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大豆胰蛋白酶抑制剂(Kunitz)是双头的。α-胰凝乳蛋白酶与每一侧相互作用的动力学。

Soybean trypsin inhibitor (Kunitz) is doubleheaded. Kinetics of the interaction of alpha-chymotrypsin with each side.

作者信息

Bösterling B, Quast U

出版信息

Biochim Biophys Acta. 1981 Jan 15;657(1):58-72. doi: 10.1016/0005-2744(81)90130-3.

Abstract

Further evidence is presented for the formation of a ternary complex between alpha-chymotrypsin (EC 3.4.21.1) and soybean trypsin inhibitor as well as between alpha-chymotrypsin and a performed complex of soybean trypsin and inhibitor (EC 3.4.21.1). This is well in agreement with our earlier sedimentation equilibrium studies. We report on different elution patterns of the ternary forms as compared to the inhibitor trypsin complex and the individual components in gel filtration studies. We also demonstrate the decrease of a given chymotryptic activity on a substrate if the solution is mixed with another one containing the preformed stoichiometric inhibitor-trypsin complex. A fourth piece of evidence for the formation of a chymotrypsin-inhibitor-trypsin complex is the appearance of a difference spectrum in absorbance, when chymotrypsin is mixed with the inhibitor-trypsin complex. Inhibition studies with purified inhibitor show that one molecule of inhibitor binds two molecules of alpha-chymotrypsin, with dissociation constants K1 about 1 microM and K2 about 300 nM at pH 8. The site with weaker affinity for chymotrypsin is specifically blocked by stoichiometric amounts of trypsin. Purification of commercially available preparations of soybean trypsin inhibitor (Kunitz) ("inhibitor") to apparent homogeneity using sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis, and first-order association kinetics with beta-trypsin, is achieved by a combination of gel filtration and ion-exchange chromatography. The kinetics of the interaction of chymotrypsin with inhibitor or with inhibitor-trypsin complex were measured in a stopped-flow photometer by following the displacement of proflavine from the active site of chymotrypsin. A complete reaction scheme is presented with all rates and equilibrium constants as well as their pH-dependence.

摘要

进一步的证据表明,α-胰凝乳蛋白酶(EC 3.4.21.1)与大豆胰蛋白酶抑制剂之间形成了三元复合物,以及α-胰凝乳蛋白酶与预先形成的大豆胰蛋白酶和抑制剂复合物(EC 3.4.21.1)之间也形成了三元复合物。这与我们早期的沉降平衡研究结果非常吻合。我们报告了在凝胶过滤研究中,与抑制剂-胰蛋白酶复合物和各个组分相比,三元形式的不同洗脱模式。我们还证明,如果将一种溶液与另一种含有预先形成的化学计量抑制剂-胰蛋白酶复合物的溶液混合,底物上给定的胰凝乳蛋白酶活性会降低。胰凝乳蛋白酶-抑制剂-胰蛋白酶复合物形成的第四条证据是,当胰凝乳蛋白酶与抑制剂-胰蛋白酶复合物混合时,吸光度出现差异光谱。用纯化的抑制剂进行的抑制研究表明,一个抑制剂分子结合两个α-胰凝乳蛋白酶分子,在pH 8时,解离常数K1约为1 microM,K2约为300 nM。对胰凝乳蛋白酶亲和力较弱的位点被化学计量的胰蛋白酶特异性阻断。使用十二烷基硫酸钠(SDS)-聚丙烯酰胺凝胶电泳将市售的大豆胰蛋白酶抑制剂(Kunitz)(“抑制剂”)纯化至表观均一性,并通过凝胶过滤和离子交换色谱相结合的方法实现与β-胰蛋白酶的一级缔合动力学。通过跟踪黄素从胰凝乳蛋白酶活性位点的位移,在停流光度计中测量了胰凝乳蛋白酶与抑制剂或抑制剂-胰蛋白酶复合物相互作用的动力学。给出了完整的反应方案,包括所有速率和平衡常数及其pH依赖性。

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