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凝血因子Xa中192位残基对酶特异性和功能的作用。

Contribution of residue 192 in factor Xa to enzyme specificity and function.

作者信息

Rezaie A R, Esmon C T

机构信息

Cardiovascular Biology Research Program, University of Oklahoma Health Sciences Center, Oklahoma City, USA.

出版信息

J Biol Chem. 1995 Jul 7;270(27):16176-81. doi: 10.1074/jbc.270.27.16176.

DOI:10.1074/jbc.270.27.16176
PMID:7608183
Abstract

Mutation of residue 192 (chymotrypsin numbering) from Glu to Gln in thrombin and activated protein C has been shown to dramatically alter substrate and inhibitor specificity, in large part by allowing these enzymes to accept substrates with acidic residues in the P3 and/or P3' positions. In factor Xa, residue 192 is already a Gln. We now compare the properties of a Q192E mutant of Gla-domainless factor X (GDFX). Kinetic analysis of prothrombin activation indicates similar affinity of factor Va for GDFXa and GDFXa Q192E (Kd(app) = 3.6 and 3.7 microM, respectively). Prothrombin activation rates are similar for both enzymes with factor Va, but are approximately 10-fold slower for the Q192E mutant without factor Va. This defect is in the activation of prethrombin 2 and is corrected by factor Va only in the presence of fragment 2. Without factor Va, fragment 2 has no influence on bovine prethrombin 2 activation by GDFXa, but fragment 2 enhances prethrombin 2 activation by the Q192E mutant at least 10-fold. These results indicate that the fragment 2 domain of prothrombin probably alters the conformation of the prethrombin 2 domain, selectively improving its presentation to GDFXa Q192E. With respect to inhibition, tissue factor pathway inhibitor and bovine pancreatic trypsin inhibitor are > or = 30 times poorer inhibitors of GDFXa Q192E than of GDFXa, but these enzymes are inhibited at comparable rates by antithrombin. These results indicate that Gln-192 in factor Xa is a key determinant of substrate/inhibitor specificity.

摘要

凝血酶和活化蛋白C中第192位残基(胰凝乳蛋白酶编号)由Glu突变为Gln已显示出会显著改变底物和抑制剂特异性,很大程度上是因为这些酶能够接受在P3和/或P3'位置带有酸性残基的底物。在因子Xa中,第192位残基已经是Gln。我们现在比较无Gla结构域的因子X(GDFX)的Q192E突变体的特性。凝血酶原激活的动力学分析表明,因子Va对GDFXa和GDFXa Q192E的亲和力相似(表观解离常数Kd分别为3.6和3.7 microM)。两种酶在有因子Va存在时对凝血酶原的激活速率相似,但在无因子Va时,Q192E突变体的激活速率慢约10倍。此缺陷在于凝血酶原2的激活,并且仅在片段2存在时才被因子Va纠正。在无因子Va时,片段2对GDFXa激活牛凝血酶原2没有影响,但片段2可将Q192E突变体对凝血酶原2的激活增强至少10倍。这些结果表明,凝血酶原的片段2结构域可能改变了凝血酶原2结构域的构象,选择性地改善了其对GDFXa Q192E的呈现。关于抑制作用,组织因子途径抑制剂和牛胰蛋白酶抑制剂对GDFXa Q192E的抑制作用比对GDFXa的抑制作用差30倍以上,但抗凝血酶对这些酶的抑制速率相当。这些结果表明,因子Xa中的Gln - 192是底物/抑制剂特异性的关键决定因素。

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1
Contribution of residue 192 in factor Xa to enzyme specificity and function.凝血因子Xa中192位残基对酶特异性和功能的作用。
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2
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3
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4
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Role of residue 99 at the S2 subsite of factor Xa and activated protein C in enzyme specificity.
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