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凝血调节蛋白的第五和第六个生长因子样结构域与凝血酶的阴离子结合外位点结合并改变其特异性。

The fifth and sixth growth factor-like domains of thrombomodulin bind to the anion-binding exosite of thrombin and alter its specificity.

作者信息

Ye J, Liu L W, Esmon C T, Johnson A E

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, Norman 73019.

出版信息

J Biol Chem. 1992 Jun 5;267(16):11023-8.

PMID:1317850
Abstract

The domain of thrombomodulin that binds to the anion-binding exosite of thrombin was identified by comparing the binding of fragments of thrombomodulin to thrombin with that of Hirugen, a 12-residue peptide of hirudin that is known to bind to the anion-binding exosite of thrombin. Three soluble fragments of thrombomodulin, containing (i) the six repeated growth factor-like domains of thrombomodulin (GF1-6), (ii) one-half of the second through the sixth growth factor-like repeats (GF2.5-6), or (iii) the fifth and sixth such domains (GF5-6), were examined. Hirugen was a competitive inhibitor for either GF1-6 or GF2.5-6 stimulation of thrombin activation of protein C. GF5-6, which binds to thrombin without altering its ability to activate protein C, competed with fluorescein-labeled Hirugen for binding to thrombin. Therefore, all three thrombomodulin fragments, each of which lacked the chondroitin sulfate moiety, competed with Hirugen for binding to thrombin. To determine whether GF5-6 and Hirugen were binding to overlapping sites on thrombin or were interfering allosterically with each other's binding to thrombin, the effects of each thrombomodulin fragment and of Hirugen on the active site conformation of thrombin were compared using two different approaches: fluorescence-detected changes in the structure of the active site and the hydrolysis of chromogenic substrates. The GF5-6 and Hirugen peptides affected these measures of active site conformation very similarly, and hence GF5-6 and Hirugen contact residues on the surface of thrombin that allosterically alter the active site structure to a similar extent. Full-length thrombomodulin and GF1-6 alter the active site structure to comparable extents, but the amidolytic activity of thrombin complexed to thrombomodulin or GF1-6 differs significantly from that of thrombin complexed to GF5-6 or Hirugen. Taken together, these results indicate that the GF5-6 domain of thrombomodulin binds to the anion-binding exosite of thrombin. Furthermore, the binding of GF5-6 to the anion-binding exosite alters thrombin specificity, as evidenced by GF5-6-dependent changes in both the kcat and Km of synthetic substrate hydrolysis by thrombin. The contact sites on thrombin for the GF4 domain and the chondroitin sulfate moiety of thrombomodulin are still unknown.

摘要

通过比较凝血调节蛋白片段与凝血酶的结合情况和水蛭素衍生肽(Hirugen)与凝血酶的结合情况,确定了凝血调节蛋白与凝血酶阴离子结合外位点结合的结构域。Hirugen是一种由12个氨基酸组成的水蛭素肽段,已知其能与凝血酶的阴离子结合外位点结合。研究了凝血调节蛋白的三个可溶性片段,分别包含:(i)凝血调节蛋白的六个重复生长因子样结构域(GF1 - 6);(ii)第二个至第六个生长因子样重复结构域的一半(GF2.5 - 6);或(iii)第五和第六个这样的结构域(GF5 - 6)。Hirugen是GF1 - 6或GF2.5 - 6刺激凝血酶激活蛋白C的竞争性抑制剂。GF5 - 6与凝血酶结合但不改变其激活蛋白C的能力,它与荧光素标记的Hirugen竞争与凝血酶的结合。因此,所有三个凝血调节蛋白片段,每个都缺乏硫酸软骨素部分,都与Hirugen竞争与凝血酶的结合。为了确定GF5 - 6和Hirugen是结合在凝血酶的重叠位点上还是通过变构相互干扰对方与凝血酶的结合,使用两种不同方法比较了每个凝血调节蛋白片段和Hirugen对凝血酶活性位点构象的影响:活性位点结构的荧光检测变化和发色底物的水解。GF5 - 肽段和Hirugen对活性位点构象的这些测量指标影响非常相似,因此GF5 - 6和Hirugen接触凝血酶表面的残基,它们以相似程度变构改变活性位点结构。全长凝血调节蛋白和GF1 - 6在相似程度上改变活性位点结构,但与凝血调节蛋白或GF1 - 6结合的凝血酶的酰胺水解活性与与GF5 - 6或Hirugen结合的凝血酶的酰胺水解活性有显著差异。综上所述,这些结果表明凝血调节蛋白的GF5 - 6结构域与凝血酶的阴离子结合外位点结合。此外,GF5 - 6与阴离子结合外位点的结合改变了凝血酶的特异性,凝血酶对合成底物水解的kcat和Km的GF5 - 6依赖性变化证明了这一点。凝血调节蛋白的GF4结构域和硫酸软骨素部分在凝血酶上的接触位点仍然未知。

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