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抗凝血酶 P1 Tyr 变异体的抑制特性。

Inhibitory properties of the P1 Tyr variant of antithrombin.

机构信息

Edward A. Doisy Department of Biochemistry and Molecular Biology, St. Louis University School of Medicine, St. Louis, Missouri 63104, USA.

出版信息

Biochemistry. 2010 Mar 30;49(12):2680-6. doi: 10.1021/bi100120a.

Abstract

Antithrombin (AT) and protein Z-dependent protease inhibitor (ZPI) are among two physiological serpin inhibitors in plasma that are involved in the regulation of the clotting cascade. Unlike AT, which can inhibit the proteolytic activity of all coagulation proteases, ZPI has narrower protease specificity, inhibiting only factors Xa (fXa) and XIa. Unlike an Arg at the P1 site of the AT reactive center loop (RCL), this residue is a Tyr in ZPI. To investigate the contribution of P1 Tyr in restricting the specificity of ZPI, we engineered an AT mutant in which the P1 Arg of the RCL was replaced with the P1 Tyr of ZPI (AT-R393Y). The reactivity of AT-R393Y with fXa and thrombin was decreased 155- and 970-fold, respectively. However, the serpin mutant inhibited chymotrypsin with an efficiency higher by >4 orders of magnitude. By contrast, chymotrypsin did not exhibit any reactivity with ZPI. The substitution of Asp-189 of fXa with the corresponding residue of chymotrypsin (Ser) did not improve the reactivity of the protease mutant with AT-R393Y; however, the fXa mutant reacted normally with ZPI. These results suggest that the contribution of P1 Tyr to restricting the protease specificity of ZPI is RCL context-dependent and that in addition to P1 Tyr, other structural features within and/or outside the ZPI RCL are involved in determining the protease specificity of the serpin. The results further suggest that thrombin is less tolerant than fXa in accommodating the nonoptimal P1 Tyr of the AT mutant in its active-site pocket.

摘要

抗凝血酶 (AT) 和蛋白 Z 依赖性蛋白酶抑制剂 (ZPI) 是血浆中两种参与凝血级联调节的生理丝氨酸蛋白酶抑制剂。与可抑制所有凝血蛋白酶的蛋白水解活性的 AT 不同,ZPI 的蛋白酶特异性较窄,仅抑制因子 Xa (fXa) 和 XIa。与 AT 反应中心环 (RCL) P1 位的 Arg 不同,该残基在 ZPI 中为 Tyr。为了研究 P1 Tyr 残基在限制 ZPI 特异性中的作用,我们构建了一种 AT 突变体,其中 RCL 的 P1 Arg 被 ZPI 的 P1 Tyr 取代 (AT-R393Y)。AT-R393Y 与 fXa 和凝血酶的反应性分别降低了 155 倍和 970 倍。然而,丝氨酸蛋白酶突变体抑制糜蛋白酶的效率高出 4 个数量级。相比之下,糜蛋白酶与 ZPI 没有任何反应性。将 fXa 的 Asp-189 替换为糜蛋白酶的相应残基 (Ser) 并没有提高蛋白酶突变体与 AT-R393Y 的反应性;然而,fXa 突变体与 ZPI 正常反应。这些结果表明,P1 Tyr 对限制 ZPI 蛋白酶特异性的贡献是 RCL 上下文依赖性的,除了 P1 Tyr 之外,ZPI RCL 内和/或外的其他结构特征也参与了决定丝氨酸蛋白酶抑制剂的蛋白酶特异性。结果进一步表明,与 fXa 相比,凝血酶在容纳 AT 突变体非最优的 P1 Tyr 方面的容忍度较低。

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