than gamma B-chain-(410-427). Sulfation of the tyrosine residue in hirudin-(54-65) increased its potency about 10-fold, similar to changes in anticlotting activity. The peptides were activators rather than inhibitors of the cleavage of small chromogenic substrates. In the presence of the peptides, the affinity of thrombin for the substrates S-2366 (pyro-Glu-Pro-Arg-4-nitroanilide), Chromozyme TH (tosyl-Gly-Pro-Arg-4-nitroanilide), and S-2251 (D-Val-Leu-Lys-4-nitroanilide) increased 1.5-2-fold with little change in the Vmax of substrate cleavage. Potencies of peptides in these allosteric effects on thrombin was in the same order as for their other effects. The similar actions of these nonhomologous peptides, which are believed to bind to thrombin's anion-binding exosite, suggest that binding of any peptide to this site exerts the same allosteric effect on thrombin's active site. Interactions of these peptides with thrombin may serve as models for regulation of thrombin's interactions with natural substrates and inhibitors.

摘要

对应于几种非同源蛋白质片段的酸性合成肽(水蛭素,第54 - 65位残基;肝素辅因子II,第54 - 75位残基;以及纤维蛋白原,γB链的第410 - 427位残基)可抑制凝血酶对纤维蛋白原的裂解,而不会阻断该酶的活性位点。在此,我们研究了这些肽对凝血酶裂解蛋白C和小肽的影响。在无钙条件下,所有这些肽均抑制凝血酶对蛋白C的激活。最大抑制率为60%,更高的肽浓度并未产生更大的抑制作用。这与在存在血栓调节蛋白和钙的情况下,随着肽浓度增加对蛋白C激活的逐步抑制不同。这些肽的效力顺序为水蛭素 -(54 - 65)大于肝素辅因子II -(54 - 75)大于γB链 -(410 - 427)。水蛭素 -(54 - 65)中酪氨酸残基的硫酸化使其效力增加约10倍,类似于抗凝血活性的变化。这些肽是小的生色底物裂解的激活剂而非抑制剂。在有这些肽存在的情况下,凝血酶对底物S - 2366(焦谷氨酸 - 脯氨酸 - 精氨酸 - 4 - 硝基苯胺)、Chromozyme TH(甲苯磺酰 - 甘氨酸 - 脯氨酸 - 精氨酸 - 4 - 硝基苯胺)和S - 2251(D - 缬氨酸 - 亮氨酸 - 赖氨酸 - 4 - 硝基苯胺)的亲和力增加了1.5 - 2倍,而底物裂解的Vmax变化很小。这些肽对凝血酶的这些变构效应的效力顺序与其其他效应相同。这些非同源肽的类似作用,据信它们与凝血酶的阴离子结合外位点结合,表明任何肽与该位点的结合都会对凝血酶的活性位点产生相同的变构效应。这些肽与凝血酶的相互作用可作为调节凝血酶与天然底物及抑制剂相互作用的模型。

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