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因子 XIa(FXIa)催化结构域变构部位残基在蛋白酶神经酶抑制剂 2 的 Kunitz 蛋白酶抑制剂结构域对底物的催化和抑制作用中的作用。

The role of factor XIa (FXIa) catalytic domain exosite residues in substrate catalysis and inhibition by the Kunitz protease inhibitor domain of protease nexin 2.

机构信息

Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.

出版信息

J Biol Chem. 2011 Sep 9;286(36):31904-14. doi: 10.1074/jbc.M111.257527. Epub 2011 Jul 21.

Abstract

To select residues in coagulation factor XIa (FXIa) potentially important for substrate and inhibitor interactions, we examined the crystal structure of the complex between the catalytic domain of FXIa and the Kunitz protease inhibitor (KPI) domain of a physiologically relevant FXIa inhibitor, protease nexin 2 (PN2). Six FXIa catalytic domain residues (Glu(98), Tyr(143), Ile(151), Arg(3704), Lys(192), and Tyr(5901)) were subjected to mutational analysis to investigate the molecular interactions between FXIa and the small synthetic substrate (S-2366), the macromolecular substrate (factor IX (FIX)) and inhibitor PN2KPI. Analysis of all six Ala mutants demonstrated normal K(m) values for S-2366 hydrolysis, indicating normal substrate binding compared with plasma FXIa; however, all except E98A and K192A had impaired values of k(cat) for S-2366 hydrolysis. All six Ala mutants displayed deficient k(cat) values for FIX hydrolysis, and all were inhibited by PN2KPI with normal values of K(i) except for K192A, and Y5901A, which displayed increased values of K(i). The integrity of the S1 binding site residue, Asp(189), utilizing p-aminobenzamidine, was intact for all FXIa mutants. Thus, whereas all six residues are essential for catalysis of the macromolecular substrate (FIX), only four (Tyr(143), Ile(151), Arg(3704), and Tyr(5901)) are important for S-2366 hydrolysis; Glu(98) and Lys(192) are essential for FIX but not S-2366 hydrolysis; and Lys(192) and Tyr(5901) are required for both inhibitor and macromolecular substrate interactions.

摘要

为了选择凝血因子 XIa(FXIa)中可能对底物和抑制剂相互作用重要的残基,我们研究了 FXIa 催化结构域与生理相关 FXIa 抑制剂蛋白酶原 2(PN2)的 Kunitz 蛋白酶抑制剂(KPI)结构域之间的复合物的晶体结构。对 FXIa 催化结构域的六个残基(Glu(98),Tyr(143),Ile(151),Arg(3704),Lys(192)和 Tyr(5901))进行了突变分析,以研究 FXIa 与小分子合成底物(S-2366),大分子底物(IX 因子(FIX))和抑制剂 PN2KPI 之间的分子相互作用。对所有六个 Ala 突变体的分析表明,S-2366 水解的 K(m)值正常,与血浆 FXIa 相比,表明正常的底物结合;但是,除了 E98A 和 K192A 之外,所有残基的 S-2366 水解 k(cat)值都受损。所有六个 Ala 突变体对 FIX 水解的 k(cat)值均显示出缺陷,并且除了 K192A 和 Y5901A 之外,所有突变体均被 PN2KPI 抑制,其 K(i)值正常,而 K192A 和 Y5901A 则显示出 K(i)值增加。所有 FXIa 突变体的 S1 结合位点残基 Asp(189)利用 p-氨基苯甲脒,其完整性得以保留。因此,尽管所有六个残基对大分子底物(FIX)的催化都是必需的,但只有四个(Tyr(143),Ile(151),Arg(3704)和 Tyr(5901))对 S-2366 水解很重要;Glu(98)和 Lys(192)对 FIX 但不是 S-2366 水解是必需的;Lys(192)和 Tyr(5901)对抑制剂和大分子底物相互作用都是必需的。

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