Bock P E, Shore J D, Tans G, Griffin J H
J Biol Chem. 1985 Oct 15;260(23):12434-43.
Binding of the 5-(iodoacetamido)fluorescein (IAF)-labeled high molecular weight (HMW) kininogen light chain to prekallikrein and D-Phe-Phe-Arg-CH2Cl-inactivated kallikrein was monitored by a 0.040 +/- 0.002 increase in fluorescence anisotropy. Indistinguishable average dissociation constants and stoichiometries of 14 +/- 3 nM and 1.1 +/- 0.1 mol of prekallikrein/mol of IAF-light chain and 17 +/- 3 nM and 0.9 +/- 0.1 mol of kallikrein/mol of IAF-light chain were determined for these interactions at pH 7.4, mu 0.14 and 22 degrees C. Prekallikrein which had been reduced and alkylated in 6 M guanidine HCl lost the ability to increase the fluorescence anisotropy of the IAF-kininogen light chain, suggesting that the native tertiary structure was required for tight binding. The kallikrein heavy and light chains were separated on the basis of the affinity of the heavy chain for HMW-kininogen-Sepharose, after mild reduction and alkylation of kallikrein under nondenaturing conditions. Under these conditions, alkylation with iodo [14C]acetamide demonstrated that only limited chemical modification had occurred. Binding of the IAF-kininogen light chain to the isolated alkylated kallikrein heavy chain, when compared to prekallikrein and kallikrein, was characterized by an indistinguishable increase in fluorescence anisotropy, average dissociation constant of 14 +/- 3 nM, and stoichiometry of 1.2 +/- 0.1 mol of kallikrein heavy chain/mol of IAF-light chain. In contrast, no binding of the D-Phe-Phe-Arg-CH2Cl-inactivated kallikrein light chain was detected at concentrations up to 500 nM. Furthermore, 300 nM kallikrein light chain did not affect IAF-kininogen light chain binding to prekallikrein, kallikrein, or the kallikrein heavy chain. The binding of monomeric single chain HMW-kininogen to prekallikrein, kallikrein, and the kallikrein heavy and light chains was studied using the IAF-kininogen light chain as a probe. Analysis of the competitive binding of HMW-kininogen gave average dissociation constants and stoichiometries of 12 +/- 2 nM and 1.2 +/- 0.1 mol of prekallikrein/mol of HMW-kininogen, 15 +/- 2 nM and 1.3 +/- 0.1 mol of kallikrein/mol of HMW-kininogen, 14 +/- 3 nM and 1.4 +/- 0.2 mol of kallikrein heavy chain/mol of HMW-kininogen, and no detectable effect of 300 nM kallikrein light chain on these interactions. We conclude that a specific, nonenzymatic interaction between sites located exclusively on the light chain of HMW-kininogen and the heavy chain of kallikrein or prekallikrein is responsible for the formation of 1:1 noncovalent complexes between these proteins.
通过荧光各向异性增加0.040±0.002监测5-(碘乙酰胺基)荧光素(IAF)标记的高分子量(HMW)激肽原轻链与前激肽释放酶以及D-苯丙氨酸-苯丙氨酸-精氨酸-CH₂Cl灭活的激肽释放酶的结合。在pH 7.4、μ0.14和22℃条件下,测定这些相互作用的平均解离常数和化学计量比,前激肽释放酶与IAF轻链的分别为14±3 nM和1.1±0.1 mol前激肽释放酶/mol IAF轻链,激肽释放酶与IAF轻链的分别为17±3 nM和0.9±0.1 mol激肽释放酶/mol IAF轻链,二者无显著差异。在6 M盐酸胍中还原并烷基化的前激肽释放酶失去了增加IAF-激肽原轻链荧光各向异性的能力,这表明紧密结合需要天然三级结构。在非变性条件下对激肽释放酶进行温和还原和烷基化后,根据重链对HMW-激肽原-琼脂糖的亲和力分离激肽释放酶重链和轻链。在这些条件下,用碘[¹⁴C]乙酰胺进行烷基化表明仅发生了有限的化学修饰。与前激肽释放酶和激肽释放酶相比,IAF-激肽原轻链与分离的烷基化激肽释放酶重链的结合表现为荧光各向异性增加无显著差异,平均解离常数为14±3 nM,化学计量比为1.2±0.1 mol激肽释放酶重链/mol IAF轻链。相反,在浓度高达500 nM时未检测到D-苯丙氨酸-苯丙氨酸-精氨酸-CH₂Cl灭活的激肽释放酶轻链的结合。此外,300 nM激肽释放酶轻链不影响IAF-激肽原轻链与前激肽释放酶、激肽释放酶或激肽释放酶重链的结合。使用IAF-激肽原轻链作为探针研究了单体单链HMW-激肽原与前激肽释放酶、激肽释放酶以及激肽释放酶重链和轻链的结合。HMW-激肽原竞争结合分析得出,前激肽释放酶与HMW-激肽原的平均解离常数和化学计量比分别为12±2 nM和1.2±0.1 mol前激肽释放酶/mol HMW-激肽原,激肽释放酶与HMW-激肽原的分别为15±2 nM和1.3±0.1 mol激肽释放酶/mol HMW-激肽原,激肽释放酶重链与HMW-激肽原的分别为14±3 nM和1.4±0.2 mol激肽释放酶重链/mol HMW-激肽原,且300 nM激肽释放酶轻链对这些相互作用无可检测的影响。我们得出结论,HMW-激肽原轻链上特定位点与激肽释放酶或前激肽释放酶重链之间的特异性非酶相互作用导致了这些蛋白质之间1:1非共价复合物的形成。