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人α-凝血酶的阴离子结合外位点与纤维蛋白(原)识别

Anion-binding exosite of human alpha-thrombin and fibrin(ogen) recognition.

作者信息

Fenton J W, Olson T A, Zabinski M P, Wilner G D

机构信息

Wadsworth Center for Laboratories and Research, New York State Department of Health, Albany 12201.

出版信息

Biochemistry. 1988 Sep 6;27(18):7106-12. doi: 10.1021/bi00418a066.

Abstract

Activation of prothrombin to alpha-thrombin generates not only the catalytic site and associated regions but also an independent site (an exosite) which binds anionic substances, such as Amberlite CG-50 resin [cross-linked poly(methylacrylic acid)]. Like human alpha-thrombin with high fibrinogen clotting activity (peak elution at I = 0.40 +/- 0.01 M, pH 7.4, approximately 23 degrees C), catalytically inactivated forms (e.g., i-Pr2P-alpha- and D-Phe-Pro-Arg-CH2-alpha-thrombins) were eluted with only slightly lower salt concentrations (I = 0.36-0.39 M), while gamma-thrombin with very low clotting activity was eluted with much lower concentrations (I = 0.29 M) and the hirudin complex of alpha-thrombin was not retained by the resin. In a similar manner, hirudin complexes of alpha-, i-Pr2P-alpha-, and gamma-thrombin were not retained by nonpolymerized fibrin-agarose resin. Moreover, the ionic strengths for the elution from the CG-50 resin of seven thrombin forms were directly correlated with those from the fibrin resin (y = 0.15 + 0.96x, r = 0.95). In other experiments, the 17 through 27 synthetic peptide of the human fibrinogen A alpha chain was not an inhibitor of alpha-thrombin, while the NH2-terminal disulfide knot (NDSK) fragment was a simple competitive inhibitor of alpha-thrombin with a Ki approximately 3 microM (0.15 M NaCl, pH 7.3, approximately 23 degrees C). These data suggest that alpha-thrombin recognizes fibrin(ogen) by a negatively charged surface, noncontiguous with the A alpha cleavage site but found within the NDSK fragment. Such interaction involving an anion-binding exosite may explain the exceptional specificity of alpha-thrombin for the A alpha cleavage in fibrinogen and alpha-thrombin incorporation into fibrin clots.

摘要

凝血酶原激活为α-凝血酶不仅产生催化位点及相关区域,还产生一个独立位点(外位点),该位点可结合阴离子物质,如Amberlite CG - 50树脂[交联聚(甲基丙烯酸)]。与具有高纤维蛋白原凝血活性的人α-凝血酶(在I = 0.40±0.01 M、pH 7.4、约23℃时峰洗脱)一样,催化失活形式(如二异丙基磷酰-α-和D - 苯丙氨酸 - 脯氨酸 - 精氨酸 - CH2 - α-凝血酶)在仅略低的盐浓度(I = 0.36 - 0.39 M)下洗脱,而具有极低凝血活性的γ-凝血酶在低得多的浓度(I = 0.29 M)下洗脱,且α-凝血酶的水蛭素复合物不被树脂保留。以类似方式,α-、二异丙基磷酰-α-和γ-凝血酶的水蛭素复合物不被非聚合纤维蛋白 - 琼脂糖树脂保留。此外,七种凝血酶形式从CG - 50树脂洗脱的离子强度与从纤维蛋白树脂洗脱的离子强度直接相关(y = 0.15 + 0.96x,r = 0.95)。在其他实验中,人纤维蛋白原Aα链的17至27位合成肽不是α-凝血酶的抑制剂,而NH2末端二硫键结(NDSK)片段是α-凝血酶的简单竞争性抑制剂,Ki约为3 microM(0.15 M NaCl,pH 7.3,约23℃)。这些数据表明,α-凝血酶通过带负电荷的表面识别纤维蛋白(原),该表面与Aα裂解位点不相邻,但存在于NDSK片段内。这种涉及阴离子结合外位点的相互作用可能解释了α-凝血酶对纤维蛋白原中Aα裂解的特殊特异性以及α-凝血酶掺入纤维蛋白凝块的现象。

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