van der Graaf F, Koedam J A, Griffin J H, Bouma B N
Biochemistry. 1983 Sep 27;22(20):4860-6. doi: 10.1021/bi00289a037.
The light chain of human plasma kallikrein contains the enzymatic active site. The inactivation of kallikrein and of its isolated light chain by C1 inhibitor was investigated to assess the functional contributions of the heavy-chain region of kallikrein and of high molecular weight kininogen to this reaction. The second-order rate constants for the inactivation of kallikrein or its light chain were respectively 2.7 X 10(6) and 4.0 X 10(6) M -1 min -1. High molecular weight kininogen did not influence the rate of kallikrein inactivation. The nature of the complexes formed between kallikrein or its light chain and C1 inhibitor was studied by using sodium dodecyl sulfate (SDS) gradient polyacrylamide slab gel electrophoresis. Kallikrein as well as its light chain combined with C1 inhibitor to form stable stoichiometric complexes that were not dissociated by SDS and that exhibited apparent molecular weights (Mr's) of 185 000 and 135 000, respectively, on nonreduced SDS gels. Reduction of the kallikrein-C1 inhibitor complex gave a band at Mr 135 000 that comigrated with the complex seen for the light chain-C1 inhibitor complex. During the inactivation of both kallikrein and its light chain, a Mr 94 000 fragment of C1 inhibitor was formed which was unable to inactivate or bind kallikrein or its light chain. Kallikrein inactivated by diisopropyl phosphofluoridate did not form SDS-stable complexes with C1 inhibitor. These results demonstrate that the functional binding site for C1 inhibitor is localized in the light chain of kallikrein.(ABSTRACT TRUNCATED AT 250 WORDS)
人血浆激肽释放酶的轻链含有酶活性位点。研究了C1抑制剂对激肽释放酶及其分离出的轻链的灭活作用,以评估激肽释放酶重链区域和高分子量激肽原对该反应的功能贡献。激肽释放酶或其轻链灭活的二级速率常数分别为2.7×10⁶和4.0×10⁶ M⁻¹ min⁻¹。高分子量激肽原不影响激肽释放酶的灭活速率。利用十二烷基硫酸钠(SDS)梯度聚丙烯酰胺平板凝胶电泳研究了激肽释放酶或其轻链与C1抑制剂形成的复合物的性质。激肽释放酶及其轻链均与C1抑制剂结合形成稳定的化学计量复合物,这些复合物不会被SDS解离,在非还原SDS凝胶上的表观分子量(Mr)分别为185 000和135 000。激肽释放酶-C1抑制剂复合物的还原产生了一条Mr为135 000的条带,该条带与轻链-C1抑制剂复合物的条带迁移一致。在激肽释放酶及其轻链的灭活过程中,形成了一个Mr为94 000的C1抑制剂片段,该片段无法灭活或结合激肽释放酶或其轻链。被二异丙基氟磷酸酯灭活的激肽释放酶不与C1抑制剂形成SDS稳定的复合物。这些结果表明,C1抑制剂的功能结合位点位于激肽释放酶的轻链中。(摘要截短至250字)